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Fabrication of flake-like NiCo_(2)O_(4)/reduced graphene oxide/melamine-derived carbon foam as an excellent microwave absorber 被引量:1
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作者 Konghu Tian Hang Yang +4 位作者 Chao Zhang Ruiwen Shu Qun Shao Xiaowei Liu Kaipeng Gao 《International Journal of Minerals,Metallurgy and Materials》 2025年第3期556-565,共10页
Carbon-based foams with a three-dimensional structure can serve as a lightweight template for the rational design and control-lable preparation of metal oxide/carbon-based composite microwave absorption materials.In t... Carbon-based foams with a three-dimensional structure can serve as a lightweight template for the rational design and control-lable preparation of metal oxide/carbon-based composite microwave absorption materials.In this study,a flake-like nickel cobaltate/re-duced graphene oxide/melamine-derived carbon foam(FNC/RGO/MDCF)was successfully fabricated through a combination of solvo-thermal treatment and high-temperature pyrolysis.Results indicated that RGO was evenly distributed in the MDCF skeleton,providing ef-fective support for the load growth of FNC on its surface.Sample S3,the FNC/RGO/MDCF composite prepared by solvothermal method for 16 h,exhibited a minimum reflection loss(RL_(min))of-66.44 dB at a thickness of 2.29 mm.When the thickness was reduced to 1.50 mm,the optimal effective absorption bandwidth was 3.84 GHz.Analysis of the absorption mechanism of FNC/RGO/MDCF revealed that its excellent absorption performance was primarily attributed to the combined effects of conduction loss,multiple reflection,scattering,in-terface polarization,and dipole polarization. 展开更多
关键词 carbon foam reduced graphene oxide flake-like nickel cobaltate microwave absorbing materials
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Graphene Oxide on Rheological and Self-healing Properties of Modified Asphalt
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作者 LIU Qinbao ZHAO Yan +1 位作者 GAO Honggang YAN Luchun 《材料科学与工程学报》 北大核心 2025年第1期80-89,共10页
Graphene oxide nanomaterials are increasingly used in various fields due to their superior properties.In order to study the influence of graphene oxide additives on the performance of modified asphalt,in this study,gr... Graphene oxide nanomaterials are increasingly used in various fields due to their superior properties.In order to study the influence of graphene oxide additives on the performance of modified asphalt,in this study,graphene oxide modified asphalt was prepared and characteristics was studied including the high deformation resistance performance and the self-healing property of modified asphalt.Functional groups and morphology of graphene oxide modified asphalt were described by Fourier transform infrared spectroscopy.The high deformation resistance performance and self-healing effect of asphalt samples were obtained through dynamic slear rheometer(DSR)test.Results shows that graphene oxide dispersions improve the performance of asphalt relatively well compared to graphene oxide powder.There is no chemical reaction between graphene oxide and asphalt,but physical connection.The addition of graphene oxide improved the high deformation resistance of modified asphalt and expedited the self-healing ability of asphalt under fatigue load. 展开更多
关键词 graphene oxide Modified asphalt Rheological property SELF-HEALING
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Graphene Oxide and Moringa oleifera Seed Oil Incorporated into Gelatin-Based Films:A Novel Active Food Packaging Material
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作者 María Fernanda Cardona Lunar Ramón Ordoñez +2 位作者 Heidi Fonseca Florido Joaquín Hernández-Fernández Rodrigo Ortega-Toro 《Journal of Renewable Materials》 2025年第2期311-327,共17页
