2013•Chemical CommunicationsRequires access

In situ switching layer-by-layer assembly: one-pot rapid layer assembly via alternation of reductive and oxidative electropolymerization

Mao Li, Jian Zhang, Hai‐Jing Nie, Meiyong Liao, Liwen Sang, Wenqiang Qiao, Zhi Yuan Wang, Yuguang Ma, Yu‐Wu Zhong, Katsuhiko Ariga

Open publisher page 36 citations

Abstract

In situ one-pot rapid layer-by-layer assembly of polymeric films as an active layer of a photoactive device via alternation of reductive and oxidative electropolymerization has been demonstrated. This novel fabrication without moving or changing experimental gears would be a powerful strategy to develop automated layer-by-layer machines.

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What this paper is about

In situ one-pot rapid layer-by-layer assembly of polymeric films as an active layer of a photoactive device via alternation of reductive and oxidative electropolymerization has been demonstrated. This novel fabrication without moving or changing experimental gears would be a powerful strategy to develop automated layer-by-layer machines.

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OpenAlex reports 36 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

In situ one-pot rapid layer-by-layer assembly of polymeric films as an active layer of a photoactive device via alternation of reductive and oxidative electropolymerization has been demonstrated. This novel fabrication without moving or changing experimental gears would be a powerful strategy to develop automated layer-by-layer machines.

Key concepts: Layer (electronics), Layer by layer, Alternation (linguistics), Fabrication, Materials science, In situ, Nanotechnology, Oxidative phosphorylation

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