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利用协同催化效应萃取催化光度法测定痕量铬 被引量:8
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作者 孙登明 游永俐 《光谱学与光谱分析》 SCIE EI CAS CSCD 北大核心 2004年第12期1643-1645,共3页
研究了在 pH 5 5的HAc NaAc介质中 ,利用Fe(Ⅲ ) ,Cr(Ⅵ )对H2 O2 氧化邻氨基酚的协同催化作用 ,用萃取平衡控制反应时间和水相中邻氨基酚的浓度及协同催化反应进行的程度 ,通过测量 4 2 4nm下有机相的吸光度 ,建立了协同萃取催化光度... 研究了在 pH 5 5的HAc NaAc介质中 ,利用Fe(Ⅲ ) ,Cr(Ⅵ )对H2 O2 氧化邻氨基酚的协同催化作用 ,用萃取平衡控制反应时间和水相中邻氨基酚的浓度及协同催化反应进行的程度 ,通过测量 4 2 4nm下有机相的吸光度 ,建立了协同萃取催化光度法测定铬的新方法。方法的线性范围为 :0 0 0 10~ 0 90mg·L-1,检出限为 5 0× 10 -6g·L-1。用于自来水和废水中铬的测定 ,结果满意。 展开更多
关键词 协同催化效应 萃取催化光度法 邻氨基酚 微量元素 废水监测
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煤-生物质共热解非催化协同效应特征及机理研究进展
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作者 钮志远 刘桂建 《太阳能学报》 EI CAS CSCD 北大核心 2024年第4期286-295,共10页
对近年来煤-生物质共热解研究中判定是否发生协同效应及协同效应发生强度的4个指标,即温度范围、热重曲线、表观活化能及热解产物的产率及组成进行总结,并概括包括内在因素和外在因素在内的多种影响因素对煤-生物质共热解非催化协同效... 对近年来煤-生物质共热解研究中判定是否发生协同效应及协同效应发生强度的4个指标,即温度范围、热重曲线、表观活化能及热解产物的产率及组成进行总结,并概括包括内在因素和外在因素在内的多种影响因素对煤-生物质共热解非催化协同效应的影响,对煤-生物质共热解非催化协同效应反应机理方面的研究进展和成果进行简要评述。最后提出未来煤-生物质共热解非催化协同效应特征和机理研究中可能面临的挑战。 展开更多
关键词 生物质 燃料油 煤液化 共热解 催化协同效应
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中国科研团队创新催化剂合成方法实现高效制甲醇
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作者 夏凡 张青 于乐 《中国氯碱》 CAS 2024年第3期63-64,共2页
近日,江南大学化学与材料工程学院刘小浩教授团队采用光诱导-邻近沉积方法,通过精确控制双原子位点的距离,产生优异的协同催化效应,实现二氧化碳加氢近100%选择性生成甲醇,且生成甲醇的时空产率突破纪录。相关研究成果在线发表于国际化... 近日,江南大学化学与材料工程学院刘小浩教授团队采用光诱导-邻近沉积方法,通过精确控制双原子位点的距离,产生优异的协同催化效应,实现二氧化碳加氢近100%选择性生成甲醇,且生成甲醇的时空产率突破纪录。相关研究成果在线发表于国际化学领域期刊《德国应化》。 展开更多
关键词 大学化学 双原子 沉积方法 光诱导 协同催化效应 科研团队 催化剂合成 材料工程学院
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CuO-NiO/SiO_2催化氧化1-甲氧基-2-丙醇合成甲氧基丙酮 被引量:9
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作者 王军伟 曹国英 胡信全 《催化学报》 SCIE CAS CSCD 北大核心 2002年第4期349-351,共3页
采用浸渍法制备了CuO NiO/SiO2 负载型催化剂 .以空气为氧源 ,对CuO NiO/SiO2 催化体系催化氧化 1 甲氧基 2 丙醇合成甲氧基丙酮反应的催化活性进行了考察 .实验结果表明 ,NiO组分的负载量对催化活性影响较大 ;NiO和CuO两者之间有很强... 采用浸渍法制备了CuO NiO/SiO2 负载型催化剂 .以空气为氧源 ,对CuO NiO/SiO2 催化体系催化氧化 1 甲氧基 2 丙醇合成甲氧基丙酮反应的催化活性进行了考察 .实验结果表明 ,NiO组分的负载量对催化活性影响较大 ;NiO和CuO两者之间有很强的协同催化效应 .TPR和XRD结果表明 ,添加镍组分可促进铜在载体表面上分散 ,使氧化物还原温度降低 ,提高催化活性 .在优化条件下 ,1 甲氧基 2 丙醇的转化率可达 74 3%,甲氧基丙酮的收率可达 6 3%. 展开更多
关键词 CuO-NiO/SiO2 催化氧化 1-甲氧基-2-丙醇 合成 甲氧基丙酮 氧化铜 氧化镍 二氧化硅 协同催化效应 负载型催化
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停流FIA─协同系数补偿动力学方法双组份的同时测定 被引量:4
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作者 王建华 何荣桓 《分析科学学报》 CAS CSCD 1994年第3期39-43,共5页
用停流光度法研究了Hg(Ⅱ)和Ag(Ⅰ)对以硫脲为活化剂的Fe(CN)-α,α’-联吡啶配体交换反应的协同催化效应,提出了协同系数的概念。在协同系数补偿动力学体系中由于双组份的协同催化效应而引起的对吸光度加合性的偏离... 用停流光度法研究了Hg(Ⅱ)和Ag(Ⅰ)对以硫脲为活化剂的Fe(CN)-α,α’-联吡啶配体交换反应的协同催化效应,提出了协同系数的概念。在协同系数补偿动力学体系中由于双组份的协同催化效应而引起的对吸光度加合性的偏离,建立了一种新的双组份同时测定方法,此法使双组份同时测定的线性范围显著扩大,且降低了检测限。测定了环境样品中汞和银含量,获得满意结果。 展开更多
关键词 停流 协同催化效应 补偿 动力学
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磷钼酸对大庆外围杜—3井稠油的裂解降黏作用 被引量:3
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作者 张晓妮 贺十忠 +1 位作者 章喜文 闻守斌 《大庆石油学院学报》 CAS 北大核心 2005年第4期33-35,共3页
针对大庆外围油田稠油的降黏问题,制备了一种超强酸催化剂磷钼酸(H3PMo12O40).在近似蒸汽吞吐开采稠油的条件下,通过室内正交实验,考察了H3PMo12O40对大庆外围阿拉新区块杜-3井稠油的催化裂解降黏作用,分析了H3PMo12O40、H2O的质量,以... 针对大庆外围油田稠油的降黏问题,制备了一种超强酸催化剂磷钼酸(H3PMo12O40).在近似蒸汽吞吐开采稠油的条件下,通过室内正交实验,考察了H3PMo12O40对大庆外围阿拉新区块杜-3井稠油的催化裂解降黏作用,分析了H3PMo12O40、H2O的质量,以及反应温度、反应时间对稠油黏度的影响,测定了反应前后稠油的黏度、烃分布和w(S).结果表明:当m(稠油)∶m(H3PMo12O40):m(H2O)=100∶0.05∶30,反应温度为260℃,反应时间为24 h时,其黏弹性达到55.9%,轻烃组分增加,重烃组分减少,w(S)降低;H3PMo12O40的质量、反应温度和反应时间是影响催化裂解降黏反应的主要因素;油层矿物与H3PMo12O40之间存在协同催化效应,可使稠油的降黏率达到63.2%. 展开更多
关键词 磷钼酸(H3PMo12O40) 稠油 裂解降黏 大庆外围油田 催化裂解 磷钼酸 反应温度 超强酸催化 反应时间 协同催化效应
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Ag-Ni alloy nanoparticles for electrocatalytic reduction of benzyl chloride
