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Extremely high efficient nanoreactor with Au@ZnO catalyst for photocatalysis
Journal article   Peer reviewed

Extremely high efficient nanoreactor with Au@ZnO catalyst for photocatalysis

Chung-Yi Su, Tung-Han Yang, Tung-Han Yang, Vitaly Gurylev, Sheng-Hsin Huang, Jenn-Ming Wu and Tsong-Pyng Perng
Nanotechnology, Vol.26(39), 394001
11/09/2015

Abstract

atomic layer deposition Au nanoparticles nanoreactor photocatalysis ZnO
We fabricated a photocatalytic Au@ZnO@PC (polycarbonate) nanoreactor composed of monolayered Au nanoparticles chemisorbed on conformal ZnO nanochannel arrays within the PC membrane. A commercial PC membrane was used as the template for deposition of a ZnO shell into the pores by atomic layer deposition (ALD). Thioctic acid (TA) with sufficient steric stabilization was used as a molecular linker for functionalization of Au nanoparticles in a diameter of 10 nm. High coverage of Au nanoparticles anchored on the inner wall of ZnO nanochannels greatly improved the photocatalytic activity for degradation of Rhodamine B. The membrane nanoreactor achieved 63% degradation of Rhodamine B within only 26.88 ms of effective reaction time owing to its superior mass transfer efficiency based on Damköhler number analysis. Mass transfer limitation can be eliminated in the present study due to extremely large surface-to-volume ratio of the membrane nanoreactor. © 2015 IOP Publishing Ltd.

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