1H-Imidazole, ethenyl-

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CAS: 29383-23-1
MF: C5H6N2
MW: 94.11454
Synonyms: 1H-Imidazole, ethenyl-

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Maolin Zhai

Peking University
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Tongwen Xu

University of Science and Technology of China
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Hong-Bing Ji

Sun Yat-Sen University
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XianTai Zhou

Sun Yat-sen University
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Guo-Hua Gao

East China Normal University
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Feng Yan

Soochow University
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Co-reporter: Jiangna Guo, Qiming Xu, Zhiqiang Zheng, Shengbo Zhou, Hailei Mao, Bin Wang, and Feng Yan
pp: 1094
Publication Date(Web):September 15, 2015
DOI: 10.1021/acsmacrolett.5b00609
The development of materials with intrinsically antimicrobial activities has attracted great interest. Herein, we report the synthesis of free-standing and robust poly(ionic liquid) (PIL) membranes with high antibacterial activities by in situ photo-cross-linking of an ionic liquid monomer and followed by anion-exchange with an amino acid (l-proline (Pro) or l-tryptophan (Trp)). The resultant PIL-based membranes with excellent robustness exhibit high antimicrobial properties against both Gram-negative Escherichia coli (E. coli) and Gram-positive Staphylococcus aureus (S. aureus) and present no significant hemolysis and cytotoxicity toward human red blood and skin fibroblast cells, as well as low adsorption of bovine serum albumin. The synthesized PIL-Trp membranes exhibit the highest antibacterial efficiency due to the synergistic attributes of both imidazolium cation and Trp– anion. Furthermore, all the PIL-based membranes exhibit long-term antibacterial stability, which demonstrates clinical feasibility in topical applications.

Bin-Yang Du

Zhejiang University
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Oren A. Scherman

University of Cambridge
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Feng Zhou

Chinese Academy of Sciences
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Ping Guan

Northwestern Polytechnical University
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