Analyzing the synthesis route of 2085-33-8

Here is just a brief introduction to this compound(2085-33-8)Application In Synthesis of Aluminum triquinolin-8-olate, more information about the compound(Aluminum triquinolin-8-olate) is in the article, you can click the link below.

Application In Synthesis of Aluminum triquinolin-8-olate. The reaction of aromatic heterocyclic molecules with protons is called protonation. Aromatic heterocycles are more basic than benzene due to the participation of heteroatoms. Compound: Aluminum triquinolin-8-olate, is researched, Molecular C27H18AlN3O3, CAS is 2085-33-8, about Enhanced carrier injection hotspot effect by direct and simple ITO surface engineering. Author is Jiang, Hui-Hui; Xiao, Jing; Huang, Hai-Tian; Wu, Di; Song, Ru-Xin; Xu, Rong; Gao, Xu; Xu, Jian-Long; Duhm, Steffen; Chi, Li-Feng; Wang, Sui-Dong.

Direct and simple surface engineering of indium tin oxide (ITO) by appropriate Ar plasma treatment was used to induce the carrier injection hotspot effect, similar to reported indirect approaches based on the introduction of addnl. nanostructures on ITO. Surface characterization analyses and elec. field simulations indicate the formation of small-sized and dense injection hotspots on the treated ITO. Efficient electron injection was achieved in both inverted organic light-emitting diodes and corresponding electron-only devices employing the treated ITO as bottom cathode. The present results show that, in addition to the electronic structure, the microscopic morphol. at the contacts could also play a critical role in achieving efficient carrier injection in organic electronic/optoelectronic devices. (c) 2021 American Institute of Physics.

Here is just a brief introduction to this compound(2085-33-8)Application In Synthesis of Aluminum triquinolin-8-olate, more information about the compound(Aluminum triquinolin-8-olate) is in the article, you can click the link below.

Reference:
Copper catalysis in organic synthesis – NCBI,
Special Issue “Fundamentals and Applications of Copper-Based Catalysts”