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MOFs衍生金属硫化物及其复合材料在光催化领域的应用
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作者 陈仕健 潘雨萱 +2 位作者 程丽华 钱俊峰 王慧 《化学进展》 SCIE CAS CSCD 北大核心 2024年第4期511-524,共14页
随着能源需求不断增加,太阳能成为具有发展潜力的清洁能源,长久有效使用太阳能成为迫切需要解决的问题。金属-有机框架(MOFs)衍生金属硫化物由于具有母体MOFs优异的原始结构特征、更窄的带隙、促进电荷载流子分离的多孔结构等优点,在光... 随着能源需求不断增加,太阳能成为具有发展潜力的清洁能源,长久有效使用太阳能成为迫切需要解决的问题。金属-有机框架(MOFs)衍生金属硫化物由于具有母体MOFs优异的原始结构特征、更窄的带隙、促进电荷载流子分离的多孔结构等优点,在光催化领域受到越来越多的关注。尽管该领域目前处于起步阶段,但目前所报道的研究结果表明MOFs衍生硫化物光催化剂具有很高的实际应用潜力。本文主要综述了近5年国内外MOFs衍生金属硫化物及其复合材料的制备方法及其在光催化领域应用的最新研究进展,并对此类光催化剂未来的发展与挑战进行了展望,为新型高效复合光催化材料的合成及应用提供了新思路。 展开更多
关键词 金属-有机框架 金属硫化物 光催化 合成
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Fabrication of Tβ4-Exosome-releasing artificial stem cells for myocardial infarction therapy by improving coronary collateralization 被引量:2
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作者 Peier Chen Xiaodong Ning +9 位作者 Weirun Li yuxuan pan Ling Wang Hekai Li Xianglin Fan Jiexin Zhang Tiantian Luo Yaobin Wu Caiwen Ou Minsheng Chen 《Bioactive Materials》 SCIE 2022年第8期416-429,共14页
Currently,stem cell transplantations in cardiac repair are limited owing to disadvantages,such as immunological rejection and poor cell viability.Although direct injection of exosomes can have a curative effect simila... Currently,stem cell transplantations in cardiac repair are limited owing to disadvantages,such as immunological rejection and poor cell viability.Although direct injection of exosomes can have a curative effect similar to that of stem cell transplantation,high clearance hinders its application in clinical practice.Previous reports suggested that induction of coronary collateralization can be a desired method of adjunctive therapy for someone who had missed the optimal operation time to attenuate myocardial ischemia.In this study,to mimic the paracrine and biological activity of stem cells,we developed artificial stem cells that can continuously release Tβ4-exosomes(Tβ4-ASCs)by encapsulating specific exosomes within microspheres using microfluidics technology.The results show that Tβ4-ASCs can greatly promote coronary collateralization in the periphery of the myocardial infarcted area,and its therapeutic effect is superior to that of directly injecting the exosomes.In addition,to better understand how it works,we demonstrated that the Tβ4-ASC-derived exosomes can enhance the angiogenic capacity of coronary endothelial cells(CAECs)via the miR-17-5p/PHD3/Hif-1αpathway.In brief,as artificial stem cells,Tβ4-ASCs can constantly release functional exosomes and stimulate the formation of collateral circulation after myocardial infarction,providing a feasible and alternative method for clinical revascularization. 展开更多
关键词 Artificial stem cells EXOSOMES Myocardial infarction Coronary collateralization
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