The extensive use of polymeric materials in single-use packaging has driven the need to develop biodegradable alternatives.This study investigates the incorporation of graphene oxide(GO)and Moringa oleifera seed oil(M... The extensive use of polymeric materials in single-use packaging has driven the need to develop biodegradable alternatives.This study investigates the incorporation of graphene oxide(GO)and Moringa oleifera seed oil(MOSO)into a gelatin matrix to create polymer films and evaluate their potential as active packaging materials.The properties of these films were evaluated using structural,thermal,mechanical,optical,and physicochemical methods to determine their suitability for food packaging applications.The results showed that GO and MOSO were homogeneously dispersed in the gelatin matrix,forming colloidal particles(around 5μm in diameter).The addition of GO increased opacity by approximately 20 times the base value while MOSO affected light transmittance without impacting opacity.Mechanical properties were affected differently,GO acted as a crosslinking agent reducing elongation and increasing tensile strength at break,on the other hand MOSO acted as a plasticizer,making films more plastic increasing elongation a 30%.These effects counteracted each other,and similar behavior was recorded in differential scanning calorimetry.The films exhibited an improved water vapor resistance,which is crucial for food packaging.These findings indicate that the incorporation of GO and MOSO into a gelatin matrix may produce biodegradable polymer films with enhanced properties,suitable for active packaging in the food industry. 展开更多
关键词 Biodegradable packaging graphene oxide Moringa oleifera seed oil mechanical properties thermal stability water vapor resistance food packaging applications
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Reduced graphene oxide-mediated electron-hole separation using titanium dioxide increases the photocatalytic antibacterial activity of bone scaffolds
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作者 Pei Feng Haifeng Tian +3 位作者 Feng Yang Shuping Peng Hao Pan Cijun Shuai 《Bio-Design and Manufacturing》 2025年第1期100-115,I0044,共17页
Fast electron-hole recombination issues during titanium dioxide(TiO_(2))photocatalysis limit its application in preventing bacterial infection during bone defect repair.In this study,TiO_(2)@reduced graphene oxide(rGO... Fast electron-hole recombination issues during titanium dioxide(TiO_(2))photocatalysis limit its application in preventing bacterial infection during bone defect repair.In this study,TiO_(2)@reduced graphene oxide(rGO)composites were synthesized using a hydrothermal method in which rGO,which possesses very high electrical conductivity,promotes the separation of photoelectron-hole pairs of TiO_(2),thus improving the efficiency of photocatalytic production of reactive oxygen species(ROS).Subsequently,TiO_(2)@rGO composites were introduced into poly-L-lactic acid(PLLA)to prepare bone scaffolds with photocatalytic antibacterial function via selective laser sintering.The results showed that TiO_(2)grew on the surface of rGO and formed a covalent bond connection(Ti-O-C)with rGO.A decreased electrochemical impedance of TiO_(2)@rGO composites was observed,and the transient photocurrent intensity increased from 0.05 to 0.5μA/cm^(2).Analysis of electron spin resonance found that the photocatalytic products of TiO_(2)were·OH and·O^(2-),two kinds of ROS capable of killing bacteria via disrupting the structure of the bacterial membrane in vitro.Antibacterial experiments showed that the PLLA/TiO_(2)@rGO scaffolds had good antibacterial properties against Escherichia coli and Staphylococcus aureus.Finally,we report that these scaffolds exhibited both enhanced mechanical properties due to the addition of TiO_(2)@rGO as a reinforcement material and good biocompatibility during cell proliferation. 展开更多
关键词 Reduced graphene oxide PHOTOCATALYSIS Reactive oxygen species Antibacterial properties Bone scaffold
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Ru⁃doped Co_(3)O_(4)/reduced graphene oxide:Preparation and electrocatalytic oxygen evolution property
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作者 TIAN Tian ZHOU Meng +5 位作者 WEI Jiale LIU Yize MO Yifan YE Yuhan JIA Wenzhi HE Bin 《无机化学学报》 北大核心 2025年第2期385-394,共10页
