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cis-diamminediaqua platinum (II) | 15203-61-9

中文名称
——
中文别名
——
英文名称
cis-diamminediaqua platinum (II)
英文别名
cis-dichlorodiaquaplatinate(II);cis-dichlorodiaquaplatinum(II);cis-[PtCl2(H2O)2];cis-Cl2Pt(water)2;Dichloroplatinum;dihydrate
cis-diamminediaqua platinum (II)化学式
CAS
15203-61-9
化学式
Cl2H4O2Pt
mdl
——
分子量
302.017
InChiKey
IYHMYVUWTZRNIZ-UHFFFAOYSA-L
BEILSTEIN
——
EINECS
——
  • 物化性质
  • 计算性质
  • ADMET
  • 安全信息
  • SDS
  • 制备方法与用途
  • 上下游信息
  • 反应信息
  • 文献信息
  • 表征谱图
  • 同类化合物
  • 相关功能分类
  • 相关结构分类

计算性质

  • 辛醇/水分配系数(LogP):
    -0.27
  • 重原子数:
    5
  • 可旋转键数:
    0
  • 环数:
    0.0
  • sp3杂化的碳原子比例:
    0.0
  • 拓扑面积:
    2
  • 氢给体数:
    2
  • 氢受体数:
    2

反应信息

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文献信息

  • Kinetics and Mechanism for Reversible Chloride Transfer between Mercury(II) and Square-Planar Platinum(II) Chloro Ammine, Aqua, and Sulfoxide Complexes. Stabilities, Spectra, and Reactivities of Transient Metal−Metal Bonded Platinum−Mercury Adducts
    作者:Östen Gröning、Alan M. Sargeson、Robert J. Deeth、Lars I. Elding
    DOI:10.1021/ic000320j
    日期:2000.9.18
    mixing solutions of platinum complex and mercury are ascribed to formation of transient adducts between Hg2+ and several of the platinum complexes. Depending on the limiting rate constants, these adducts are observed for a few milliseconds to a few minutes. Thermodynamic and kinetics data together with the UV/vis spectral changes and DFT calculations indicate that their structures are characterized by
    Hg2 + aq-和HgCl + aq辅助的[PtCl4] 2-(1),[PtCl3(H2O)]-(2),顺式[PtCl2( )2](3),反式[PtCl2 ( )2](4),[PtCl( )3] +(5),[PtCl3Me2SO]-(6),反式[PtCl2( )Me2SO](7),顺式[PtCl( )2Me2SO ] +(8),反式[PtCl2(NH3)2](9),反式[PtCl2(NH3)2](10)和顺式[PtCl2(NH3)2](11)的研究使用停止流和常规分光光度法,在用氯离子缓冲的1.00 M HClO4介质中,在25.0摄氏度下进行。络合物和的混合溶液中的饱和动力学和瞬时,大的UV / vis光谱变化归因于Hg2 +与几种络合物之间形成的瞬时加合物。根据极限速率常数,观察到这些加合物的时间为几毫秒到几分钟。热力学和动力学数据以及UV / vis光谱变
  • Synthesis and characterization of cyanocobalamin conjugates with Pt(II) complexes towards potential therapeutic applications
    作者:Dominika Porębska、Łukasz Orzeł、Dorota Rutkowska-Żbik、Grażyna Stochel、Rudi van Eldik
    DOI:10.1016/j.poly.2022.116230
    日期:2023.1
    carrier of inorganic cytostatics potentially reducing the side effects of chemotherapy. Our studies were focused on the effect of ligands on the stability of platinum(II) conjugates with CblCN. The synthesis of three selected conjugates containing coordinated chloride ions, water molecules, diethylenetriamine or terpyridine were monitored spectrophotometrically and the formation of desired binuclear
    胺素 (CblCN) 对癌细胞的亲和力增加为其用作无机细胞抑制剂的载体提供了基础,可能会减少化疗的副作用。我们的研究重点是配体 (II) 与 CblCN 缀合物稳定性的影响。通过分光光度法监测含有配位氯离子分子、二亚乙基三胺或三联吡啶的三种选定缀合物的合成,并通过 MS-ESI 确认所需双核复合物的形成,195Pt NMR 和 IR 光谱。此外,应用分子模型来确定缀合物的几何形状和结合能。根据我们的结果,治疗性属配位球的扩展对 CblCN 缀合物的稳定性产生负面影响,这在其预期嵌入能力的背景下可以被认为是预期的。
  • Reactions of platinum(II) aqua complexes. 2. Platinum-195 NMR study of reactions between the tetraaquaplatinum(II) cation and chloride, hydroxide, perchlorate, nitrate, sulfate, phosphate, and acetate
    作者:Trevor G. Appleton、John R. Hall、Stephen F. Ralph、Craig S. M. Thompson
    DOI:10.1021/ic00190a017
    日期:1984.10
  • Solvent paths for square-planar substitutions. Part 2. Reactions between aqua chloroplatinates(II) and ethene
    作者:L.I. Elding、A.-B. Gröning
    DOI:10.1016/s0020-1693(00)91935-2
    日期:1980.1
  • Controlled Synthesis of 2-D and 3-D Dendritic Platinum Nanostructures
    作者:Yujiang Song、Yi Yang、Craig J. Medforth、Eulalia Pereira、Anup K. Singh、Huifang Xu、Yingbing Jiang、C. Jeffrey Brinker、Frank van Swol、John A. Shelnutt
    DOI:10.1021/ja037474t
    日期:2004.1.1
    Seeding and autocatalytic reduction of platinum salts in aqueous surfactant solution using ascorbic acid as the reductant leads to remarkable dendritic metal nanostructures. In micellar surfactant solutions, spherical dendritic metal nanostructures are obtained, and the smallest of these nanodendrites resemble assemblies of joined nanoparticles and the nanodendrites are single crystals. With liposomes as the template, dendritic platinum sheets in the form of thin circular disks or solid foamlike nanomaterials can be made. Synthetic control over the morphology of these nanodendrites, nanosheets, and nanostructured foams is realized by using a tin-porphyrin photocatalyst to conveniently and effectively produce a large initial population of catalytic growth centers. The concentration of seed particles determines the ultimate average size and uniformity of these novel two- and three-dimensional platinum nanostructures.
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