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阵列Pt微电极上CO吸附的原位显微FTIR反射光谱研究 被引量:3
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作者 贡辉 陈声培 +1 位作者 周志有 孙世刚 《科学通报》 EI CAS CSCD 北大核心 2001年第12期996-998,共3页
研制了Pt微电极阵列,运用电化学原位显微FTIR反射光谱研究CO吸附的性能.发现经快速电位循环扫描处理可以在Pt微电极表面上产生一种纳米结构薄层,吸附在薄层表面CO的红外吸收给出谱峰方向倒反和强度显著增强的异常红外特征.
关键词 Pt微电极阵列 显微红外反射光谱 CO 异常红外效应 一氧化碳 吸附性能 组合化学 纳米结构薄层
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Bi2WO6 quantum dot-intercalated ultrathin montmo- rillonite nanostructure and its enhanced photocatalytic performance 被引量:10
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作者 Songmei Sun Wenzhong Wang +4 位作者 Dong Jiang Ling Zhang Xiaoman Li Yali Zheng Qi An 《Nano Research》 SCIE EI CAS CSCD 2014年第10期1497-1506,共10页
The kinetic competition between electron-hole recombination and water oxidation is a key limitation for the development of efficient solar water splitting materials. In this study, we present a solution for solving th... The kinetic competition between electron-hole recombination and water oxidation is a key limitation for the development of efficient solar water splitting materials. In this study, we present a solution for solving this challenge by constructing a quantum dot-intercalated nanostructure. For the first time, we show the interlayer charge of the intercalated nanostructure can significantly inhibit the electron-hole recombination in photocatalysis. For Bi2WO6 quantum dots (QDs) intercalated in a montmorillonite (MMT) nanostructure as an example, the average lifetime of the photogenerated charge carriers was increased from 3.06 μs to 18.8 Ds by constructing the intercalated nanostructure. The increased lifetime markedly improved the photocatalytic performance of Bi2WO6 both in solar water oxidation and environmental purification. This work not oMy provides a method to produce QD-intercalated ultrathin nanostructures but also a general route to design efficient semiconductor-based photoconversion materials for solar fuel generation and environmental purification. 展开更多
关键词 photocatalysis lifetime ammonia degradation water oxidation montmorillonite exfoliation
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