Binary composites(ZIF-67/rGO)were synthesized by one-step precipitation method using cobalt nitrate hexahydrate as metal source,2-methylimidazole as organic ligand,and reduced graphene oxide(rGO)as carbon carrier.Then... Binary composites(ZIF-67/rGO)were synthesized by one-step precipitation method using cobalt nitrate hexahydrate as metal source,2-methylimidazole as organic ligand,and reduced graphene oxide(rGO)as carbon carrier.Then Ru3+was introduced for ion exchange,and the porous Ru-doped Co_(3)O_(4)/rGO(Ru-Co_(3)O_(4)/rGO)composite electrocatalyst was prepared by annealing.The phase structure,morphology,and valence state of the catalyst were analyzed by X-ray powder diffraction(XRD),scanning electron microscope(SEM),transmission electron microscopy(TEM),and X-ray photoelectron spectroscopy(XPS).In 1 mol·L^(-1)KOH,the oxygen evolution reaction(OER)performance of the catalyst was measured by linear sweep voltammetry,cyclic voltammetry,and chronoamperometry.The results show that the combination of Ru doping and rGO provides a fast channel for collaborative electron transfer.At the same time,rGO as a carbon carrier can improve the electrical conductivity of Ru-Co_(3)O_(4)particles,and the uniformly dispersed nanoparticles enable the reactants to diffuse freely on the catalyst.The results showed that the electrochemical performance of Ru-Co_(3)O_(4)/rGO was much better than that of Co_(3)O_(4)/rGO,and the overpotential of Ru-Co_(3)O_(4)/rGO was 363.5 mV at the current density of 50 mA·cm^(-2). 展开更多
关键词 metal-organic framework graphene ELECTROCATALYST oxygen evolution reaction
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基于湿法纺丝技术的SiBCN-rGO陶瓷纤维的组织结构、力学和吸波性能
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作者 高晨光 孙晓亮 +4 位作者 陈君 李达鑫 陈庆庆 贾德昌 周玉 《无机材料学报》 北大核心 2025年第3期290-296,共7页
随着我国新型空天飞行器的快速发展,对热端部件的结构可靠性和宽频微波隐身提出了更高的性能要求。SiBCN系亚稳陶瓷具有良好的耐高温、抗热震、耐烧蚀、抗长时氧化、抗蠕变等特性,在高温吸波结构领域极具应用潜力,但是该系亚稳陶瓷较低... 随着我国新型空天飞行器的快速发展,对热端部件的结构可靠性和宽频微波隐身提出了更高的性能要求。SiBCN系亚稳陶瓷具有良好的耐高温、抗热震、耐烧蚀、抗长时氧化、抗蠕变等特性,在高温吸波结构领域极具应用潜力,但是该系亚稳陶瓷较低的介电损耗限制了其电磁波吸收能力。本研究基于湿法纺丝技术制备了具有良好力学和吸波性能的SiBCN-rGO陶瓷纤维。结果表明,制备的SiBCN-rGO陶瓷纤维具有多孔结构,且纤维的孔隙率随着氧化还原石墨烯(Reduced Graphene Oxide, rGO)含量的增加而增大;此外,高含量rGO和高纤维比表面积促进了非晶基体中SiC的结晶析出。引入rGO显著提高了陶瓷纤维的拉伸性能,随着rGO质量分数从0提高至4%,纤维的断裂伸长率从8.05%增加到18.05%,拉伸强度从1.62 cN/dtex(0.324 GPa)提高到2.32 cN/dtex(0.464 GPa)。rGO含量增加降低了纤维的电阻率,且纤维的复介电常数实部与虚部均下降,但损耗角正切值逐渐提高。SiBCN-rGO陶瓷纤维表现出良好的吸波性能,其中含质量分数6%rGO的陶瓷纤维在9.20GHz处具有最小反射系数-50.90dB,有效吸收带宽达2.3 GHz,在吸波陶瓷基复合材料方面具有应用前景。 展开更多
关键词 SiBCN纤维 氧化还原石墨烯 吸波性能 力学性能
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Mixed‑Dimensional Assembly Strategy to Construct Reduced Graphene Oxide/Carbon Foams Heterostructures for Microwave Absorption,Anti‑Corrosion and Thermal Insulation 被引量:5
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作者 Beibei Zhan Yunpeng Qu +8 位作者 Xiaosi Qi Junfei Ding Jiao‑jing Shao Xiu Gong Jing‑Liang Yang Yanli Chen Qiong Peng Wei Zhong Hualiang Lv 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第11期1-18,共18页
Considering the serious electromagnetic wave(EMW)pollution problems and complex application condition,there is a pressing need to amalgamate multiple functionalities within a single substance.However,the effective int... Considering the serious electromagnetic wave(EMW)pollution problems and complex application condition,there is a pressing need to amalgamate multiple functionalities within a single substance.However,the effective integration of diverse functions into designed EMW absorption materials still faces the huge challenges.Herein,reduced graphene oxide/carbon foams(RGO/CFs)with two-dimensional/three-dimensional(2D/3D)van der Waals(vdWs)heterostructures were meticulously engineered and synthesized utilizing an efficient methodology involving freeze-drying,immersing absorption,secondary freeze-drying,followed by carbonization treatment.Thanks to their excellent linkage effect of amplified dielectric loss and optimized impedance matching,the designed 2D/3D RGO/CFs vdWs heterostructures demonstrated commendable EMW absorption performances,achieving a broad absorption bandwidth