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Influence of Cu nanoparticle size on the photo-electrochemical response from Cu-multiwall carbon nanotube composites

机译:Cu纳米尺寸对Cu-多壁碳纳米管复合材料光电化学反应的影响

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摘要

We show that Cu metal nanoparticle-multiwall carbon nanotube (MWCNT) assemblies can act as a new hybrid photoactive layer in photo-electrochemical devices. The carbon nanotube (CNT) composites were formed by a controlled thermal deposition of copper which produced crystalline metal nanoparticles localized on the carbon tube outer walls. The photoresponse evaluated in terms of IPCE (incident photon-to-charge carrier generation efficiency) varied for different sized-Cu-MWCNT samples across all the visible and near ultraviolet photon energy range with respect to the response of bare MWCNTs. In the case of 0.2 nm Cu nominal thickness, the IPCE increased, reaching 15%, a value 2.5 times higher than that measured for bare MWCNTs. As the Cu nominal coverage thickened, the IPCE started to decrease and become totally ineffective after 1 nm deposited Cu. The IPCE increase found was interpreted as being the result of a remarkable charge transfer between the Cu metal nanoparticles and the CNTs due to the formation of a strong ionic bond at their interface. The results obtained prove that the metal nanoparticle-CNT composites have optical, electrical and structural properties that can be applied in a variety of nanoscale architectures for novel photo-electrochemical devices.
机译:我们显示铜金属纳米粒子-多壁碳纳米管(MWCNT)组件可以充当光电化学装置中的新的混合光敏层。碳纳米管(CNT)复合材料是通过铜的受控热沉积形成的,铜的沉积产生了位于碳管外壁上的结晶金属纳米颗粒。相对于裸MWCNT的响应,在所有可见光和近紫外光子能量范围内,对于不同尺寸的Cu-MWCNT样品,根据IPCE(入射光子至电荷载流子产生效率)评估的光响应有所不同。在标称厚度为0.2 nm的铜的情况下,IPCE增加了15%,是裸MWCNT的2.5倍。随着铜标称覆盖范围的增加,在沉积1 nm的铜之后,IPCE开始降低并完全失效。发现的IPCE增加是由于在铜金属纳米颗粒和CNT之间形成了强大的离子键,从而在铜金属纳米颗粒和CNT之间进行了显着的电荷转移的结果。获得的结果证明,金属纳米粒子-CNT复合材料具有光学,电学和结构特性,可以应用于各种纳米级结构中,用于新型光电化学装置。

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