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作者 周海晖 李艳玲 +3 位作者 黄家琦 方晨旭 单丹 旷亚非 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第12期4001-4007,共7页
Ag-based nanocatalysts exhibit good catalytic activity for the electrochemical reduction of organic halides. Ag-Ni alloy nanoparticles(NPs) were facilely prepared by chemical reduction, and the as-prepared nanocatal... Ag-based nanocatalysts exhibit good catalytic activity for the electrochemical reduction of organic halides. Ag-Ni alloy nanoparticles(NPs) were facilely prepared by chemical reduction, and the as-prepared nanocatalysts were characterized by X-ray diffraction, ultraviolet-visible spectroscopy, transmission electron microscopy and energy-dispersive X-ray spectroscopy. The electrocatalytic activity of Ag-Ni NPs for benzyl chloride reduction was studied in organic medium using cyclic voltammetry, chronoamperometry and electrochemical impedance spectroscopy. The results show that the addition of Ni element can obviously decrease the size of Ag-Ni NPs, shift the reduction peak potential(φp) of benzyl chloride positively, and increase the catalytic activity of Ag-Ni NPs. However, when the Ni content reaches a certain value, the catalytic activity of Ag-Ni NPs decreases. Meanwhile, the synergistic catalytic effect of Ag-Ni NPs was also discussed. 展开更多
关键词 Ag-Ni nanoparticles benzyl chloride synergistic catalytic effect ELECTROREDUCTION
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Hydrogenation and Ammoniation of SrTiO3 for an Enhanced Visible-light Photocatalysis
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作者 孙涛 赵有源 陆明 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2012年第1期86-90,I0004,共6页
Hydrogenation and ammoniation of SrTiOa (STO), a normal ultraviolet photocatalyst, were performed by annealing STO(100) in Hz:N2=5%:95% and NH3, respectively, at various temperatures T. It was found that hydroge... Hydrogenation and ammoniation of SrTiOa (STO), a normal ultraviolet photocatalyst, were performed by annealing STO(100) in Hz:N2=5%:95% and NH3, respectively, at various temperatures T. It was found that hydrogenation at T≥900℃ remarkably enhanced the UV photocatalytic ability of STO, but the visible-light photocatalysis was still unavailable, while ammoniation at T≥800℃ introduced the N doping, resulting in visible-light photocat- alytie activity. Furthermore, when a hydrogenated STO was subjected to ammoniation, the visible-light photocatalytie ability was nearly the same as that of the ammoniated one; but the hydrogenation of an ammoniated one significantly enhanced visible-light photoeatalysis, indicating a synergetic effect of hydrogenation and ammoniation. Discussions and identifications have been made to analyze these results. 展开更多
关键词 SRTIO3 HYDROGENATION AMMONIATION PHOTOCATALYSIS Synergetic effect
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Synergistic effects in N‐K_2Ti_4O_9/UiO‐66‐NH_2 composites and their photocatalysis degradation of cationic dyes 被引量:2
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作者 李孙峰 王幸 +6 位作者 何琴琴 陈琪 徐艳丽 杨汉标 吕盟盟 魏凤玉 刘雪霆 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2016年第3期367-377,共11页
N-K2Ti4O9/UiO-66-NH2 composites synthesized by a facile solvothermal method have a core-shell structure with UiO-66-NH2 forming the shell around a N-K2Ti4O9 core.Their photocatalytic activities in the degradation of d... N-K2Ti4O9/UiO-66-NH2 composites synthesized by a facile solvothermal method have a core-shell structure with UiO-66-NH2 forming the shell around a N-K2Ti4O9 core.Their photocatalytic activities in the degradation of dyes under visible light irradiation were investigated.The N-K2Ti4O9/UiO-66-NH2 composites exhibited higher photocatalytic