of 6.2 GHz and a reflection loss of-50.58 dB with the low matching thicknesses.Furthermore,the obtained 2D/3D RGO/CFs vdWs heterostructures also displayed the significant radar stealth properties,good corrosion resistance performances as well as outstanding thermal insulation capabilities,displaying the great potential in complex and variable environments.Accordingly,this work not only demonstrated a straightforward method for fabricating 2D/3D vdWs heterostructures,but also outlined a powerful mixeddimensional assembly strategy for engineering multifunctional foams for electromagnetic protection,aerospace and other complex conditions. 展开更多
关键词 Multifunctionality Reduced graphene oxide/carbon foams 2D/3D van der Waals heterostructures Electromagnetic wave absorption Thermal insulation
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GO/ZIF-67/水性环氧复合涂层的制备及防腐性能
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作者 黄亚文 张田田 +3 位作者 邓莉 张炜亮 陈俊 胡程耀 《南京工业大学学报(自然科学版)》 北大核心 2025年第1期40-48,共9页
针对氧化石墨烯(GO)无自修复性能和沸石类金属有机框架(MOFs)聚合物的腐蚀介质屏蔽性能较弱等实际问题,将具有主被动协同防腐作用的GO/MOFs复合纳米颗粒作为防腐填料,加到水性环氧树脂涂层(WEP)中从而提升防腐性能。通过微观形貌观察、... 针对氧化石墨烯(GO)无自修复性能和沸石类金属有机框架(MOFs)聚合物的腐蚀介质屏蔽性能较弱等实际问题,将具有主被动协同防腐作用的GO/MOFs复合纳米颗粒作为防腐填料,加到水性环氧树脂涂层(WEP)中从而提升防腐性能。通过微观形貌观察、电化学阻抗谱(EIS)测试和盐水浸泡实验对涂层的附着力和防腐性能进行评价。结果表明:复合纳米涂层的吸水率比纯WEP涂层降低6%。在3.5%盐水中浸泡7 d后,复合纳米填料的添加量达到0.3%时,复合涂层的阻抗模量仍能保持1.9×10^(8)Ω·cm^(2),表现出优异的防腐性能。 展开更多
关键词 氧化石墨烯 沸石类金属有机框架聚合物 水性环氧树脂涂层 MOFS 防腐
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Ni_(2)P/ppy/rGO复合材料的制备及析氧性能
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作者 徐海升 刘佳欣 +2 位作者 薛媚月 丁丽芹 李善建 《高校化学工程学报》 北大核心 2025年第1期149-156,共8页
为了设计和开发一种经济高效的析氧反应(OER)催化剂,采用化学氧化法和水热法等方法,使用聚吡咯(ppy)对还原氧化石墨烯(rGO)进行功能化改性,再结合磷化镍(Ni_(2)P),制备Ni_(2)P/ppy/rGO催化剂。运用X射线衍射(XRD)、扫描电子显微镜(SEM)... 为了设计和开发一种经济高效的析氧反应(OER)催化剂,采用化学氧化法和水热法等方法,使用聚吡咯(ppy)对还原氧化石墨烯(rGO)进行功能化改性,再结合磷化镍(Ni_(2)P),制备Ni_(2)P/ppy/rGO催化剂。运用X射线衍射(XRD)、扫描电子显微镜(SEM)和X射线光电子能谱仪(XPS)对材料进行结构和形貌表征,再通过电化学测试研究了催化剂的析氧反应性能。结果表明,Ni_(2)P/ppy/rGO具有良好的电催化性能,在电流密度为10 mA·cm^(-2)时,需要的过电势(258 mV)较小,表现出比ppy/rGO(319 mV)、Ni_(2)P/ppy(323 mV)更好的电催化析氧性能。Ni_(2)P/ppy/rGO催化剂相应的塔菲尔斜率(74.0 mV·dec^(-1))也较小,表明其在析氧反应中具有较好的催化动力学性能。 展开更多
关键词 石墨烯 聚吡咯 磷化镍 析氧反应 阻抗
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烧结钕铁硼电沉积Co-Mo-P/GO复合镀层及耐蚀性研究
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作者 李孝坤 雷鸣科 黄帅 《电镀与精饰》 北大核心 2025年第2期1-8,29,共9页
在烧结钕铁硼表面电沉积掺杂氧化石墨烯(Graphene Oxide,简写为GO)片的Co-Mo-P/GO复合镀层,采用X射线衍射仪、扫描电镜和能谱仪分析复合镀层的物相结构、形貌及表面成分,并采用电化学工作站结合浸泡腐蚀方法测试复合镀层的耐蚀性。结果... 在烧结钕铁硼表面电沉积掺杂氧化石墨烯(Graphene Oxide,简写为GO)片的Co-Mo-P/GO复合镀层,采用X射线衍射仪、扫描电镜和能谱仪分析复合镀层的物相结构、形貌及表面成分,并采用电化学工作站结合浸泡腐蚀方法测试复合镀层的耐蚀性。结果表明:Co-Mo-P/GO复合镀层的表面成分主要为Co、Mo、P和C元素,与Co-P合金镀层和Co-Mo-P合金镀层相比具有更致密表面结构。Co-Mo-P/GO复合镀层的电荷转移电阻以及在频率为10^(–2)Hz处的阻抗模值分别达到3.12×10^(3)Ω·cm^(2)、9.64×10^(3)Ω·cm^(2),较烧结钕铁硼分别提高约1700Ω·cm^(2)、6500Ω·cm^(2),腐蚀电流密度(9.52×10^(–7)A/cm^(2))较烧结钕铁硼的降低幅度超过一个数量级。Co-Mo-P/GO复合镀层的腐蚀速率仅为4.42 mg/(cm^(2)·h),较烧结钕铁硼降低约59%,并且在3.5%氯化钠溶液中浸泡72 h后整体腐蚀程度最轻。GO在Co-Mo-P/GO复合镀层中呈较均匀分散状态,起到明显细化晶粒作用并且极大增加腐蚀阻力,因而复合镀层的耐蚀性好于Co-P合金镀层和Co-Mo-P合金镀层,能显著提高烧结钕铁硼的耐蚀性。 展开更多
关键词 Co-Mo-P/go复合镀层 电沉积 烧结钕铁硼 氧化石墨烯 耐蚀性
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α-Fe_(2)O_(3)/还原氧化石墨烯(RGO)的制备及应用
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作者 王宏智 包赛赛 +2 位作者 苏展 于金山 张卫国 《化学工业与工程》 北大核心 2025年第1期88-97,共10页
为实现非对称超级电容器(ASC)的高电化学性能,以FeCl_(3)·6H_(2)O为铁源,通过水热法将α-Fe_(2)O_(3)纳米颗粒均匀分散在还原的氧化石墨烯(RGO)薄片上,成功制备α-Fe_(2)O_(3)/RGO复合材料。该复合材料采用SEM、TEM、XRD和XPS进行... 为实现非对称超级电容器(ASC)的高电化学性能,以FeCl_(3)·6H_(2)O为铁源,通过水热法将α-Fe_(2)O_(3)纳米颗粒均匀分散在还原的氧化石墨烯(RGO)薄片上,成功制备α-Fe_(2)O_(3)/RGO复合材料。该复合材料采用SEM、TEM、XRD和XPS进行表征,并利用标准三电极体系进行电化学性能测试。结果显示:高度组装的α-Fe_(2)O_(3)/RGO在1 A·g^(-1)下具有740.8 F·g^(-1)的大比电容,并且于5 A·g^(-1)下实现80.0%的长循环稳定性(10000圈)。以制备的α-Fe_(2)O_(3)/RGO为负极,NiCo_(2)O_(4)为正极组装了NiCo_(2)O_(4)//α-Fe_(2)O_(3)/RGO非对称超级电容器,不仅在792.8 W·kg^(-1)下获得47.8 Wh·kg^(-1)的能量密度,而且在5 A·g^(-1)下仍然维持78.6%的循环稳定性(10000圈)。这极大地促进了ASC在储能系统的应用。 展开更多
关键词 α-Fe_(2)O_(3) 石墨烯 非对称超级电容器 循环性能
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Ni_(2)P/N-rGO复合材料的制备及其析氧性能
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作者 徐海升 任哲辰 +1 位作者 薛媚月 武攀峰 《石油学报(石油加工)》 北大核心 2025年第1期81-88,共8页
