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无机晶体表面亲疏水性质对GAV-9短肽生长的控制
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《中国基础科学》 2006年第4期61-62,共2页
中科院上海应用物理所何建华、张益研究组与中科院上海生命科学研究院生物化学与细胞生物学所胡红雨等合作,研究了无机晶体表面亲疏水性质对GAV-9短肽外延生长的控制。他们发现,在亲水的云母表面,GAV-9肽形成了约3nm高的纤维并沿着... 中科院上海应用物理所何建华、张益研究组与中科院上海生命科学研究院生物化学与细胞生物学所胡红雨等合作,研究了无机晶体表面亲疏水性质对GAV-9短肽外延生长的控制。他们发现,在亲水的云母表面,GAV-9肽形成了约3nm高的纤维并沿着云母表面的晶格双向快速生长,其高度与GAV-9肽的理论长度一致。这表明GAV-9肽利用其末端的带正电氨基端与云母表面带负电的氧原子之间的静电相互作用,结合其肽链间的疏水相互作用一起形成了“站立”的纳米纤维。 展开更多
关键词 无机晶体表面 外延生长 疏水性 短肽 控制 静电相互作用 疏水相互作用 纳米纤维 细胞生物学
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How different are the surfaces of semiconductor Ag_(2)Se quantum dots with various sizes? 被引量:1
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作者 Jing-Ya Zhao Zhi-Gang Wang +6 位作者 Hui Hu Zhi-Ling Zhang Bo Tang Meng-Yao Luo Ling-Ling Yang Baoshan Wang Dai-Wen Pang 《Science Bulletin》 SCIE EI CSCD 2022年第6期619-625,M0004,共8页
The surface of nanocrystals plays a dominant role in many of their physical and chemical properties.However,controllability and tunability of nanocrystal surfaces remain unsolved.Herein,we report that the surface chem... The surface of nanocrystals plays a dominant role in many of their physical and chemical properties.However,controllability and tunability of nanocrystal surfaces remain unsolved.Herein,we report that the surface chemistry of nanocrystals,such as near-infrared Ag_(2)Se quantum dots(QDs),is sizedependent and composition-tunable.The Ag_(2)Se QDs tend to form a stable metal complex on the surface to minimize the surface energy,and therefore the surface chemistry can be varied with particle size.Meanwhile,changes in surface inorganic composition lead to reorganization of the surface ligands,and the surface chemistry also varies with composition.Therefore,the surface chemistry of Ag_(2)Se QDs,responsible for the photoluminescence(PL)quantum yield and photostability,can be tuned by changing their size or composition.Accordingly,we demonstrate that the PL intensity of the Ag_(2)Se QDs can be tuned reversely by adjusting the degree of surface Ag^(+) enrichment via light irradiation or the addition of AgNO_(3).This work provides insight into the control of QD surface for desired PL properties. 展开更多
关键词 Surface chemistry SIZE-DEPENDENT Composition-tunable PHOTOLUMINESCENCE Quantum dot
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