Xun-Cheng Su
Nankai University
125 Papers
1.1K Citations
Xun-Cheng Su is an academic researcher from Nankai University. The author has contributed to research in topics: Chemistry & Nuclear magnetic resonance spectroscopy. The author has an hindex of 34, co-authored 108 publications. Previous affiliations of Xun-Cheng Su include Australian National University & University of Cambridge.
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Papers
Small Molecules Based on Benzo[1,2-b:4,5-b′]dithiophene Unit for High-Performance Solution-Processed Organic Solar Cells
Jiaoyan Zhou,Xiangjian Wan,Yongsheng Liu,Yi Zuo,Zhi Li,Guangrui He,Guankui Long,Wang Ni,Chenxi Li,Xun-Cheng Su,Yongsheng Chen +10 more
TL;DR: The results demonstrate that structure fine turning could cause significant performance difference and with that the performance of solution-processed small-molecule solar cells can indeed be comparable with or even surpass their polymer counterparts.
588
Nanoporous Palladium Hydride for Electrocatalytic N2 Reduction under Ambient Conditions.
Wence Xu,Guilan Fan,Jia-Liang Chen,Jinhan Li,Le Zhang,Shengli Zhu,Xun-Cheng Su,Fangyi Cheng,Jun Chen +8 more
TL;DR: N nanoporous palladium hydride is reported as electrocatalyst for electrochemical N 2 reduction under ambient conditions, achieving a high ammonia yield rate and the reduction of energy barrier for the rate-limiting *N 2 H formation step.
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A fluorescence quenching assay to discriminate between specific and nonspecific inhibitors of dengue virus protease.
Christophe Bodenreider,David Beer,Thomas H. Keller,Sebastian Sonntag,Daying Wen,Lijian Yap,Yin Hoe Yau,Susana Geifman Shochat,Danzhi Huang,Ting Zhou,Amedeo Caflisch,Xun-Cheng Su,Kiyoshi Ozawa,Gottfried Otting,Subhash G. Vasudevan,Julien Lescar,Siew Pheng Lim +16 more
TL;DR: A high-speed, low-cost, quantitative fluorescence quenching assay that observed that specific analogues quenched dengue protease fluorescence and showed variation in IC(50) values, which makes it highly useful for hit finding and validation in drug discovery.
102
3D structure determination of a protein in living cells using paramagnetic NMR spectroscopy
TL;DR: This work has demonstrated that the integration of site-specific tagging proteins and GPS-Rosetta calculations provides a fast and effective way of determining the structures of proteins in living cells, and in principle the interactions and dynamics of protein-ligand complexes.
99
Lanthanide-Binding Peptides for NMR Measurements of Residual Dipolar Couplings and Paramagnetic Effects from Multiple Angles
TL;DR: It is shown that cysteine residues placed in different positions of the LBT can be used to expose the protein to different orientations of the magnetic susceptibility anisotropy (delta chi) tensor and to generate different molecular alignments in a magnetic field.