以改进Hummers法制备氧化石墨烯(GO),以尿素为氮源采用水热法制备氮掺杂还原氧化石墨烯(N-rGO)载体,以NiCl _(2)·6H_(2)O为镍源、红磷为磷源通过溶剂热法制备Ni_(2)P/N-rGO-x(x为1、2、3,分别代表3种不同磷/镍摩尔比2/1、4/1和8/1... 以改进Hummers法制备氧化石墨烯(GO),以尿素为氮源采用水热法制备氮掺杂还原氧化石墨烯(N-rGO)载体,以NiCl _(2)·6H_(2)O为镍源、红磷为磷源通过溶剂热法制备Ni_(2)P/N-rGO-x(x为1、2、3,分别代表3种不同磷/镍摩尔比2/1、4/1和8/1)系列催化剂。结果表明,当磷/镍摩尔比为4/1时,Ni_(2)P/N-rGO-2催化剂在碱性溶液中的电流密度达到10 mA/cm^(2),所需过电位较低为292 mV,塔菲尔斜率较小为82.67 mV/dec,表明其具备良好的析氧反应(OER)性能,且具有良好的OER稳定性及耐久性。 展开更多
关键词 石墨烯 尿素 磷化镍 析氧反应 过电位
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Layered Potassium Titanium Niobate/Reduced Graphene Oxide Nanocomposite as a Potassium‑Ion Battery Anode 被引量:5
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作者 Charlie A.F.Nason Ajay Piriya Vijaya Kumar Saroja +3 位作者 Yi Lu Runzhe Wei Yupei Han Yang Xu 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第1期1-16,共16页
With graphite currently leading as the most viable anode for potassium-ion batteries(KIBs),other materials have been left relatively underexamined.Transition metal oxides are among these,with many positive attributes ... With graphite currently leading as the most viable anode for potassium-ion batteries(KIBs),other materials have been left relatively underexamined.Transition metal oxides are among these,with many positive attributes such as synthetic maturity,longterm cycling stability and fast redox kinetics.Therefore,to address this research deficiency we report herein a layered potassium titanium niobate KTiNbO5(KTNO)and its rGO nanocomposite(KTNO/rGO)synthesised via solvothermal methods as a high-performance anode for KIBs.Through effective distribution across the electrically conductive rGO,the electrochemical performance of the KTNO nanoparticles was enhanced.The potassium storage performance of the KTNO/rGO was demonstrated by its first charge capacity of 128.1 mAh g^(−1) and reversible capacity of 97.5 mAh g^(−1) after 500 cycles at 20 mA g^(−1),retaining 76.1%of the initial capacity,with an exceptional rate performance of 54.2 mAh g^(−1)at 1 A g^(−1).Furthermore,to investigate the attributes of KTNO in-situ XRD was performed,indicating a low-strain material.Ex-situ X-ray photoelectron spectra further investigated the mechanism of charge storage,with the titanium showing greater redox reversibility than the niobium.This work suggests this lowstrain nature is a highly advantageous property and well worth regarding KTNO as a promising anode for future high-performance KIBs. 展开更多
关键词 Potassium-ion batteries INTERCALATION Transition metal oxides Anodes NANOCOMPOSITE
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Fabrication of graphene oxide decorated with poly(dimethyl amino ethyl methacrylate) brush for efficient Cr(Ⅵ) adsorption from aqueous solution
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作者 Alireza Nouri Siew Fen Chua +2 位作者 Ebrahim Mahmoudi Abdul Wahab Mohammad Wei Lun Ang 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第9期51-61,共11页
Confronting the severe health threats and environmental impacts of Cr(Ⅵ) in aquatic environments demands innovative and effective remediation approaches. In this study, Graphene oxide(GO)-decorated poly(dimethyl amin... Confronting the severe health threats and environmental impacts of Cr(Ⅵ) in aquatic environments demands innovative and effective remediation approaches. In this study, Graphene oxide(GO)-decorated poly(dimethyl amino ethyl methacrylate)(PDMAEMA) brush nanocomposites(GOP1, GOP2, GOP3, and GOP4) were fabricated using atom transfer radical polymerization(ATRP) by the “graft from” method.The resulting nanocomposites were utilized for removing Cr(Ⅵ) with good adsorption performance due to the electrostatic interaction of protonated nitrogen groups in the brush chains with negatively charged particles in the solution. The kinetic model of pseudo-second-order best represented the contaminants' adsorption characteristics. The Weber-Morris model further indicated that surface adsorption and intraparticle diffusion mechanisms primarily controlled the adsorption procedure. Additionally, the Langmuir and Temkin isotherm models were found to most accurately represent the adsorption characteristics of the pollutants on the nanocomposites, and GOP4 can achieve the maximum adsorption capacity of 164.4 mg·g^(-1). The adsorbents' capacity maintains above 85% after five cycles of adsorption-desorption. The nanocomposites in this study demonstrate promising potential for eliminating Cr(Ⅵ) from aqueous solutions. 展开更多
