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January 1, 2014Chemical Society Reviews1,153 citationsOpen Access

Recent progress in metal–organic complexes for optoelectronic applications

HXHui XuRCRunfeng ChenQSQiang Sun

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Abstract

The design and characterization of metal-organic complexes for optoelectronic applications is an active area of research. The metal-organic complex offers unique optical and electronic properties arising from the interplay between the inorganic metal and the organic ligand. The ability to modify chemical structure through control over metal-ligand interaction on a molecular level could directly impact the properties of the complex. When deposited in thin film form, this class of materials enable the fabrication of a wide variety of low-cost electronic and optoelectronic devices. These include light emitting diodes, solar cells, photodetectors, field-effect transistors as well as chemical and biological sensors. Here we present an overview of recent development in metal-organic complexes with controlled molecular structures and tunable properties. Advances in extending the control of molecular structures to solid materials for energy conversion and information technology applications will be highlighted.

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Xu et al. (2014) studied this question.

synapsesocial.com/papers/69dab6494a1e15904c835d5chttps://doi.org/10.1039/c3cs60449g
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