activity than the pure components.This synergistic effect was due to the high adsorption capacity of UiO-66-NH2 and that the two components together induced an enhanced separation efficiency of photogenerated electron-hole pairs.The mass ratio of N-K2Ti4O9 to ZrCl4 of 3:7 in the composite exhibited the highest photocatalytic activity.Due to the electrostatic attraction between the negatively charged backbone of UiO-66-NH2with the positively charged groups of cationic dyes,the composites were more photocatalytically active for cationic dyes than for anionic dyes. 展开更多
关键词 Nitrogen-doped potassium titamate UiO-66-NH2 Selective photocatalysis Synergistic effect Composite
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Elimination of 1,2-dichloroethane over(Ce,Cr)_x O_2/Nb_2O_5 catalysts: synergistic performance between oxidizing ability and acidity 被引量:11
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作者 Jie Wan Peng Yang +1 位作者 Xiaolin Guo Renxian Zhou 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2019年第7期1100-1108,共9页
A series of(Ce,Cr)xO2/Nb2O5 catalysts with different(Ce,Cr)xO2 to Nb2O5 mass ratios were synthesized by the deposition-precipitation method for use in deep catalytic oxidation of 1,2-dichloroethane(DCE), which is one ... A series of(Ce,Cr)xO2/Nb2O5 catalysts with different(Ce,Cr)xO2 to Nb2O5 mass ratios were synthesized by the deposition-precipitation method for use in deep catalytic oxidation of 1,2-dichloroethane(DCE), which is one of the typical chlorinated volatile organic compound pollutants. The textural properties were characterized by X-ray diffraction, N2 adsorption/desorption isotherms, UV-Raman spectroscopy, and scanning electron microscopy. The surface acidity and the redox properties were characterized by ammonia temperature-programmed desorption and H2 temperature-programmed reduction, respectively. The results show that the addition of a proper amount of(Ce,Cr)xO2 over Nb2O5 significantly improves the intrinsic catalytic activity towards the deep oxidation of DCE, and only a very small amount of C2H3Cl is detected as the byproduct of the oxidation process. Further study reveals the existence of an obvious synergistic effect between Nb2O5, with abundant strong acid sites, and(Ce,Cr)xO2, with strong oxidation sites, as the strong acid sites of Nb2O5 promote the adsorption and dehydrochlorination of DCE, while the strong oxidation sites of(Ce,Cr)xO2 contribute to the deep oxidation of the reactant, intermediates, and byproducts. 展开更多
关键词 1 2-DICHLOROETHANE Deep oxidation Mixed oxide NB2O5 Synergistic effect
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Enhanced photocatalytic H_(2) production performance of CdS hollow spheres using C and Pt as bi-cocatalysts 被引量:6
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作者 Shipeng Tang Yang Xia +3 位作者 Jiajie Fan Bei Cheng Jiaguo Yu Wingkei Ho 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2021年第5期743-752,共10页
Photocatalytic H2 production from water splitting is an effective method to solve energy crisis and environmental pollution simultaneously.Herein,carbon@CdS composite hollow spheres(C@CdS-HS)are fabricated via a facil... Photocatalytic H2 production from water splitting is an effective method to solve energy crisis and environmental pollution simultaneously.Herein,carbon@CdS composite hollow spheres(C@CdS-HS)are fabricated via a facile hydrothermal method using porous carbon hollow spheres(C-HS)as the template.The C@CdS-HS shows an excellent photocatalytic H2-generation rate of 20.9 mmol h^(−1) g^(−1)(apparent quantum efficiency of 15.3%at 420 nm),with 1.0 wt%Pt as a cocatalyst under simulated sunlight