关键词 graphene oxide PDMAEMA brush Polymerization Nanoparticles ADSORPTION Chromium
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Aggregation-regulated bioreduction process of graphene oxide by Shewanella bacteria
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作者 Kaixin Han Yibo Zeng +2 位作者 Yinghua Lu Ping Zeng Liang Shen 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第5期56-62,共7页
The bioreduction of graphene oxide(GO)using environmentally functional bacteria such as Shewanella represents a green approach to produce reduced graphene oxide(rGO).This process differs from the chemical reduction th... The bioreduction of graphene oxide(GO)using environmentally functional bacteria such as Shewanella represents a green approach to produce reduced graphene oxide(rGO).This process differs from the chemical reduction that involves instantaneous molecular reactions.In bioreduction,the contact of bacterial cells and GO is considered the rate-limiting step.To reveal how the bacteria-GO integration regulates rGO production,the comparative experiments of GO and three Shewanella strains were carried out.Fourier-transform infrared spectroscopy,X-ray photoelectron spectroscopy,Raman spectroscopy,and atomic force microscopy were used to characterize the reduction degree and the aggregation degree.The results showed that a spontaneous aggregation of GO and Shewanella into the condensed entity occurred within 36 h.A positive linear correlation was established,linking three indexes of the aggregation potential,the bacterial reduction ability,and the reduction degree(ID/IG)comprehensively. 展开更多
关键词 graphene oxide Reduced graphene oxide BIOREDUCTION AGGREGATION SHEWANELLA
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In vitro investigations on the effects of graphene and graphene oxide on polycaprolactone bone tissue engineering scaffolds
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作者 Yanhao Hou Weiguang Wang Paulo Bartolo 《Bio-Design and Manufacturing》 SCIE EI CAS CSCD 2024年第5期651-669,共19页
Polycaprolactone(PCL)scaffolds that are produced through additive manufacturing are one of the most researched bone tissue engineering structures in the field.Due to the intrinsic limitations of PCL,carbon nanomateria... Polycaprolactone(PCL)scaffolds that are produced through additive manufacturing are one of the most researched bone tissue engineering structures in the field.Due to the intrinsic limitations of PCL,carbon nanomaterials are often investigated to reinforce the PCL scaffolds.Despite several studies that have been conducted on carbon nanomaterials,such as graphene(G)and graphene oxide(GO),certain challenges remain in terms of the precise design of the biological and nonbiological properties of the scaffolds.This paper addresses this limitation by investigating both the nonbiological(element composition,surface,degradation,and thermal and mechanical properties)and biological characteristics of carbon nanomaterial-reinforced PCL scaffolds for bone tissue engineering applications.Results showed that the incorporation of G and GO increased surface properties(reduced modulus and wettability),material crystallinity,crystallization temperature,and degradation rate.However,the variations in compressive modulus,strength,surface hardness,and cell metabolic activity strongly depended on the type of reinforcement.Finally,a series of phenomenological models were developed based on experimental results to describe the variations of scaffold’s weight,fiber diameter,porosity,and mechanical properties as functions of degradation time and carbon nanomaterial concentrations.The results presented in this paper enable the design of three-dimensional(3D)bone scaffolds with tuned properties by adjusting the type and concentration of different functional fillers. 展开更多
