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The School of CCEB integrated the Division on Chemistry and Biological Chemistry from the School of Physical & Mathematical Sciences (SPMS) with the School of Chemical and Biomedical Engineering (SCBE).

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TIFF Image - 18.1 KB - MD5: 30bce45386af7999155da7f4eb37e5ef
Fig.1
TIFF Image - 10.0 KB - MD5: ec8509edaf209484cd09e4c1c3b86121
Fig.3
Mar 6, 2025 - CHAN Bee Eng, Mary
Wei, Guangmin; Nguyen, Diep; Reghu, Sheethal; Li, Jianghua; Chua, Chun Song; Ishida, Yoshiki; Chan-Park, Mary Bee Eng, 2024, "Sustainable Antimicrobial Polymer Technology for Application in Consumer Products", https://doi.org/10.21979/N9/IH221R, DR-NTU (Data), V2
The objective of this project is to develop active antimicrobial compounds that exhibit fast bactericidal effect against Escherichia coli (E. coli ATCC® 8739™) in the presence of commercial liquid laundry detergent. The preliminary goal is to discover novel antimicrobial agents w...
Adobe PDF - 459.3 KB - MD5: b89df996d4a79f52356ce4bb3ccaadf2
Final results summary
Jan 29, 2025 - WEN Hanqi
Wen, Hanqi; Kong, Lingxuan; Zhu, Xinlu; Miao, Yansong; Sheng, Xing; Chen, Xiaodong; Liu, Yuxin; Chen, Peng, 2025, "Replication Data for: Mutually reinforcing and transpiration-dependent propagation of H2O2 and variation potential in plants revealed by fiber organic electrochemical transistors", https://doi.org/10.21979/N9/XNG2NI, DR-NTU (Data), V1, UNF:6:VAsfRnGnST5g9D2jko+eCA== [fileUNF]
Data for publication titled "Mutually reinforcing and transpiration-dependent propagation of H2O2 and variation potential in plants revealed by fiber organic electrochemical transistors"
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