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Enhanced ambient ammonia photosynthesis by Mo-doped Bi_(5)O_(7)Br nanosheets with light-switchable oxygen vacancies 被引量:2
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作者 Xue Chen Ming-Yu Qi +2 位作者 Yue-Hua Li Zi-Rong Tang Yi-Jun Xu 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2021年第11期2020-2026,共7页
The fabrication of efficient catalysts to reduce nitrogen(N_(2))to ammonia(NH3)is a significant challenge for artificial N_(2) fixation under mild conditions.In this work,we demonstrated that the simultaneous introduc... The fabrication of efficient catalysts to reduce nitrogen(N_(2))to ammonia(NH3)is a significant challenge for artificial N_(2) fixation under mild conditions.In this work,we demonstrated that the simultaneous introduction of oxygen vacancies(OVs)and Mo dopants into Bi_(5)O_(7)Br nanosheets can significantly increase the activity for photocatalytic N_(2) fixation.The 1 mol% Mo-doped Bi_(5)O_(7)Br nanosheets exhibited an optimal NH_(3) generation rate of 122.9μmol g^(-1) h^(-1) and durable stability,which is attributed to their optimized conduction band position,suitable absorption edge,large number of light-switchable OVs,and improved charge carrier separation.This work provides a promising approach to design photocatalysts with light-switchable OVs for N_(2) reduction to NH_(3) under mild conditions,highlighting the wide application scope of nanostructured BiOBr-based photocatalysts as effective N_(2) fixation systems. 展开更多
关键词 Photocatalyst Mo-doped Bi_(5)O_(7)Br nanosheets Light-switchable oxygen vacancies N_(2) photoreduction to NH3
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高能量密度富锂锰基正极材料结构调控与性能研究 被引量:3
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作者 黄鹏 邹大中 +2 位作者 牛棒棒 陈浩舟 李勋 《稀有金属与硬质合金》 CAS CSCD 北大核心 2022年第1期63-69,共7页
富锂锰基氧化物(LMO)正极材料具有很高的比容量,但其仍存在首次不可逆容量损失大、动力学性能差、电压衰降等缺陷。本文设计并优化Li_(1.2)Ni_(0.13)Co_(0.13)Mn_(0.54)O_(2)正极材料结构,通过掺杂Br^(-)取代O^(2-)限制充放电循环过程... 富锂锰基氧化物(LMO)正极材料具有很高的比容量,但其仍存在首次不可逆容量损失大、动力学性能差、电压衰降等缺陷。本文设计并优化Li_(1.2)Ni_(0.13)Co_(0.13)Mn_(0.54)O_(2)正极材料结构,通过掺杂Br^(-)取代O^(2-)限制充放电循环过程晶格氧的迁移;通过调控富锂锰基氧化物电极中的氧空位,增强氧阴离子反应的可逆性,改善电极的循环稳定性。非等价态Br-的取代更易产生氧空位,从而提高材料电导率,同时改善Li^(+)扩散动力学,提升材料的倍率性能。 展开更多
关键词 正极材料 富锂锰基氧化物(LMO) Br^(-)掺杂 氧空位 结构调控 充放电性能
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