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A2B2O7 pyrochlore compounds:A category of potential materials for clean energy and environment protection catalysis 被引量:3
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作者 Junwei Xu Rong Xi +4 位作者 Xianglan Xu Yan Zhang Xiaohui Feng Xiuzhong Fang Xiang Wang 《Journal of Rare Earths》 SCIE EI CAS CSCD 2020年第8期840-849,I0001,共11页
A2B2O7 pyrochlore is a kind of important functional materials for different purposes,which has been investigated extensively by crystallographers and material scientists.However,the catalytic chemistry of this type of... A2B2O7 pyrochlore is a kind of important functional materials for different purposes,which has been investigated extensively by crystallographers and material scientists.However,the catalytic chemistry of this type of special compounds has rarely been documented,though a few researchers have tried to synthesize some pyrochlore compounds with different chemical compositions for a variety of green energy production and air pollution control reactions in the history.With the expectation to help catalysis scientists to get better acquaintance with,and gain deeper understanding on this type of compounds as heterogeneous catalysts,the major publications over the past several decades have been screened and reviewed in this paper,based also on our own experience of studying on this type of catalytic materials.The crystalline phase transformations of the compounds with the change of the A and B site cations,the phase change’s influences on the surface and bulk properties,and their subsequent impact on the catalytic performance for different reactions have been summarized.Furthermore,the future work which needs to be performed to perceive in depth this kind of important materials as catalysts has been proposed and suggested.We trust that this short review contains valuable information,which will provide great help for people to get better cognition for A2 B2 O7 pyrochlore compounds,and assist them to develop better catalysts for various reactions. 展开更多
关键词 A2B2O7 pyrochlore compounds Crystalline phase change lattice and surface oxygen vacancies Value-added CH4 transformation Air pollution control reactions Rare earths
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