Kang Wang
Nanjing University
45 Papers
530 Citations
Kang Wang is an academic researcher from Nanjing University. The author has contributed to research in topics: Electrode & Chemistry. The author has an hindex of 25, co-authored 45 publications.
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Papers
e g occupancy as an effective descriptor for the catalytic activity of perovskite oxide-based peroxidase mimics
Xiaoyu Wang,Xuejiao J. Gao,Li Qin,Changda Wang,Li Song,Yong-Ning Zhou,Guoyin Zhu,Wen Cao,Shichao Lin,Liqi Zhou,Kang Wang,Huigang Zhang,Zhong Jin,Peng Wang,Xingfa Gao,Hui Wei +15 more
TL;DR: This study shows that the eg occupancy is a predictive descriptor to guide the design of peroxidase-like nanozymes; in addition, it provides detailed insight into the catalytic mechanism of peroxide-like Nanozymes.
Bioinspired copper catalyst effective for both reduction and evolution of oxygen
TL;DR: An active copper nanocomposite is reported, inspired by natural coordination environments of catalytic sites in an enzyme, which catalyzes oxygen reduction/evolution at potentials closely approaching standard potential.
One-step immobilization of glucose oxidase in a silica matrix on a Pt electrode by an electrochemically induced sol-gel process.
TL;DR: It is demonstrated here that the electrochemical generation of hydroxyl ions and hydrogen bubbles can be used to induce the synthesis of enzyme- or protein-encapsulated 3D porous silica structure on the surface of noble metal electrodes to fabricate biosensors and bioelectronic devices in situ.
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Gravitational Sedimentation Induced Blood Delamination for Continuous Plasma Separation on a Microfluidics Chip
TL;DR: The present work provides an effective tool for metabolite monitoring in pharmacokinetics research and drug development and can avoid the damage to cells which usually occurs in separation with high shear rate in a microchannel and possible contaminants to plasma.
108
Elimination of electrochemical interferences in glucose biosensors
TL;DR: In this article, a review summarizes the methods developed for eliminating electrochemical interferences in amperometric glucose biosensors and highlights the efforts to improve the performance of biosensor.
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