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  Home People Academic Staff Division of Organic Optoelectronic Materials 正文
Assist. Prof. YAO Wei


Assist. Prof. YAO Wei



Address: 5 Xin Mo Fan Road, Nanjing Tech University, Nanjing 210009, China

Research Interests

Controllable synthesis of organic nanomaterials, investigate their optoelectronic properties and explore their applications in optoelectronic devices

Biographical Information

2006-2010: Bachelor degree; Jilin University.

2010-2015: PhD degree; Institute of Chemistry, Chinese Academy of Sciences.

2015-        : Assist. Prof.; Institute of Advanced Materials, Nanjing Tech University.

Academic Achievements

Assist. Prof. YAO Wei focuses on controllable synthesis of organic nanomaterials. She is also interested in investigating their optoelectronic properties and exploring their applications in optoelectronic devices. So far, she has published 6 SCI papers on Angew. Chem. Int. Ed., RSC Adv., Nanoscale, J. Mater. Chem. C and so on.


1. W. Yao, Y. Yan, L. Xue, C. Zhang, G. Li, Q. Zheng, Y. S. Zhao*, H. Jiang*, J. Yao*. "Controlling the structures and photonic properties of organic nanomaterials by molecular design." Angew. Chem. Int. Ed. 2013, 52, 8713-8717.

2. W. Yao, Y. S. Zhao* "Tailoring the self-assembled structures and photonic properties of organic nanomaterials". Nanoscale 2014, 6, 3467-3473.

3. W. Yao, G. Han, F. Huang, M. Chu, Q. Peng, F. Hu, Y. Yi, H. Jiang, J. Yao, and Y. S. Zhao*, "'H'-like Organic Nanowire Heterojunctions Constructed from Cooperative Molecular Assembly for Photonic Applications." Adv. Sci. 2015, DOI: 10.1002/advs.201500130

4. M. Li, W. Yao, J.-D. Chen, H.-Y. Lu, Y. Zhao*, C.-F. Chen*, "Tetrahydro[5]helicene-based full-color emission dyes in both solution and solid states: synthesis, structures, photophysical properties and optical waveguide applications." J. Mater. Chem. C, 2014, 2, 8373-8380.

5. X.-J. Li, M. Li, W. Yao, H.-Y. Lu, Y. Zhao*, C.-F. Chen*, RSC Adv. 2015, 5, 18609-18614.

6. W. Yao, Y. S. Zhao*, J. Yao* "Direct visually controlling the optical fields distribution in organic nanowires based on multimode interference"(in preparation)


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