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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Graphene oxide nanohybrid that photoreleases nitric oxide
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Graphene oxide nanohybrid that photoreleases nitric oxide

机译:光释放一氧化氮的氧化石墨烯纳米杂化物

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摘要

We report herein a photoresponsive nanoplatform that delivers nitric oxide (NO) on demand, achieved by the covalent functionalization of graphene oxide (GO) with an amino-terminated nitric oxide (NO) photodonor (NOP1). The resulting GO-NOP1 hybrid nanomaterial is dispersible in water, is very stable in the dark and has been thoroughly characterized by SEM, TEM, AFM, XRD, FTIR and UV-Vis absorption spectroscopy. Photolysis experiments demonstrate that the photodecomposition of the NO photoreleaser integrated into the GO scaffold occurs with an efficiency similar to that observed for a free model compound, ruling out any significant quenching effect (i.e. photoinduced energy/electron transfer) and accounting for the excellent preservation of its photochemical properties upon grafting. A combination of direct amperometric detection and indirect measurements based on a fluorometric assay prove that the remote-controlled release of NO from the GO-NOP1 nanoplatform is exclusively regulated by visible light stimuli.
机译:我们在此报告了一种光响应性纳米平台,该平台可按需提供一氧化氮(NO),这是通过将氧化石墨烯(GO)与氨基端接的一氧化氮(NO)光供体(NOP1)共价官能化而实现的。所得的GO-NOP1杂化纳米材料可分散在水中,在黑暗中非常稳定,并已通过SEM,TEM,AFM,XRD,FTIR和UV-Vis吸收光谱进行了全面表征。光解实验表明,整合到GO支架中的NO光释放剂的光分解发生的效率与对自由模型化合物观察到的效率相似,排除了任何显着的猝灭作用(即光诱导的能量/电子转移),并说明了其出色的保存性。接枝后的光化学性质直接安培检测法和基于荧光测定法的间接测量法的结合证明,从GO-NOP1纳米平台上遥控释放NO只能由可见光刺激来调节。

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