Xueji Zhang
Shenzhen University
802 Papers
2.6K Citations
Xueji Zhang is an academic researcher from Shenzhen University. The author has contributed to research in topics: Chemistry & Medicine. The author has an hindex of 69, co-authored 578 publications. Previous affiliations of Xueji Zhang include Nanjing University of Science and Technology & New Mexico State University.
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Papers
A biomimetic enzyme modified electrode for H2O2 highly sensitive detection.
Jinming Kong,Xuehua Yu,Weiwen Hu,Qiong Hu,Sailan Shui,Lianzhi Li,Xiaojun Han,Huifang Xie,Xueji Zhang,Xueji Zhang,Tianhe Wang +10 more
TL;DR: The study suggests that PEI-AuNP-hemin may have promising application prospects in biocatalysis and bioelectronics.
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Adhesive tapes: From daily necessities to flexible smart electronics
Xuecheng He,Wenyu Wang,Shijie Yang,Feilong Zhang,Zhen Gu,Bing Dai,Tailin Xu,Yan Yan Shery Huang,Xueji Zhang +8 more
TL;DR: In this paper , a review of adhesive tape-enabled smart electronics is presented, focusing on how the distinct adhesive behavior of adhesive tapes contributes to the redesign and engineering of flexible electronics via physical and/or chemical modifications.
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Metal-Free Photoinduced Atom Transfer Radical Polymerization for Highly Sensitive Detection of Lung Cancer DNA.
TL;DR: A metal-free photoinduced atom transfer radical polymerization (photoATRP) via reductive quenching pathway as a novel strategy is applied to achieve lung cancer DNA detection.
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Ultrafine nano-TiO2 loaded on dendritic porous silica nanoparticles for robust transparent antifogging self-cleaning nanocoatings
TL;DR: In this paper, a robust transparent antifogging self-cleaning nanocoatings were fabricated by employing dendritic porous silica nanoparticles (DPSNs) evenly loaded with 2-3nm of small TiO2 nanoparticles as a building block.
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Artificial Light-Harvesting System Based on Zinc Porphyrin and Benzimidazole: Construction, Resonance Energy Transfer, and Amplification Strategy for Electrochemiluminescence.
TL;DR: Zhang et al. as mentioned in this paper proposed a novel ECL amplification system based on ECL resonance energy transfer (ECL-RET), which integrates two luminophores, benzimidazole (BIM) and zinc(II) tetrakis(4-carboxyphenyl)porphine (ZnTCPP), into one framework.
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