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MOF衍生Co_(3)O_(4)/ZrO_(2)介孔八面体:优化电荷转移和中间体转化用于高效CO_(2)光还原 被引量:1
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作者 刘海兵 邱衍滨 +4 位作者 甘文秀 庄国鑫 陈飞飞 杨程凯 于岩 《Science China Materials》 SCIE EI CAS CSCD 2024年第2期588-597,共10页
调控电荷转移和反应路径是促进光催化CO_(2)还原的两种有效策略.本研究通过热解UIO-66@ZIF-67核壳八面体,合成了Co_(3)O_(4)/ZrO_(2)介孔八面体.该介孔八面体由高度分散的小尺寸纳米颗粒组装而成,平均颗粒尺寸为13 nm,平均孔径为5.8 nm... 调控电荷转移和反应路径是促进光催化CO_(2)还原的两种有效策略.本研究通过热解UIO-66@ZIF-67核壳八面体,合成了Co_(3)O_(4)/ZrO_(2)介孔八面体.该介孔八面体由高度分散的小尺寸纳米颗粒组装而成,平均颗粒尺寸为13 nm,平均孔径为5.8 nm,比表面积为43.11 m^(2)g^(-1).受益于活性位点设计,电荷转移动力学和CO_(2)吸附得以增强.此外,密度泛函理论计算结果显示,ZrO_(2)能够有效调控CO_(2)还原的反应路径,包括促进CO_(2)活化为*CO_(2)、中间体(*COOH和*CO)的形成、以及减小限速步(*CO→CO)的能垒.因此,Co_(3)O_(4)/ZrO_(2)介孔八面体的周转率高达28.82,是纯Co_(3)O_(4)的16.95倍. 展开更多
关键词 metal-organic frameworks MESOPOROUS OXIDES photocatalysis CO_(2)reduction
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Oxygen vacancies in metal oxides: recent progresstowards advanced catalyst design 被引量:19
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作者 guoxin zhuang Yawen Chen +2 位作者 Zanyong zhuang Yan Yu Jiaguo Yu 《Science China Materials》 SCIE EI CSCD 2020年第11期2089-2118,共30页
Energy crisis and environmental problems urgently drive the proposal of new strategies to improve human wellbeing and assist sustainable development.To this end,scientists have explored many metal oxides-based photoca... Energy crisis and environmental problems urgently drive the proposal of new strategies to improve human wellbeing and assist sustainable development.To this end,scientists have explored many metal oxides-based photocatalysts with high stability,low cost,earth abundance,and potentially high catalytic activity relevant for key applications such as H2O splitting,CO2 reduction,N2 fixation,and advanced oxidation of pollutants.In these metal oxides,oxygen vacancies(OVs)are ubiquitous and intrinsic defects with pronounced impacts on the physicochemical properties of the catalysts,which may open new opportunities for obtaining efficient metal oxides.The thorough understanding of the structural and electronic nature of OVs is necessary to determine how they serve as catalytically active sites.In this review,we summarize the origin of OVs,the strategies to introduce OVs,as well as the fundamental structure-activity relationships to relate these crystal defects to catalyst properties including light absorption,charge separation,etc.We emphasize the mechanism of OVs formation and their effects on the intrinsic catalytic characteristics of the metal oxides.We also present some multicomponent catalytic platforms where OVs contribute to catalysis via synergy.Finally,opportunities and challenges on engineering defects in photocatalysts are summarized to highlight the future directions of this research field. 展开更多
关键词 oxygen vacancy CATALYSIS defect engineering energy and environment metal oxide
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