Recent advances in graphitic carbon nitride-based heterojunction for biomedical applications

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作者
Jia, Ruilong [1 ]
He, Chengen [2 ]
Wang, Shanshan [1 ]
Gao, Yuting [1 ]
Song, Lijuan [3 ]
Wang, Peng [4 ]
Liao, Guangfu [5 ]
Shi, Xinli [1 ]
机构
[1] Laboratory of Integrated Medicine Tumor Immunology, Shanxi University of Chinese Medicine, Jinzhong,030619, China
[2] State Key Laboratory of New Textile Materials and Advanced Processing Technology, School of Materials Science and Engineering, Wuhan Textile University, Wuhan,430200, China
[3] The Key Research Laboratory of Benefting Qi for Acting Blood Circulation Method to Treat Multiple, Sclerosis of State Administration of Traditional Chinese Medicine/Research Center of Neurobiology, Shanxi University of Chinese Medicine, Jinzhong,030619, Ch
[4] Shandong Chambroad Petrochemicals Co., Ltd, Shandong, Binzhou,256500, China
[5] College of Materials Engineering, Fujian Agriculture and Forestry University, Fuzhou,350002, China
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The unique superiorities of graphitic carbon nitride (g-C3N4)-based heterojunction; i.e; their low cost and toxicity; ease of fabrication and functionalization; outstanding physical and chemical stability; good biocompatibility; and outstanding catalytic efficiency; render them extremely promising for biomedical applications. Given the importance and benefits of g-C3N4-based heterojunction in biomedical applications; now is a good moment to give a summary of g-C3N4-based heterojunction for biomedical applications. In this review; we thoroughly described the material design for g-C3N4-based heterojunction; along with their recent developments in various biomedical applications; cancer treatment; antibacterial therapy; wound healing; and biosensors. Furthermore; a thorough discussion was held on the biosafety and toxicity assessments of the g-C3N4-based heterojunction. Additionally; the most recent advancements; difficulties; and future prospects of g-C3N4-based heterojunction in biomedical fields were emphasized and thoroughly examined. Undoubtedly; in the near future; scientific researchers will put their relentless efforts to exploit the new g-C3N4-based heterojunction for real-world biomedical applications. © 2024 Elsevier B.V;
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