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平面Si/PCBM与纳米Si/PCBM有机-无机杂化异质结的对比研究(英文)
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作者 刘维峰 边继明 +2 位作者 骆瑛琳 乔建坤 赵春一 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2015年第2期214-218,共5页
本研究采用平面硅与纳米硅分别与旋涂法生长的[6,6]-苯基C61-丁酸甲酯(PCBM)形成有机–无机杂化异质结,对比研究了两种异质结界面电学特性的差异。结果显示,平面Si/PCBM和纳米Si/PCBM两种异质结都表现出明显的整流特性,但相对于平面Si/P... 本研究采用平面硅与纳米硅分别与旋涂法生长的[6,6]-苯基C61-丁酸甲酯(PCBM)形成有机–无机杂化异质结,对比研究了两种异质结界面电学特性的差异。结果显示,平面Si/PCBM和纳米Si/PCBM两种异质结都表现出明显的整流特性,但相对于平面Si/PCBM异质结,纳米Si/PCBM异质结有较大的导通电压和较小的电流密度。为了深入研究导致这种差异的相关物理机制,通过阻抗谱(IS)表征技术进一步研究了两种异质结因界面变化而产生的电阻、电容的变化趋势。阻抗测试分析表明,Si/PCBM异质结界面存在的大量缺陷致使寄生效应进一步增大,影响了器件中电荷的输运。 展开更多
关键词 无机–有机异质结 纳米Si/PCBM 阻抗谱 瞬态光伏谱
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Ag nanoparticles anchored organic/inorganic Z‐scheme 3DOMM‐TiO_(2‒x)‐based heterojunction for efficient photocatalytic and photoelectrochemical water splitting 被引量:1
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作者 Zhiying Xu Chunyu Guo +7 位作者 Xin Liu Ling Li Liang Wang Haolan Xu Dongke Zhang Chunhu Li Qin Li Wentai Wang 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第5期1360-1370,共11页
Narrow spectral response,low charge separation efficiency and slow water oxidation kinetics of TiO_(2)limit its application in photoelectrochemical and photocatalytic water splitting.Herein,a promising organic/inorgan... Narrow spectral response,low charge separation efficiency and slow water oxidation kinetics of TiO_(2)limit its application in photoelectrochemical and photocatalytic water splitting.Herein,a promising organic/inorganic composite catalyst Ag/PANI/3DOMM‐TiO_(2–x)with a three‐dimensional ordered macro‐and meso‐porous(3DO MM)structure,oxygen vacancy and Ti^(3+)defects,heterojunction formation and noble metal Ag was designed based on the Z‐scheme mechanism and successfully prepared.The Ag/PANI/3DOMM‐TiO_(2–x)ternary catalyst exhibited enhanced hydrogen production activity in both photocatalytic and photoelectrochemical water splitting.The photocatalytic hydrogen production rate is 420.90μmol g^(–1)h^(–1),which are 19.80 times and 2.06 times higher than the commercial P25 and 3DOMM‐TiO_(2),respectively.In the photoelectrochemical tests,the Ag/PANI/3DOMM‐TiO_(2–x)photoelectrode shows enhanced separation and transfer of carriers with a high current density of 1.55 mA cm^(–2)at equilibrium potential of 1.23 V under simulated AM 1.5 G illumination,which is approximately 5 times greater than the 3DOMM‐TiO_(2).The present work has demonstrated the promising potential of organic/inorganic Z‐scheme photocatalyst in driving water splitting for hydrogen production. 展开更多
关键词 PHOTOELECTROCHEMICAL PHOTOCATALYSIS Organic/inorganic composite HETEROJUNCTION Water splitting
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