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Engineering of oxygen vacancy and bismuth cluster assisted ultrathin Bi_(12)O_(17)Cl_(2)nanosheets with efficient and selective photoreduction of CO_(2)to CO 被引量:1
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作者 meili guan Ni Lu +7 位作者 Xuan Zhang Qiuwan Wang Jian Bao Guiye Chen Hao Yu Huaming Li Jiexiang Xia Xuezhong Gong 《Carbon Energy》 SCIE EI CAS CSCD 2024年第4期1-11,共11页
The photocatalytic conversion of CO_(2)into solar‐powered fuels is viewed as a forward‐looking strategy to address energy scarcity and global warming.This work demonstrated the selective photoreduction of CO_(2)to C... The photocatalytic conversion of CO_(2)into solar‐powered fuels is viewed as a forward‐looking strategy to address energy scarcity and global warming.This work demonstrated the selective photoreduction of CO_(2)to CO using ultrathin Bi_(12)O_(17)Cl_(2)nanosheets decorated with hydrothermally synthesized bismuth clusters and oxygen vacancies(OVs).The characterizations revealed that the coexistences of OVs and Bi clusters generated in situ contributed to the high efficiency of CO_(2)–CO conversion(64.3μmol g^(−1)h^(−1))and perfect selectivity.The OVs on the facet(001)of the ultrathin Bi_(12)O_(17)Cl_(2)nanosheets serve as sites for CO_(2)adsorption and activation sites,capturing photoexcited electrons and prolonging light absorption due to defect states.In addition,the Bi‐cluster generated in situ offers the ability to trap holes and the surface plasmonic resonance effect.This study offers great potential for the construction of semiconductor hybrids as multiphotocatalysts,capable of being used for the elimination and conversion of CO_(2)in terms of energy and environment. 展开更多
关键词 Bi cluster Bi_(12)O_(17)Cl_(2)nanosheet oxygen vacancy photocatalytic CO_(2)reduction
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铌掺杂提高钨酸盐氧化锆固体酸催化剂表面酸性制备5-羟甲基糠醛
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作者 王晓军 鲁妮 +4 位作者 付源益 逯畅 管美丽 王坤华 于昊 《Chinese Journal of Chemical Physics》 SCIE EI CAS CSCD 2023年第3期319-328,I0034-I0038,I0100,共16页
作为生物质资源和工业应用之间的重要桥梁,5-羟甲基糠醛(5-HMF)显示出绿色发展的潜能.但是生物质材料在绿色溶剂中转.化为5-HMF的表现仍然受限.本文报道了一种制备高效固体酸催化剂NbOr/WOy-ZrO_(2)以提高果糖转化率的方法.铌盐的引入... 作为生物质资源和工业应用之间的重要桥梁,5-羟甲基糠醛(5-HMF)显示出绿色发展的潜能.但是生物质材料在绿色溶剂中转.化为5-HMF的表现仍然受限.本文报道了一种制备高效固体酸催化剂NbOr/WOy-ZrO_(2)以提高果糖转化率的方法.铌盐的引入导致铌氧化物的生成,提高了WOy-ZrO_(2)载体表面的酸性位点并且调整了布朗斯台德酸与路易斯酸的比例.随着NbOx/WOy-ZrO_(2)催化剂酸性的提高以及酸性中心的增加,果糖在水中的最高转化率达到99%.与此同时,5-HMF的产率和选择性在180°C,30分钟的条件下分别提高到50.1%和50.7%.本文提出的NbOr/WOy-ZrO_(2)催化剂策略为设计高效固体酸催化剂催化水中5-HMF的生成提供了-种新思路. 展开更多
关键词 氧化铌 钨酸盐氧化锆固体酸 果糖 5-羟甲基糠醛 酸性位点
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