2007Gaofenzi cailiao kexue yu gongchengRequires access

Photoelectrochemical Studies of PMeT Modified CdSe Nanorods Composite Film Electrode

Yin Zhigang

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Abstract

CdSe nanorods were prepared by hydrothermal method.The CdSe nanorods were formed with the diameter about 100 nm and the length about 300 nm.The photoelectrochemical properties of the CdSe nanorods/PMeT composite film electrode were investigated.The results show that the maximum value of photocurrent appears at the -0.7 V electrode potential.The p-n heterojunction is existed in the CdSe/PMeT composite film electrode.The photocurrent of PMeT modified CdSe nanorod is higher than that of CdSe film electrode in long wavelength region.

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What this paper is about

CdSe nanorods were prepared by hydrothermal method.The CdSe nanorods were formed with the diameter about 100 nm and the length about 300 nm.The photoelectrochemical properties of the CdSe nanorods/PMeT composite film electrode were investigated.The results show that the maximum value of photocurrent appears at the -0.7 V electrode potential.The p-n heterojunction is existed in the CdSe/PMeT composite film electrode.The photocurrent of PMeT modified CdSe nanorod is higher than that of CdSe film electrode in long wavelength region.

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Available abstract

CdSe nanorods were prepared by hydrothermal method.The CdSe nanorods were formed with the diameter about 100 nm and the length about 300 nm.The photoelectrochemical properties of the CdSe nanorods/PMeT composite film electrode were investigated.The results show that the maximum value of photocurrent appears at the -0.7 V electrode potential.The p-n heterojunction is existed in the CdSe/PMeT composite film electrode.The photocurrent of PMeT modified CdSe nanorod is higher than that of CdSe film electrode in long wavelength region.

Key concepts: Nanorod, Photocurrent, Materials science, Electrode, Optoelectronics, Composite number, Heterojunction, Composite film

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