纪德洋
- 教师拼音名称:Ji Deyang
- 出生日期:1986-12-13
- 性别:男
- 职称:教授
- 所属院系:分子聚集态科学研究院
- 3d2f11f7ab7a6b83cf35d37278eb02ff43b07a04918f4fa517f63e4e0c1027f1c3afc9013d727abb7adc35dedd02886b0a3c53ec669ee4bf7a3d324974ca840519fbee519693cba5de11017064a2a7cfe85253d45554f7c20fcedf7409dbc00251ac6f7efa21e1a02f80a5a313a679e33a0f5fb1518b91e4d358fb0a3cbefd0c
- 72c6ffe058f0cc9a1d156566db06933fa147047cae2382f47d25eaee88b5920c5bc258bb32337a4640a414425a5a94c2b7750405bc9130cf35b7e7de3b6cf086dcc2c26982ba8c66487abb7550463a5bb76dc9d221a34ea3174a4f03d282b98705a47c0481b872c45deb81cbe9ff9a453a49bbe05d6f448846e989bf422b5827
- 67e4a48d11032011ef625723b4dcf42a70bd39d609e57b0cb454996a1a215ff5104adca00474b6e694c65faffb8ce5b3ece5ae0f5449caf15a489c7e614a984126fab814fe00d543b99a6b47868adfb472a57826cf4ebde894828ec192d93c72000b1638ace09f7860ce6d5b76c26c37485c1a03e5c3ccc6ad42c457293214df
-
Deyang Ji, Tao Li, and Harald Fuchs,”Patterning and applications of nanoporous structures in organic electronics”, Nano Today, 2020, 31,100843.
-
Deyang Ji, Ye Zou, Kunjie Wu, Fangxu Yang, Saeed Amirjalayer, Liqiang Li, Xianhui Huang, Tao Li, Wenping Hu, and Harald Fuchs,”Highly Efficient Charge Transport in a Quasi-Monolayer Semiconductor on Pure Polymer Dielectric”,Advanced Functional Materials, 2020, 30, 1907153.
-
D. Ji.
Deyang Ji, Tao Li, Jie Liu, Saeed Amirjalayer, Mianzeng Zhong, Zhao-Yang Zhang, Xianhui Huang, Zhongming Wei , Huanli Dong , Wenping Hu and Harald Fuchs,” Band-like Transport in Small-Molecule Thin Films toward High Mobility and Ultrahigh Detectivity Phototransistor Arrays”, Nature Communications,2019,10,12.
.Nat. Commun.
,10
-
Deyang Ji, Tao Li, Wenping Hu, and Harald Fuchs,”Recent Progress in Aromatic Polyimide Dielectrics for Organic Electronic Devices and Circuits”, Advanced Materials, 2019, 31, 1806070
-
Deyang Ji, Tao Li, Ye Zou, Ming Chu, Ke Zhou, Jinyu Liu, Guofeng Tian, Zhaoyang Zhang, Xu Zhang, Liqiang Li, Dezhen Wu, Huanli Dong, Qian Miao, Harald Fuchs and Wenping Hu,” Copolymer Dielectrics with Balanced Chain-Packing Density and Surface Polarity for High-Performance Flexible Organic Electronics”, Nature Communications, 2018, 9, 2339.