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Chemical functionalization and characterization of graphene-based materials
Author(s) -
Giovanni Bottari,
M. Ángeles Herranz,
Leonie Wibmer,
Michel Volland,
Laura RodríguezPérez,
Dirk M. Guldi,
Andreas Hirsch,
Nazario Martı́n,
Francis D’Souza,
Tomás Torres⊗
Publication year - 2017
Publication title -
chemical society reviews
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 15.598
H-Index - 513
eISSN - 1460-4744
pISSN - 0306-0012
DOI - 10.1039/c7cs00229g
Subject(s) - graphene , characterization (materials science) , surface modification , covalent bond , ferrocene , nanotechnology , materials science , solar energy conversion , energy transfer , electron transfer , combinatorial chemistry , chemistry , photochemistry , electrochemistry , chemical physics , solar energy , organic chemistry , electrode , ecology , biology
Graphene-based materials (GBMs), with graphene, their most known member, at the head, constitute a large family of materials which has aroused the interest of scientists working in different research fields such as chemistry, physics, or materials science, to mention a few, arguably as no other material before. In this review, we offer a general overview on the most relevant synthetic approaches for the covalent and non-covalent functionalization and characterization of GBMs. Moreover, some representative examples of the incorporation into GBMs of electroactive units such as porphyrins, phthalocyanines, or ferrocene, among others, affording electron donor-acceptor (D-A) hybrids are presented. For the latter systems, the photophysical characterization of their ground- and excited-state features has also been included, paying particular attention to elucidate the fundamental dynamics of the energy transfer and charge separation processes of these hybrids. For some of the presented architectures, their application in solar energy conversion schemes and energy production has been also discussed.

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