Crystallization‐Enhanced Stability by Effectively Suppressing Photooxidation Defect for Optoelectronic Devices (Adv. Mater. Interfaces 15/2022).

Autor: Zhang, He, Lin, Dong‐Qing, Liu, Wei, Wang, Yang‐Cheng, Li, Zhu‐Xin, Jin, Dong, Wang, Jin, Zhang, Xin‐Wen, Huang, Lei, Wang, Sha‐Sha, Xu, Chun‐Xiang, Kan, Yu‐He, Xie, Ling‐Hai
Předmět:
Zdroj: Advanced Materials Interfaces; 5/23/2022, Vol. 9 Issue 15, p1-1, 1p
Abstrakt: Crystalline electroluminescent devices, crystallization strategy, molecular wall, organic wide-bandgap semiconductors, ultrastable spectra Keywords: crystalline electroluminescent devices; crystallization strategy; molecular wall, organic wide-bandgap semiconductors; ultrastable spectra EN crystalline electroluminescent devices crystallization strategy molecular wall, organic wide-bandgap semiconductors ultrastable spectra 1 1 1 05/25/22 20220523 NES 220523 B Crystallization-Enhanced Stability to Suppress Photooxidation Defect b In article number 2200194, He Zhang, Sha-Sha Wang, Ling-Hai Xie, and co-workers propose crystallization strategy of "molecular packing wall" to suppress the oxygen diffusion and eliminate the photooxidation defect of fluorene-based wide-bandgap semiconductors. Crystallization-Enhanced Stability by Effectively Suppressing Photooxidation Defect for Optoelectronic Devices (Adv. [Extracted from the article]
Databáze: Complementary Index