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Controlled Synthesis of Organic Nanophotonic Materials with Specific Structures and Compositions ¹²19Ò³ ÒýÎÄ238ƪ
Qiu Hong  Cui, Yong Sheng Zhao,* and Jiannian Yao*
Q. H. Cui, Prof. Y. S. Zhao, Prof. J. N. Yao
Beijing National Laboratory for Molecular Sciences (BNLMS)
CAS Key Laboratory of Photochemistry Institute of Chemistry, Chinese Academy of Sciences
Beijing    100190  ,   China   
Fax/Tel: (+) 86¨C10¨C62652029
E-mail:  yszhao@iccas.ac.cn   ;  jnyao@iccas.ac.cn  
DOI: 10.1002/adma.201305913

Organic nanomaterials have drawn great interest for their potential applications in high-speed miniaturized photonic integration due to their high photoluminescence quantum effi ciency, structural processability, ultrafast photoresponse, and excellent property engineering. Based on the rational design on morphological and componential levels, a series of organic nanomaterials have been controllably synthesized in recent years, and their excitonic/photonic behaviors has been fi ne-tuned to steer the light fl ow for specifi c optical applications. This review presents a comprehensive summary of recent breakthroughs in the controlled synthesis of organic nanomaterials with specifi c structures and compositions, whose tunable photonic properties would provide a novel platform for multifunctional applications. First, we give  a general overview of the tailored construction of novel nanostructures with various photonic properties. Then, we summarize the design and controllable  synthesis of composite materials for the modulation of their functionalities. Subsequently, special emphasis is put on the fabrication of complex nanostructures towards wide applications in isolated photonic devices. We conclude with our personal viewpoints on the development directions in the novel design and controllable construction of organic nanomaterials for future applications in highly integrated photonic devices and chips.
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