Matches in SemOpenAlex for { <https://semopenalex.org/work/W2016703156> ?p ?o ?g. }
- W2016703156 endingPage "1595" @default.
- W2016703156 startingPage "1587" @default.
- W2016703156 abstract "Surfactant or polymer directed self-assembly has been widely investigated to prepare nanostructured metal oxides, semiconductors, and polymers, but this approach is mostly limited to two-phase materials, organic/inorganic hybrids, and nanoparticle or polymer-based nanocomposites. Self-assembled nanostructures from more complex, multiscale, and multiphase building blocks have been investigated with limited success. Here, we demonstrate a ternary self-assembly approach using graphene as fundamental building blocks to construct ordered metal oxide−graphene nanocomposites. A new class of layered nanocomposites is formed containing stable, ordered alternating layers of nanocrystalline metal oxides with graphene or graphene stacks. Alternatively, the graphene or graphene stacks can be incorporated into liquid-crystal-templated nanoporous structures to form high surface area, conductive networks. The self-assembly method can also be used to fabricate free-standing, flexible metal oxide−graphene nanocomposite films and electrodes. We have investigated the Li-ion insertion properties of the self-assembled electrodes for energy storage and show that the SnO2−graphene nanocomposite films can achieve near theoretical specific energy density without significant charge/discharge degradation." @default.
- W2016703156 created "2016-06-24" @default.
- W2016703156 creator A5012895190 @default.
- W2016703156 creator A5020654435 @default.
- W2016703156 creator A5032206900 @default.
- W2016703156 creator A5032583158 @default.
- W2016703156 creator A5042577398 @default.
- W2016703156 creator A5044945661 @default.
- W2016703156 creator A5052083872 @default.
- W2016703156 creator A5052454811 @default.
- W2016703156 creator A5053864339 @default.
- W2016703156 creator A5064711465 @default.
- W2016703156 creator A5073942811 @default.
- W2016703156 creator A5082244577 @default.
- W2016703156 creator A5089293042 @default.
- W2016703156 date "2010-02-25" @default.
- W2016703156 modified "2023-10-11" @default.
- W2016703156 title "Ternary Self-Assembly of Ordered Metal Oxide−Graphene Nanocomposites for Electrochemical Energy Storage" @default.
- W2016703156 cites W1521355396 @default.
- W2016703156 cites W1544947788 @default.
- W2016703156 cites W1613744352 @default.
- W2016703156 cites W1626854854 @default.
- W2016703156 cites W1949231392 @default.
- W2016703156 cites W1972864792 @default.
- W2016703156 cites W1975233440 @default.
- W2016703156 cites W1981517819 @default.
- W2016703156 cites W1984775992 @default.
- W2016703156 cites W1994195265 @default.
- W2016703156 cites W1995041236 @default.
- W2016703156 cites W1998422375 @default.
- W2016703156 cites W2002855928 @default.
- W2016703156 cites W2008302913 @default.
- W2016703156 cites W2008342341 @default.
- W2016703156 cites W2011627422 @default.
- W2016703156 cites W2012134506 @default.
- W2016703156 cites W2013702545 @default.
- W2016703156 cites W2014935324 @default.
- W2016703156 cites W2016635906 @default.
- W2016703156 cites W2018669437 @default.
- W2016703156 cites W2018809718 @default.
- W2016703156 cites W2020306845 @default.
- W2016703156 cites W2022454330 @default.
- W2016703156 cites W2028157562 @default.
- W2016703156 cites W2032544789 @default.
- W2016703156 cites W2034830770 @default.
- W2016703156 cites W2042454875 @default.
- W2016703156 cites W2042602209 @default.
- W2016703156 cites W2051584593 @default.
- W2016703156 cites W2051739870 @default.
- W2016703156 cites W2053328406 @default.
- W2016703156 cites W2054925743 @default.
- W2016703156 cites W2055823675 @default.
- W2016703156 cites W2056815766 @default.
- W2016703156 cites W2058122340 @default.
- W2016703156 cites W2059560225 @default.
- W2016703156 cites W2064853428 @default.
- W2016703156 cites W2065062234 @default.
- W2016703156 cites W2072923279 @default.
- W2016703156 cites W2074429200 @default.
- W2016703156 cites W2078270919 @default.
- W2016703156 cites W2079009584 @default.
- W2016703156 cites W2082904789 @default.
- W2016703156 cites W2087638855 @default.
- W2016703156 cites W2087899039 @default.
- W2016703156 cites W2091740986 @default.
- W2016703156 cites W2094070298 @default.
- W2016703156 cites W2101977779 @default.
- W2016703156 cites W2102415385 @default.
- W2016703156 cites W2103809511 @default.
- W2016703156 cites W2108376819 @default.
- W2016703156 cites W2117208350 @default.
- W2016703156 cites W2117287668 @default.
- W2016703156 cites W2119731600 @default.
- W2016703156 cites W2124030055 @default.
- W2016703156 cites W2132384935 @default.
- W2016703156 cites W2134418903 @default.
- W2016703156 cites W2137714269 @default.
- W2016703156 cites W2147789376 @default.
- W2016703156 cites W2165036762 @default.
- W2016703156 cites W2170193697 @default.
- W2016703156 cites W4236051258 @default.
- W2016703156 cites W4376848506 @default.
- W2016703156 doi "https://doi.org/10.1021/nn901819n" @default.
- W2016703156 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/20184383" @default.
- W2016703156 hasPublicationYear "2010" @default.
- W2016703156 type Work @default.
- W2016703156 sameAs 2016703156 @default.
- W2016703156 citedByCount "773" @default.
- W2016703156 countsByYear W20167031562012 @default.
- W2016703156 countsByYear W20167031562013 @default.
- W2016703156 countsByYear W20167031562014 @default.
- W2016703156 countsByYear W20167031562015 @default.
- W2016703156 countsByYear W20167031562016 @default.
- W2016703156 countsByYear W20167031562017 @default.
- W2016703156 countsByYear W20167031562018 @default.
- W2016703156 countsByYear W20167031562019 @default.
- W2016703156 countsByYear W20167031562020 @default.
- W2016703156 countsByYear W20167031562021 @default.