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负载金属助催化剂MgAl-LDO/TiO2的光催化还原CO2性能 被引量:2
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作者 苏彩红 荣佳悦 +3 位作者 吕嘉奇 刘玲 常志显 种瑞峰 《化学研究》 CAS 2019年第5期463-466,共4页
通过原位光沉积将不同贵金属Cu、Ag、Au、Pt、Rh、Pd和Cu Pt、Cu Pd、Pt Pd、Au Ag作为助催化剂负载在MgAl层状双金属氧化物(MgAl LDO)/TiO2催化剂表面,研究了助催化剂种类对MgAl LDO/TiO的光催化还2原CO2性能的影响.结果表明:沉积Cu、A... 通过原位光沉积将不同贵金属Cu、Ag、Au、Pt、Rh、Pd和Cu Pt、Cu Pd、Pt Pd、Au Ag作为助催化剂负载在MgAl层状双金属氧化物(MgAl LDO)/TiO2催化剂表面,研究了助催化剂种类对MgAl LDO/TiO的光催化还2原CO2性能的影响.结果表明:沉积Cu、Ag、Au、Rh和Ag Au时,还原反应倾向于生成CO,而沉积Pt、Pd、Cu Pt、Cu Pd和Pt Pd时,反应倾向于生成CH4.在所选择的助催化剂体系中,Au是最佳的单一金属助催化剂,Cu Pt则是最佳的双金属助催化剂体系. 展开更多
关键词 TIO2 光催化还原 CO2 助催化剂
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Ni(OH)_(2)quantum dots as a stable cocatalyst modifiedα-Fe_(2)O_(3) for enhanced photoelectrochemical water-splitting 被引量:2
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作者 Jiayue Rong Zhenzhen Wang +3 位作者 Jiaqi Lv Ming Fan Ruifeng Chong Zhixian Chang 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2021年第11期1999-2009,共11页
Depositing a cocatalyst has proven to be an important strategy for improving the photoelectrochemical(PEC)water-splitting efficiency of photoanodes.In this study,Ni(OH)2 quantum dots(Ni(OH)2 QDs)were deposited in situ... Depositing a cocatalyst has proven to be an important strategy for improving the photoelectrochemical(PEC)water-splitting efficiency of photoanodes.In this study,Ni(OH)2 quantum dots(Ni(OH)2 QDs)were deposited in situ onto anα-Fe_(2)O_(3)photoanode via a chelation-mediated hydrolysis method.The photocurrent density of the Ni(OH)2 QDs/α-Fe_(2)O_(3)photoanode reached 1.93 mA·cm^(−2)at 1.23 V vs.RHE,which is 3.5 times that ofα-Fe_(2)O_(3),and an onset potential with a negative shift of ca.100 mV was achieved.More importantly,the Ni(OH)2 QDs exhibited excellent stability in maintaining PEC water oxidation at a high current density,which is attributed to the ultra-small crystalline size,allowing for the rapid acceptance of holes fromα-Fe_(2)O_(3)to Ni(OH)_(2)QDs,formation of active sites for water oxidation,and hole transfer from the active sites to water molecules.Further(photo)electrochemical analysis suggests that Ni(OH)_(2)QDs not only provide maximal active sites for water oxidation but also suppress charge recombination by passivating the surface states ofα-Fe_(2)O_(3),thereby significantly enhancing the water oxidation kinetics over theα-Fe_(2)O_(3)surface. 展开更多
关键词 Photoelectrochemical water splitting α-Fe_(2)O_(3) COCATALYST Ni(OH)_(2) Quantum dots
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