irradiation;this rate is 69.7,13.9,and 3.9 times higher than that obtained with pure CdS hollow spheres(CdS-HS),C@CdS-HS,and CdS-HS/Pt,respectively.The enhanced photocatalytic H_(2)-evolution activity of C@CdS-HS/Pt is due to the synergistic effect of C and Pt as the bi-cocatalyst.The C-HS serves not only as an active site provider but also as an electron transporter and reservoir.Moreover,C-HS has a strong photothermal effect that is induced by near infrared light,which kinetically accelerates the H_(2)-production reaction.Additionally,the underlying charge transfer pathway and process from CdS to C−HS is revealed.This work highlights the potential application of C-HS-based nanocomposites in solar-to-chemical energy conversion. 展开更多
关键词 CdS hollow sphere Carbon Platinum Bi-cocatalyst Synergistic effect Photocatalytic hydrogen production
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MgO and Au nanoparticle Co-modified g-C_(3)N_(4)photocatalysts for enhanced photoreduction of CO_(2)with H_(2)O 被引量:5
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作者 Naixu Li Meiyou Huang +2 位作者 Jiancheng Zhou Maochang Liu Dengwei Jing 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2021年第5期781-794,共14页
The photoreduction of CO_(2)to achieve high-value-added hydrocarbons under simulated sunlight irradiation is advantageous,but challenging.In this study,a series of MgO and Au nanoparticle-co-modified g-C_(3)N_(4)photo... The photoreduction of CO_(2)to achieve high-value-added hydrocarbons under simulated sunlight irradiation is advantageous,but challenging.In this study,a series of MgO and Au nanoparticle-co-modified g-C_(3)N_(4)photocatalysts were synthesized and subsequently applied for the photocatalytic reduction of CO_(2)with H2O under simulated solar irradiation.The best photocatalytic performance was demonstrated by the Au and 3%MgO-co-modified g-C_(3)N_(4)photocatalysts with CO,CH_(4),CH3OH,and CH3CHO yields of 423.9,83.2,47.2,and 130.4μmol/g,respectively,in a 3-h reaction.We investigated the effects of MgO and Au as cocatalysts on photocatalytic behaviors,respectively.The characterizations and experimental results showed that the enhanced photocatalytic activity was due to the synergistic effect among the components of the ternary photocatalyst.The cocatalyst MgO can activate CO_(2)(adsorbed at the interface between the MgO and Au particles),and the Mg-N bonds formed in the MgO-CN nanosheets played an important role in the charge transfer.Meanwhile,the Au particles that were modified into MgO/g-C_(3)N_(4)can increase the absorption of visible light via the surface plasmon resonance effect and further reduce the activation energies of the photoreduction of CO_(2)using H2O.This study provided an effective method for the modification of traditional primary photocatalysts with promising performance for photocatalytic CO_(2)reduction. 展开更多
关键词 CO2 photoreduction MGO Au g-C3N4 Photocatalysis Synergistic effect COCATALYST
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Synergetic photocatalytic and thermocatalytic reforming of methanol for hydrogen production based on Pt@TiO_(2) catalyst 被引量:4
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作者 Lei Li Wenjun Ouyang +7 位作者 Zefeng Zheng Kaihang Ye Yuxi Guo Yanlin Qin Zhenzhen Wu Zhan Lin Tiejun Wang Shanqing Zhang 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第5期1258-1266,共9页