关键词 Additive manufacturing Bone tissue engineering Carbon nanomaterial graphene graphene oxide SCAFFOLD
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Regulation of interlayer channels of graphene oxide nanosheets in ultra-thin Pebax mixed-matrix membranes for CO_(2) capture
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作者 Feifan Yang Yuanhang Jin +5 位作者 Jiangying Liu Haipeng Zhu Rong Xu Fenjuan Xiangli Gongping Liu Wanqin Jin 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第3期257-267,共11页
For the application of carbon capture by membrane process,it is crucial to develop a highly permeable CO_(2)-selective membrane.In this work,we reported an ultra-thin polyether-block-amide(Pebax)mixedmatrix membranes(... For the application of carbon capture by membrane process,it is crucial to develop a highly permeable CO_(2)-selective membrane.In this work,we reported an ultra-thin polyether-block-amide(Pebax)mixedmatrix membranes(MMMs)incorporated by graphene oxide(GO),in which the interlayer channels were regulated to optimize the CO_(2)/N_(2) separation performance.Various membrane preparation conditions were systematically investigated on the influence of the membrane structure and separation performance,including the lateral size of GO nanosheets,GO loading,thermal reduction temperature,and time.The results demonstrated that the precisely regulated interlayer channel of GO nanosheets can rapidly provide CO_(2)-selective transport channels due to the synergetic effects of size sieving and preferential adsorption.The GO/Pebax ultra-thin MMMs exhibited CO_(2)/N_(2) selectivity of 72 and CO_(2) permeance of 400 GPU(1 GPU=106 cm^(3)(STP)·cm^(2)·s^(-1)·cmHg^(-1)),providing a promising candidate for CO_(2) capture. 展开更多
关键词 Mixed-matrix membrane Ultra-thin membrane Pebax graphene oxide CO_(2) capture
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Synthesis of reduced graphene oxide nanosheets from sugarcane dry leaves by two-stage pyrolysis for antibacterial activity
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作者 Baskar Thangaraj Pravin Raj Solomon +4 位作者 Nutthapon Wongyao Mohamed I.Helal Ali Abdullah Sufian Abedrabbo Jamal Hassan 《Nano Materials Science》 EI CAS CSCD 2024年第5期625-634,共10页
Oxidative-exfoliation methods were in vogue in the production of rGO from graphite.Processing of such synthetic graphite needs high temperatures(2500℃).Thus,such process is not cost-effective.The present study is mad... Oxidative-exfoliation methods were in vogue in the production of rGO from graphite.Processing of such synthetic graphite needs high temperatures(2500℃).Thus,such process is not cost-effective.The present study is made on the dry leaves of sugarcane(Saccharum officinarum)as an alternative raw material so as to be economical and environmentally benign.The dry leaves are subjected to two-step pyrolysis without any catalyst or reducing agent in far divergent temperatures to produce as prepared and acid treated rGOs.They were evaluated by UV–Vis.,FTIR,XRD,Raman spectroscopy,TGA/DTG,BET,FESEM-EDS and TEM.The as prepared rGO has few layers with irregular and folded architecture whereas acid-treated rGO has thinly stacked crumpled sheets with many wrinkles on its surface.The prepared rGOs have multilayered graphitic structure due to the unique ratio between G and D bands.Acid treated rGO has poor thermal stability as compared to that of as-prepared rGO at high temperatures due to the variation in the oxygen-containing functional groups.Acid treated rGO has low antibacterial activity as compared to that of the as-prepared rGO due to the paucity of the functional groups. 展开更多
关键词 Biomass wastes Sugarcane dry leaves PYROLYSIS Reduced graphene oxide Antibacterial activity
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Nanocomposite superstructure of zinc oxide mesocrystal/reduced graphene oxide with effective photoconductivity
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作者 Ahmad A.Ahmad Qais M.Al-Bataineh Ahmad B.Migdadi 《Journal of Semiconductors》 EI CAS CSCD 2024年第11期81-88,共8页
