SIGMA 334545-1G 氯金酸钾 13682-61-6
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SIGMA 334545-1G 氯金酸钾 13682-61-

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  • ¥1199
  • Sigma-Aldrich
  • 进口
  • 334545-1G
  • 2025年10月30日
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    • 详细信息
    • 文献和实验
    • 技术资料
    • 保存条件

      常温

    • 保质期

      根据瓶身LOT号查询

    • 英文名

      Potassium gold(III) chloride

    • 库存

      有现货

    • 供应商

      浙江羽翔生物科技有限公司

    • CAS号

      13682-61-6

    • 规格

      1G

    属性

    质量水平

    100

    方案

    98%

    表单

    powder

    反应适用性

    core: potassium

    溶解性

    H2O: soluble
    alcohol: soluble
    ethanol: soluble

    SMILES字符串

    [K+].Cl[Au-](Cl)(Cl)Cl

    InChI

    1S/Au.4ClH.K/h;4*1H;/q+3;;;;;+1/p-4

    InChI key

    JMONCQYBAMKVQQ-UHFFFAOYSA-J

    一般描述

    氯金酸钾的黄色晶体可溶于水。1,2

    应用

    合成发光特性研究中新型金二硫杂环复合物的关键原料,或可用作光敏剂或光催化剂。

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    图标文献和实验
    该产品被引用文献

    pH induced protein-scaffold biosynthesis of tunable shape gold nanoparticles.

    Nanotechnology (2011-08-11)
    Xiaorong Zhang, Xiaoxiao He, Kemin Wang, Fang Ren, Zhihe Qin
    PMID21828895
    摘要

    In this paper, a pH-inductive protein-scaffold biosynthesis of shape-tunable crystalline gold nanoparticles at room temperature has been developed. By simple manipulation of the reaction solution's pH, anisotropic gold nanoparticles including spheres, triangles and cubes could be produced by incubating an aqueous solution of sodium tetrachloroaurate with Dolichomitriopsis diversiformis biomasses after immersion in ultrapure Millipore water overnight. A moss protein with molecular weight of about 71 kDa and pI of 4.9 was the primary biomolecule involved in the biosynthesis of gold nanoparticles. The secondary configuration of the proteins by CD spectrum implied that the moss protein could display different secondary configurations including random coil, α-helix and intermediate conformations between random coil and α-helix for the experimental pH solution. The growth process of gold nanoparticles further showed that the moss protein with different configurations provided the template scaffold for the shape-controlled biosynthesis of gold nanoparticles. The constrained shape of the gold nanoparticles, however, disappeared in boiled moss extract. The gold nanoparticles with designed morphology were successfully reconstructed using the moss protein purified from the gold nanoparticles. Structural characterizations by SEM, TEM and SAED showed that the triangular and cubic gold nanoparticles were single crystalline.

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    SIGMA 334545-1G 氯金酸钾 13682-61-6
    ¥1199