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Advances in Noble Metal-Decorated Metal Oxide Nanomaterials for Chemiresistive Gas Sensors:Overview 被引量:2
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作者 LiYuan Zhu LangXi Ou +3 位作者 LiWen Mao XueYan Wu YiPing Liu hongliang lu 《Nano-Micro Letters》 SCIE EI CAS CSCD 2023年第6期353-427,共75页
Highly sensitive gas sensors with remarkably low detection limits are attractive for diverse practical application fields including real-time environmental monitoring,exhaled breath diagnosis,and food freshness analys... Highly sensitive gas sensors with remarkably low detection limits are attractive for diverse practical application fields including real-time environmental monitoring,exhaled breath diagnosis,and food freshness analysis.Among various chemiresistive sensing materials,noble metal-decorated semiconducting metal oxides(SMOs)have currently aroused extensive attention by virtue of the unique electronic and catalytic properties of noble metals.This review highlights the research progress on the designs and applications of different noble metal-decorated SMOs with diverse nanostructures(e.g.,nanoparticles,nanowires,nanorods,nanosheets,nanoflowers,and microspheres)for high-performance gas sensors with higher response,faster response/recovery speed,lower operating temperature,and ultra-low detection limits.The key topics include Pt,Pd,Au,other noble metals(e.g.,Ag,Ru,and Rh.),and bimetals-decorated SMOs containing ZnO,SnO_(2),WO_(3),other SMOs(e.g.,In_(2)O_(3),Fe_(2)O_(3),and CuO),and heterostructured SMOs.In addition to conventional devices,the innovative applications like photo-assisted room temperature gas sensors and mechanically flexible smart wearable devices are also discussed.Moreover,the relevant mechanisms for the sensing performance improvement caused by noble metal decoration,including the electronic sensitization effect and the chemical sensitization effect,have also been summarized in detail.Finally,major challenges and future perspectives towards noble metal-decorated SMOs-based chemiresistive gas sensors are proposed. 展开更多
关键词 Noble metal BIMETAL Semiconducting metal oxide Chemiresistive gas sensor Electronic sensitization Chemical sensitization
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锂离子电池用钴基氧化物的结构设计及本征活性调控的研究进展 被引量:2
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作者 王雄 王睿 +5 位作者 康巧玲 李冬云 徐扬 葛洪良 高峰 陆轻铱 《无机化学学报》 SCIE CAS CSCD 北大核心 2022年第9期1673-1689,共17页
锂离子电池的商业石墨负极材料的容量已经接近理论值,限制了动力电池的发展,开发容量高、稳定性好、循环寿命长和倍率性能优良的新型负极材料显得尤为重要。钴基氧化物材料由于其具有较高的比容量,是锂离子电池的理想负极材料之一。本... 锂离子电池的商业石墨负极材料的容量已经接近理论值,限制了动力电池的发展,开发容量高、稳定性好、循环寿命长和倍率性能优良的新型负极材料显得尤为重要。钴基氧化物材料由于其具有较高的比容量,是锂离子电池的理想负极材料之一。本文分别从结构设计和化学成分调控2个方面,结合本课题组近年来的研究及国内外重要文献综述了钴基氧化物作为锂离子电池负极材料的研究进展。在结构设计方面,通过构建一维结构、二维结构、三维结构、空心结构、碳材料支撑结构以及异质结构来增加钴基氧化物的反应活性位点数量;而在化学成分调控方面则通过引入无定型结构、非金属杂原子掺杂、金属杂原子掺杂、构筑高熵氧化物来提高钴基氧化物的本征活性,从而提高钴基氧化物的锂离子电池性能。最后,对钴基氧化物在锂离子电池领域未来的发展进行了展望。 展开更多
关键词 锂离子电池 钴基氧化物 结构调控 电子调控 负极材料
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