In order to efficiently produce H_(2),conventional methanol‐water thermocatalytic(TC)reforming requires a very high temperature due to high Gibbs free energy,while the energy conversion efficiency of methanol‐water ... In order to efficiently produce H_(2),conventional methanol‐water thermocatalytic(TC)reforming requires a very high temperature due to high Gibbs free energy,while the energy conversion efficiency of methanol‐water photocatalytic(PC)reforming is far from satisfaction because of the kinetic limitation.To address these issues,herein,we incorporate PC and TC processes together in a specially designed reactor and realize simultaneous photocatalytic/thermocatalytic(PC‐TC)reforming of methanol in an aqueous phase.Such a design facilitates the synergetic effect of the PC and TC process for H_(2) production due to a lower energy barrier and faster reaction kinetics.The methanol‐water reforming based on the optimized 0.05%Pt@TiO_(2) catalyst delivers an outstanding H_(2) production rate in the PC‐TC process(5.66μmol H_(2)·g^(‒1) catalyst·s^(‒1)),which is about 3 and 7 times than those of the TC process(1.89μmol H_(2)·g^(‒1) catalyst·s^(‒1))and the PC process(0.80μmol H_(2)·g^(‒1) catalyst·s^(‒1)),respectively.Isotope tracer experiments,active intermediate trapping experiments,and theoretical calculations demonstrate that the photo‐generated holes and hydroxyl radicals could enhance the methanol dehydrogenation,water molecule splitting,and water‐gas shift reaction,while high temperature accelerates reaction kinetics.The proposed PC‐TC reforming of methanol for hydrogen production can be a promising technology to solve the energy and environmental issue in the closed‐loop hydrogen economy in the near future. 展开更多
关键词 Aqueous‐phase reforming Photocatalysis Thermocatalysis Pt@TiO2 catalyst METHANOL Hydrogen
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SiO_2-supported Au-Ni bimetallic catalyst for the selective hydrogenation of acetylene 被引量:8
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作者 Mengqian Chai Xiaoyan Liu +6 位作者 Lin Li Guangxian Pei Yujing Ren Yang Su Hongkui Cheng Aiqin Wang Tao Zhang 《Chinese Journal of Catalysis》 EI CSCD 北大核心 2017年第8期1338-1346,共9页
Supported Au catalysts have been reported to exhibit high ethylene selectivity in the hydrogenation of acetylene,but the conversion is relatively low.Adding a second metal to Au has proven to be a promising approach t... Supported Au catalysts have been reported to exhibit high ethylene selectivity in the hydrogenation of acetylene,but the conversion is relatively low.Adding a second metal to Au has proven to be a promising approach to enhance its catalytic performance in acetylene hydrogenation.In this work,SiO2‐supported Au‐Ni bimetallic catalysts were synthesized and investigated in the selective hydrogenation of acetylene.The Au‐Ni bimetallic catalysts exhibited much higher catalytic performance than that of the corresponding monometallic Au or Ni catalysts.By tuning the reduction temperature and/or Ni loading,we obtained an Au‐Ni/SiO2catalyst with optimal performance.The results of transmission electron microscopy imaging revealed that the Au‐Ni bimetallic particles were highly dispersed on the SiO2support.Meanwhile,analysis of the bimetallic catalyst by energy‐dispersive X‐ray spectroscopy,high‐resolution transmission electron microscopy,and in situ diffuse reflectance infrared Fourier transform spectroscopy demonstrated the formation of Au‐Ni alloy,which contributed to the synergistic effect between Au and Ni in the hydrogenation of acetylene. 展开更多
关键词 GOLD NICKEL Bimetallic catalyst Synergistic effect Acetylene hydrogenation
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Tuning strategies and structure effects of electrocatalysts for carbon dioxide reduction reaction 被引量:3
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作者 Cong Liu Xuanhao Mei +3 位作者 Ce Han Xue Gong Ping Song Weilin Xu 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第7期1618-1633,共16页
