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取向ZnO/Cu2O纳米异质结阵列的制备及光电特性研究
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作者 赵佳佳 周施彤 +3 位作者 吕东徽 郭佳盈 刘丹妮 李梦轲 《纳米技术》 2019年第1期1-9,共9页
采用电化学沉积法制备了取向ZnO/Cu2O异质结阵列。通过FESEM、XRD、XPS、PL、IV特性测试等手段对形成的纳米异质结的形貌、晶体结构、化学成份、光致发光、IV特性和光电转换特性等进行了分析讨论。结果表明,沉积时间及沉积电压是影响制... 采用电化学沉积法制备了取向ZnO/Cu2O异质结阵列。通过FESEM、XRD、XPS、PL、IV特性测试等手段对形成的纳米异质结的形貌、晶体结构、化学成份、光致发光、IV特性和光电转换特性等进行了分析讨论。结果表明,沉积时间及沉积电压是影响制备高质量ZnO/Cu2O核壳异质结阵列的关键因素。异质结的Cu2O包覆层厚度约为15~25 nm,主要由单晶纳米晶粒构成,晶粒细致。测试发现,相对于纯ZnO纳米线阵列,ZnO/Cu2O异质结阵列的紫光发光峰强度有所减弱,绿光峰强度有所增强,且绿光峰的中心峰位还出现了20~30 nm的红移现象。同时,ZnO/Cu2O异质结阵列还表现出了较好的光电响应特性。 展开更多
关键词 ZNO Cu2O 纳米半导体 异质结
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A mitochondria-targeted H_(2)S-activatable fluorogenic probe for tracking hepatic ischemia-reperfusion injury
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作者 Bin Fang Jiaqi Yang +10 位作者 Limin Wang Haoqin Li jiaying guo Jiaxin Zhang Qingyuan guo Bo Peng Kedi Liu Miaomiao Xi Hua Bai Li Fu Lin Li 《Chinese Chemical Letters》 SCIE CAS CSCD 2024年第6期370-375,共6页
Hepatic ischemia-reperfusion injury(HIRI)is the cause of postoperative hepatic dysfunction and failure,and even death.As an important biological effector molecule,hydrogen sulfide(H_(2)S)of mitochondria as a gasotrans... Hepatic ischemia-reperfusion injury(HIRI)is the cause of postoperative hepatic dysfunction and failure,and even death.As an important biological effector molecule,hydrogen sulfide(H_(2)S)of mitochondria as a gasotransmitter that is usually used to protect against acute HIRI injury.However,the exact relationship between HIRI and mitochondrial H_(2)S remains tangled due to the lack of an effective analytical method.Herein,we have fabricated a mitochondria-targeted H_(2)S-activatable fluorogenic probe(Mito-GW)to explore the stability of mitochondrial H_(2)S and track the changes of mitochondrial H_(2)S during the HIRI.By virtue of pyridinium electropositivity and its amphiphilicity,Mito-GW could accumulate in mitochondria.It goes through an analyte-prompted immolation when reacts with H_(2)S,resulting in the releasing of the fluorophore(GW).Therefore,the extent of Mito-GW conversion to GW can be used to evaluate the changes of mitochondrial H_(2)S level in living cells and tissues.As proof-of-principle,we have used MitoGW to demonstrate the mitochondria H_(2)S-levels increase and then decrease during HIRI in vitro and in vivo.Our research highlights the tremendous potential of Mito-GW as a mitochondrial H_(2)S fluorogenic probe in elucidating the pathogenesis of HIRI,providing a powerful tool for promoting future research on hepatology. 展开更多
关键词 Mitochondria-targeted Bioimaging H2S-activatable Fluorogenic probe Hepatic ischemia-reperfusion injury(HIRI)
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