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Copper ions-me diate d dynamic re dox-responsive microgels synergize with silicone for efficient and sustainable antibacterial properties 被引量:1
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作者 Huali Li Liuqin Zhang +5 位作者 Xiaohu Zhang Shuwen Luo Baoshan Yang Min Wu Wei-Hua Li Fa-Qian Liu 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2023年第12期253-267,共15页
The antifouling of marine facilities placed below the waterline is a key constraint to the development of the marine economy.Currently,commercial Cu_(2)O-based antifouling coatings still have defects such as agglomera... The antifouling of marine facilities placed below the waterline is a key constraint to the development of the marine economy.Currently,commercial Cu_(2)O-based antifouling coatings still have defects such as agglomeration,oxidation,short duration and high dosage.For this reason,we developed for the first time a triple antifouling system consisting of Cu_(2)O@poly(NIPAM-co-DAm)(Cu_(2)O@PND)dynamic redox micro-gels triggered by copper ions and polydimethylsiloxane(PDMS).The catechol groups of PND nanogels can chelate Cu^(2+)and reduce it in situ to obtain Cu_(2)O@PND microgels,which guarantees the stable release of Cu^(+).Furthermore,Cu_(2)O remains stable and free from oxidation because of the electron transfer between PND and Cu^(2+).Finally,superior antifouling performance was achieved by combining the stable Cu^(+)re-leased from Cu_(2)O,in situ conversion of PND to hydrogel,and its oxidation to produce active substances and H_(2)O_(2),and PDMS coating with low surface energy. 展开更多
关键词 Hydrogel Copper ions Dynamic redox SILICONE efficient-sustainable release ANTIBACTERIAL
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