Literature DB >> 24245975

Direct observation of spatially heterogeneous single-layer graphene oxide reduction kinetics.

Matthew P McDonald1, Ahmed Eltom, Felix Vietmeyer, Janak Thapa, Yurii V Morozov, Denis A Sokolov, Jose H Hodak, Kizhanipuram Vinodgopal, Prashant V Kamat, Masaru Kuno.   

Abstract

Graphene oxide (GO) is an important precursor in the production of chemically derived graphene. During reduction, GO's electrical conductivity and band gap change gradually. Doping and chemical functionalization are also possible, illustrating GO's immense potential in creating functional devices through control of its local hybridization. Here we show that laser-induced photolysis controllably reduces individual single-layer GO sheets. The reaction can be followed in real time through sizable decreases in GO's photoluminescence efficiency along with spectral blueshifts. As-produced reduced graphene oxide (rGO) sheets undergo additional photolysis, characterized by dramatic emission enhancements and spectral redshifts. Both GO's reduction and subsequent conversion to photobrightened rGO are captured through movies of their photoluminescence kinetics. Rate maps illustrate sizable spatial and temporal heterogeneities in sp(2) domain growth and reveal how reduction "flows" across GO and rGO sheets. The observed heterogeneous reduction kinetics provides mechanistic insight into GO's conversion to chemically derived graphene and highlights opportunities for overcoming its dynamic, chemical disorder.

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Year:  2013        PMID: 24245975     DOI: 10.1021/nl402057j

Source DB:  PubMed          Journal:  Nano Lett        ISSN: 1530-6984            Impact factor:   11.189


  1 in total

1.  Fluorescence intermittency originates from reclustering in two-dimensional organic semiconductors.

Authors:  Anthony Ruth; Michitoshi Hayashi; Peter Zapol; Jixin Si; Matthew P McDonald; Yurii V Morozov; Masaru Kuno; Boldizsár Jankó
Journal:  Nat Commun       Date:  2017-02-22       Impact factor: 14.919

  1 in total

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