Ming Li
Sichuan University
18 Papers
86 Citations
Ming Li is an academic researcher from Sichuan University. The author has contributed to research in topics: Iridium & HOMO/LUMO. The author has an hindex of 8, co-authored 18 publications.
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Papers
Development of a fast and sensitive glucose biosensor using iridium complex-doped electrospun optical fibrous membrane.
TL;DR: High sensitivity and fast response were attributed to the high surface-area-to-volume of the porous fibrous membrane, the efficient GOD biocatalyst reaction on the fibers surface, as well as the fast electron or energy transfer between dissolved oxygen and the optical fibrous membranes.
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Fine tuning of emission color of iridium(III) complexes from yellow to red via substituent effect on 2-phenylbenzothiazole ligands: synthesis, photophysical, electrochemical and DFT study
TL;DR: The complex 7c with two tert-butyl substituents possesses the highest phosphorescent efficiency both in dilute solution and thin solid films, therefore may be a prospective candidate for both doping and host emitting electrophosphorescent material.
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A facile color-tuning strategy for constructing a library of Ir(III) complexes with fine-tuned phosphorescence from bluish green to red using a synergetic substituent effect of –OCH3 and –CN at only the C-ring of C^N ligand
TL;DR: In this article, it was shown that if the C-related arene moiety of the C^N ligand (C-ring) contributes substantially to both the HOMO and LUMO of an Ir(III) complex, the concurrent introduction of an electron-donating -OCH3 and electron-withdrawing -CN groups on the Cring at the meta-and para-sites relative to the Ir atom may lead to a favorable synergetic substituent effect on the color-tuning direction.
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Facile Access to Twisted Intramolecular Charge-Transfer Fluorogens Bearing Highly Pretwisted Donor-Acceptor Systems Together with Readily Fine-Tuned Charge-Transfer Characters.
Yanju Luo,Yan Wang,Shiqi Chen,Ning Wang,Yige Qi,Xiaogen Zhang,Minghui Yang,Yan Huang,Ming Li,Junsheng Yu,Daibing Luo,Zhiyun Lu +11 more
TL;DR: By using 4-aryloxy-1,8-naphthalimide derivatives as the molecular framework, it is demonstrated for the first time that a CO bond could serve as the central bond to construct new TICT D-A systems, revealing a facile but effective molecular constructive strategy for versatile, high-performance optoelectronic TICT compounds.
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Highly efficient orange and red organic light-emitting diodes with iridium(III) complexes bearing benzothiazole cyclometallate ligands as emitters
TL;DR: Two iridium complexes bearing benzothiazole cyclometallate ligands, bis[3′,5′-di-tert-butylbiphenyl-4-yl)benzothiazolato-N,C2′]iridium(III)(acetylacetonate) [(tbpbt)2Ir(acac)] and bis[2-(9,9-dimethyl-9H-fluoren-2-yl), n 2 ], have been evaluated as orange and red electrophosphorescent materials as mentioned in this paper.
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