Carbon dioxide emissions have increased due to the consumption of fossil fuels,making the neutralization and utilization of CO_(2) a pressing issue.As a clean and efficient energy conversion process,electrocatalytic r... Carbon dioxide emissions have increased due to the consumption of fossil fuels,making the neutralization and utilization of CO_(2) a pressing issue.As a clean and efficient energy conversion process,electrocatalytic reduction can reduce carbon dioxide into a series of alcohols and acidic organic molecules,which can effectively realize the utilization and transformation of carbon dioxide.This review focuses on the tuning strategies and structure effects of catalysts for the electrocatalytic CO_(2) reduction reaction(CO_(2)RR).The tuning strategies for the active sites of catalysts have been reviewed from intrinsic and external perspectives.The structure effects for the CO_(2)RR catalysts have also been discussed,such as tandem catalysis,synergistic effects and confinement catalysis.We expect that this review about tuning strategies and structure effects can provide guidance for designing highly efficient CO_(2)RR electrocatalysts. 展开更多
关键词 CO_(2)RR Tuning strategies Active sites regulation Structure effect Tandem catalysis Synergistic effect
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Synergetic effect between non-thermal plasma and photocatalytic oxidation on the degradation of gas-phase toluene: Role of ozone 被引量:7
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作者 Haoling Ye Yiqiu Liu +3 位作者 Si Chen Haiqiang Wang Zhen Liu Zhongbiao Wu 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2019年第5期681-690,共10页
In this study, a hybrid process using non‐thermal plasma (NTP) and photocatalytic oxidation (PCO) was adopted for the degradation of gas‐phase toluene using TiO2 as the photocatalyst. To discover the synergetic effe... In this study, a hybrid process using non‐thermal plasma (NTP) and photocatalytic oxidation (PCO) was adopted for the degradation of gas‐phase toluene using TiO2 as the photocatalyst. To discover the synergetic effect between NTP and PCO, the performances of both sole (O3, UV, NTP, and PCO) and combined (O3 + TiO2, O3 + UV, NTP + UV, O3 + PCO, and NTP + PCO) processes were investigated from different perspectives, such as the toluene removal efficiency, selectivity of COx, mineralization rate, ozone utilization, and the generation of by‐products. The toluene removal efficiency of the combined NTP + PCO process was 80.2%, which was much higher than that of a sole degradation process such as NTP (18.8%) and PCO (13.4%). The selectivity of CO2 and the ozone utilization efficiency also significantly improved. The amount of by‐products in the gas phase and the carbon‐ based intermediates adsorbed on the catalyst surface dramatically reduced. The improvement in the overall performances of the combined NTP + PCO process was mainly ascribed to the efficient utilization of ozone in the photocatalytic oxidation, and the ozone further acting as an electron acceptor and scavenger, generating more hydroxyl radicals and reducing the recombination of electron‐ hole pairs. 展开更多
关键词 Non‐thermal plasma Photocatalytic oxidation Synergetic effect OZONE TOLUENE
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Synergistic effect of metallic nickel and cobalt oxides with nitrogen-doped carbon nanospheres for highly efficient oxygen evolution 被引量:4
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作者 Bin Dong Jing-Yi Xie +6 位作者 Zhi Tong Jing-Qi Chi Ya-Nan Zhou Xue Ma Zhong-Yuan Lin Lei Wang Yong-Ming Chai 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2020年第11期1782-1789,共8页
