2018NanoscaleRequires access

A wafer-scale 1 nm Ni(OH) 2 nanosheet with superior electrocatalytic activity for the oxygen evolution reaction

Peng Tian, Yanhao Yu, Xin Yin, Xudong Wang

Open publisher page 45 citations

Abstract

nanosheet was more than 2 orders of magnitude higher than those of typical OER catalysts. The capability of producing wafer-scale nanometer-thick nanosheets offers a promising strategy to improve the mass efficiency of electrochemical catalysts, which is particularly valuable for preserving rare and precious catalyst materials.

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What this paper is about

nanosheet was more than 2 orders of magnitude higher than those of typical OER catalysts. The capability of producing wafer-scale nanometer-thick nanosheets offers a promising strategy to improve the mass efficiency of electrochemical catalysts, which is particularly valuable for preserving rare and precious catalyst materials.

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OpenAlex reports 45 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

nanosheet was more than 2 orders of magnitude higher than those of typical OER catalysts. The capability of producing wafer-scale nanometer-thick nanosheets offers a promising strategy to improve the mass efficiency of electrochemical catalysts, which is particularly valuable for preserving rare and precious catalyst materials.

Key concepts: Nanosheet, Oxygen evolution, Wafer, Materials science, Scale (ratio), Oxygen reduction reaction, Oxygen, Chemical engineering

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