Metal oxide mesocrystals are the alignment of metal oxide nanoparticles building blocks into the ordered superstructure,which have potentially tunable optical,electronic,and electrical properties suitable for practica... Metal oxide mesocrystals are the alignment of metal oxide nanoparticles building blocks into the ordered superstructure,which have potentially tunable optical,electronic,and electrical properties suitable for practical applications.Herein,we report an effective method for synthesizing mesocrystal zinc oxide nanorods(ZnONRs).The crystal,surface,and internal structures of the zinc oxide mesocrystals were fully characterized.Mesocrystal zinc oxide nanorods/reduced graphene oxide(ZnONRs/rGO)nanocomposite superstructure were synthesized also using the hydrothermal method.The crystal,surface,chemical,and internal structures of the ZnONRs/rGO nanocomposite superstructure were also fully characterized.The optical absorption coefficient,bandgap energy,band structure,and electrical conductivity of the ZnONRs/rGO nanocomposite superstructure were investigated to understand its optoelectronic and electrical properties.Finally,the photoconductivity of the ZnONRs/rGO nanocomposite superstructure was explored to find the possibilities of using this nanocomposite superstructure for ultraviolet(UV)photodetection applications.Finally,we concluded that the ZnONRs/rGO nanocomposite superstructure has high UV sensitivity and is suitable for UV detector applications. 展开更多
关键词 MESOCRYSTALS SUPERSTRUCTURE mesocrystal zinc oxide nanorods(ZnONRs) meduced graphene oxide(rgo) ZnONRs/rgo nanocomposite superstructure UV photodetection
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Ultrahydrophobic melamine sponge via interfacial modification with reduced graphene oxide/titanium dioxide nanocomposite and polydimethylsiloxane for oily wastewater treatment
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作者 Hamidatu Alhassan Ying Woan Soon +1 位作者 Anwar Usman Voo Nyuk Yoong 《Water Science and Engineering》 EI CAS CSCD 2024年第2期139-149,共11页
Three-dimensional(3D)porous absorbents have attracted significant attention in the oily wastewater treatment technology due to their high porosity and elasticity.Given their amphiphilic surface,they have a propensity ... Three-dimensional(3D)porous absorbents have attracted significant attention in the oily wastewater treatment technology due to their high porosity and elasticity.Given their amphiphilic surface,they have a propensity to simultaneously absorb water and oil,which restricts their range of applications.In this study,a reduced graphene oxide and titanium dioxide nanocomposite(rGO/TiO_(2))was used to fabricate an ultra-hydrophobic melamine sponge(MS)through interfacial modification using a solution immersion technique.To further modify it,poly-dimethylsiloxane(PDMS)was grafted onto its surface to establish stronger covalent bonds with the composite.The water contact angle of the sponge(rGO/TiO_(2)/PDMS/MS)was 164.2°,which satisfies the condition for ultrahydrophobicity.The evidence of its water repellency was demonstrated by the Cassie-Baxter theory and the lotus leaf effect.As a result of the increased density of rGO/TiO_(2)/PDMS/MS,it recorded an initial capacity that was 2 g/g lower than the raw MS for crude oil absorption.The raw MS retained 53% of its initial absorption capacity after 20 cycles of absorption,while rGO/TiO_(2)/PDMS/MS retained 97%,suggesting good recyclability.Excellent oil and organic solvent recovery(90%-96%)was demonstrated by rGO/TiO_(2)/PDMS/MS in oil-water combinations.In a continuous separation system,it achieved a remarkable separation efficiency of 2.4×10^(6)L/(m^(3)·h),and in turbulent emulsion separation,it achieved a demulsification efficiency of 90%-91%.This study provides a practical substitute for massive oil spill cleaning. 展开更多
关键词 Oily wastewater Reduced graphene oxide Polydimethylsiloxane(PDMS) Emulsion separation Melamine sponge
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