The most energy-inefficient step in the oxygen evolution reaction(OER), which involves a complicated four-electron transfer process, limits the efficiency of the electrochemical water splitting. Here, well-defined Ni/... The most energy-inefficient step in the oxygen evolution reaction(OER), which involves a complicated four-electron transfer process, limits the efficiency of the electrochemical water splitting. Here, well-defined Ni/Co3O4 nanoparticles coupled with N-doped carbon hybrids(Ni/Co3O4@NC) were synthesized via a facile impregnation-calcination method as efficient electrocatalysts for OER in alkaline media. Notably, the impregnation of the polymer with Ni and Co ions in the first step ensured the homogeneous distribution of metals, thus guaranteeing the subsequent in situ calcination reaction, which produced well-dispersed Ni and Co3O4 nanoparticles. Moreover, the N-doped carbon matrix formed at high temperatures could effectively prevent the aggregation and coalescence, and regulate the electronic configuration of active species. Benefiting from the synergistic effect between the Ni, Co3O4, and NC species, the obtained Ni/Co3O4@NC hybrids exhibited enhanced OER activities and remarkable stability in an alkaline solution with a smaller overpotential of 350 m V to afford 10 m A cm-2, lower Tafel slope of 52.27 m V dec-1, smaller charge-transfer resistance, and higher double-layer capacitance of 25.53 m F cm-2 compared to those of unary Co3O4@NC or Ni@NC metal hybrids. Therefore, this paper presents a facile strategy for designing other heteroatom-doped oxides coupled with ideal carbon materials as electrocatalysts for the OER. 展开更多
关键词 Ni/Co3O4@NC N-doped carbon ELECTROCATALYST Synergistic effect Oxygen evolution reaction
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Selective tandem hydrogenation and rearrangement of furfural to cyclopentanone over CuNi bimetallic catalyst in water 被引量:5
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作者 Shujing Zhang Hong Ma +5 位作者 Yuxia Sun Xin Liu Meiyun Zhang Yang Luo Jin Gao Jie Xu 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2021年第12期2216-2224,共9页
Tandem catalysis for the hydrogenation rearrangement of furfural(FA)provides an attractive solution for manufacturing cyclopentanone(CPO)from renewable biomass resources.The Cu-Ni/Al-MCM-41 catalyst was synthesized an... Tandem catalysis for the hydrogenation rearrangement of furfural(FA)provides an attractive solution for manufacturing cyclopentanone(CPO)from renewable biomass resources.The Cu-Ni/Al-MCM-41 catalyst was synthesized and afforded excellent catalytic performance with 99.0%conversion and 97.7%selectivity to CPO in a near-neutral solution under 2.0 MPa H2 at 160℃ for 5 h,much higher than those on other molecular sieve supports including MCM-41,SBA-15,HY,and ZSM-5.A small amount of Al highly dispersed in MCM-41 plays an anchoring role and ensures the formation of highly dispersed CuNi bimetallic nanoparticles(NPs).The remarkably improved catalytic performance may be attributed to the bimetallic synergistic and charge transfer effects.In addition,the initial FA concentration and the aqueous system pH required precise control to minimize polymerization and achieve high selectivity of CPO.Fourier transform infrared spectroscopy and mass spectra results indicated that polymerization was sensitive to pH values.Under acidic conditions,FA and intermediate furfuryl alcohol polymerize,while the intermediate 4-hydroxy-2-cyclopentenone mainly polymerizes under alkaline conditions,blocking the cascade of multiple reactions.Therefore,near-neutral conditions are most suitable for minimizing the impact of polymerization.This study provides a useful solution for the current universal problems of polymerization side reactions and low carbon balance for biomass conversion. 展开更多
