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Nanonet as a scaffold with targeted functionalities

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A random assembly of nanoscale electrically conducting wires, a so called a nanonet, has a variety of Interesting properties, which has been exploited for multiple applications. These nanowire networks can also be regarded as a "scaffold" onto which molecules and nanoscale objects can be attached for well defined functionalities. This review summarizes the strategies of the attachments onto the scaffold, the investigation of the interface between the scaffold and the functional species together with the applications in the areas of renewable energy, opto-electronics, catalysis and biotechnology. The initial work on this novel materials platform will likely followed up by development efforts so that the fundamental value propositions associated with the scaffold can be fully exploited. Initial work towards this goal is gradually emerging.

George Gruner、Yanli Zhao

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Department of Physics and Astronomy, University of California Los Angeles, Los Angeles, California, 90095 USA.

Division of Chemistry and Biological Chemistry, School of Physical and Mathematical Sciences, Nanyang Technological University, 21 Nanyang Link, 637371 Singapore.

2012

Journal of Materials Chemistry

Journal of Materials Chemistry

SCI
ISSN:0959-9428
年,卷(期):2012.22(48)
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