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首页> 外文期刊>ACS applied materials & interfaces >Green Light-Responsive CO-Releasing Polymeric Materials Derived from Ring-Opening Metathesis Polymerization
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Green Light-Responsive CO-Releasing Polymeric Materials Derived from Ring-Opening Metathesis Polymerization

机译:衍生自开环复分解聚合的绿光响应共释放聚合物材料

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摘要

Carbon monoxide (CO) is an important biological gasotransmitter in living cells. Precise spatial and temporal control over release of CO is a major requirement for clinical application. To date, the most reported carbon monoxide releasing materials use expensive fabrication methods and require harmful and poorly designed tissue-penetrating UV irradiation to initiate the CO release precisely at infected sites. Herein, we report the first example of utilizing a green light-responsive CO-releasing polymer P synthesized via ring-opening metathesis polymerization. Both monomer M and polymer P were very stable under dark conditions and CO release was effectively triggered using minimal power and low energy wavelength irradiation (550 nm, <= 28 mW). Time-dependent density functional theory (TD-DFT) calculations were carried out to simulate the electronic transition and insight into the nature of the excitations for both L and M. TD-DFT calculations indicate that the absorption peak of M is mainly due to the excitation of the seventh singlet excited state, S7. Furthermore, stretchable materials using polytetrafluoroethylene (PTFE) strips based on P were fabricated to afford P-PTFE, which can be used as a simple, inexpensive, and portable CO storage bandage. Insignificant cytotoxicity as well as cell permeability was found for M and P against human embryonic kidney cells.
机译:一氧化碳(CO)是活细胞中重要的生物气体转手。对CO释放的精确空间和时间控制是临床应用的主要要求。迄今为止,最多报道的一氧化碳释放材料使用昂贵的制造方法,需要有害且设计的组织渗透UV辐射,以精确地在感染的位点开始释放CO。在此,我们报告了利用通过开环复分解聚合合成的绿光响应共释放聚合物P的第一实施例。单体M和聚合物P在暗条件下非常稳定,并且使用最小功率和低能量波长辐射(550nm,<= 28mW)有效地触发CO释放。进行时间依赖性密度函数理论(TD-DFT)计算,以模拟电子转换和洞察L和M. TD-DFT计算的激发性质,表明M的吸收峰主要是由于第七个单态激发态的激发,S7。此外,制造使用基于P的聚四氟乙烯(PTFE)条的可伸展材料,得到P-PTFE,可用作简单,便宜和便携式的CO储存绷带。对人胚胎肾细胞的M和P发现了微不足道的细胞毒性以及细胞渗透性。

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