关键词 Tandem catalysis Bimetallic synergic effect CYCLOPENTANONE FURFURAL Hydrogenation-rearrangement
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Cobalt/iron bimetal-organic frameworks as efficient electrocatalysts for the oxygen evolution reaction 被引量:1
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作者 Shili Xie Fei Li +2 位作者 Suxian Xu Jiayuan Li Wei Zeng 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2019年第8期1205-1211,共7页
The development of high efficiency and stable electrocatalysts for oxygen evolution is critical for energy storage and conversion systems. Herein, a series of Co/Fe bimetal-organic frameworks (MOFs) were fabricated us... The development of high efficiency and stable electrocatalysts for oxygen evolution is critical for energy storage and conversion systems. Herein, a series of Co/Fe bimetal-organic frameworks (MOFs) were fabricated using a facile ultrasonic method at room temperature, as electrocatalysts for the oxygen evolution reaction (OER) in alkaline solution. The Co2Fe-MOF exhibited an overpotential of 280 mV at a current density of 10 mA cm^-2, a low Tafel slope of 44.7 mV dec^-1, and long-term stability over 12000 s in 1 mol L^-1 KOH. This impressive performance was attributed to the high charge transfer rate, large specific surface area, and synergistic effects of the cobalt and iron centers. 展开更多
关键词 Bimetal-organic frameworks Oxygen evolution reaction ELECTROCATALYSTS Synergetic effect Ultrasonic method
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Synergistic effect of cobalt and copper on a nickel-based modified graphite electrode during methanol electro-oxidation in NaOH solution 被引量:1
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作者 Tayebe Rostami Majid Jafarian +2 位作者 Somaieh Miandari Mohammad G.Mahjani Fereydoon Gobal 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2015年第11期1867-1874,共8页
The electrocatalytic oxidation of methanol was studied over Ni, Co and Cu binary or ternary alloys on graphite electrodes in a NaOH solution (0.1 mol/L). The catalysts were prepared by cycling the graphite electrode... The electrocatalytic oxidation of methanol was studied over Ni, Co and Cu binary or ternary alloys on graphite electrodes in a NaOH solution (0.1 mol/L). The catalysts were prepared by cycling the graphite electrode in solutions containing Ni, Cu and Co ions at cathodic potentials. The synergistic effects and catalytic activity of the modified electrodes were investigated by cyclic voltammetry (CV), chronoamperometry CCA) and electrochemical impedance spectroscopy (EIS). It was found that, in the presence of methanol, the modified Ni-based ternary alloy electrode (G/NiCuCo) exhibited a significantly higher response for methanol oxidation compared to the other samples. The anodic peak currents showed a linear dependency on the square root of the scan rate, which is a characteristic of a diffusion controlled process. During CA studies, the reaction exhibited Cottrellin behavior and the diffusion coefficient of methanol was determined to be 6.25× 10-6 cm2/s and the catalytic rate constant, K, for methanol oxidation was found to be 40×107 cm3/Cmol.s). EIS was used to investigate the catalytic oxidation of methanol on the surface of the modified electrode. 展开更多
关键词 Methanol electro-oxidation Electrocatalysis Synergistic effect Nickel Modified electrode
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