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Institution

South China University of Technology

EducationGuangzhou, China
About: South China University of Technology is a education organization based out in Guangzhou, China. It is known for research contribution in the topics: Catalysis & Adsorption. The organization has 62343 authors who have published 69468 publications receiving 1251592 citations. The organization is also known as: SCUT & Huánán Lǐgōng Dàxué.


Papers
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Journal ArticleDOI
TL;DR: In this paper, two Pt(II) cyclometallated complexes with phenoxy groups (1 and 2) have been developed for high color-rendering white organic light-emitting devices (WOLEDs).
Abstract: Two phosphorescent platinum(II) cyclometallated complexes with phenoxy groups (1 and 2) have been developed. The modified organic ligands derived by combining the phenoxy moiety and 2-phenylpyridine conferred them with a more flexible structure, leading to superior intermolecular interaction properties of the resulting Pt(II) metallophosphors. Because of the excimer formation induced by Pt(II) complexes 1 and 2, the emission color can be tuned over a wide range from cyan to orange by simply increasing the concentration of the Pt(II) metallophosphors. Inspired by their broad emission band, color tunability and outstanding electroluminescence (EL) performance, these two Pt(II) phosphors complemented with blue fluorescent emitter 4,4′-bis(9-ethyl-3-carbazovinylene)-1,1′-biphenyl (BCzVBi) were employed in manufacturing high color-rendering white organic light-emitting devices (WOLEDs). In such simple two-emitter systems, 1-based WOLEDs exhibited reasonable EL performance with an external quantum efficiency (ηext) of 11.7%, luminance efficiency (ηL) of 29.1 cd A−1, power efficiency (ηp) of 16.9 lm W−1 and color rendering index (CRI) of 77, whereas 2-based WOLEDs demonstrated an ηext of 10%, ηL of 21.7 cd A−1, ηp of 10.7 lm W−1 and CRI of 88.

46 citations

Journal ArticleDOI
Hu Wen1, Gang Chen1, Yu Liu1, Yingyao Liu1, Bo Li1, Zhiqiang Fang1 
TL;DR: In this paper, a general and scalable strategy to achieve transparent and hazy cellulose films with excellent mechanical properties, especially folding endurance, remains an obstacle, and a trans-transformer-based approach is proposed.
Abstract: A general and scalable strategy to achieve transparent and hazy cellulose films with excellent mechanical properties, especially folding endurance, remains an obstacle. Herein, we incorporate trans...

46 citations

Journal ArticleDOI
Yao Ren1, Hui Wu1, Xiaofeng Li1, Furao Lai1, Xinglong Xiao1 
TL;DR: Antioxidant capacity of the purified peptides was closely related to the molecular mass, hydrophobic amino acid residues, acidic amino acid and some antioxidant amino acids.

46 citations

Journal ArticleDOI
TL;DR: In this paper, the core-shell Mn3O4@NC was synthesized by the controlled thermal oxidation of the MnO@NC in air, and it was shown that the NC shell plays important roles in the high performance of the NC.

46 citations

Journal ArticleDOI
TL;DR: Different fabrication methods of solid-state nanopore fabrication technology, which can be summarized into two broad categories: “top-down” etching technology and “bottom-up” shrinkage technology, are exhibited.
Abstract: Solid-state nanopore has captured the attention of many researchers due to its characteristic of nanoscale. Now, different fabrication methods have been reported, which can be summarized into two broad categories: “top-down” etching technology and “bottom-up” shrinkage technology. Ion track etching method, mask etching method chemical solution etching method, and high-energy particle etching and shrinkage method are exhibited in this report. Besides, we also discussed applications of solid-state nanopore fabrication technology in DNA sequencing, protein detection, and energy conversion.

46 citations


Authors

Showing all 62809 results

NameH-indexPapersCitations
H. S. Chen1792401178529
David A. Weitz1781038114182
Gang Chen1673372149819
Jun Wang1661093141621
Yang Yang1642704144071
Hua Zhang1631503116769
Ben Zhong Tang1492007116294
Jun Liu13861677099
Han Zhang13097058863
Lei Zhang130231286950
Yang Liu1292506122380
Jian Zhou128300791402
Alex K.-Y. Jen12892161811
Zhen Li127171271351
Jianlin Shi12785954862
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
2023215
20221,168
20217,647
20207,132
20196,686
20185,736