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Directional growth of quasi-2D Cu2O monocrystals on rGO membranes in aqueous environments.


ABSTRACT: The preparation technology of unconventional low-dimensional Cu2O monocrystals, which exhibit specific crystal planes and present significantly unique interfacial and physicochemical properties, is attracting increasing attention and interest. Herein, by integrating a high-temperature oxidation process under vacuum and a pure-water incubation process under ambient conditions, we propose the self-assembled growth and synthesis of quasi-two-dimensional Cu2O monocrystals on reduced graphene oxide (rGO) membranes. The prepared Cu2O crystals have a single (110) crystal plane, regular rectangular morphology, and potentially well conductivity. Experimental and theoretical results suggest that this assembly is attributed to the pre-nucleation clusters aggregation and directional attachment of Cu and O on the rGO membranes in aqueous environment and cation-π interactions between the (110) crystal plane of Cu2O and rGO surface. Our findings offer a potential avenue for the discovery and design of advanced low-dimensional single-crystal materials with specific interfacial properties in a pure aqueous environment.

SUBMITTER: Zhao Y 

PROVIDER: S-EPMC9672942 | biostudies-literature | 2022 Dec

REPOSITORIES: biostudies-literature

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Directional growth of quasi-2D Cu<sub>2</sub>O monocrystals on rGO membranes in aqueous environments.

Zhao Yimin Y   Zhang Quan Q   Ma Jianbing J   Yi Ruobing R   Gou Lu L   Nie Dexi D   Han Xiaona X   Zhang Lihao L   Wang Yuetian Y   Xu Xintong X   Wang Zhe Z   Chen Liang L   Lu Ying Y   Zhang Shengli S   Zhang Lei L  

iScience 20221102 12


The preparation technology of unconventional low-dimensional Cu<sub>2</sub>O monocrystals, which exhibit specific crystal planes and present significantly unique interfacial and physicochemical properties, is attracting increasing attention and interest. Herein, by integrating a high-temperature oxidation process under vacuum and a pure-water incubation process under ambient conditions, we propose the self-assembled growth and synthesis of quasi-two-dimensional Cu<sub>2</sub>O monocrystals on re  ...[more]

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