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potassium hexahydroxoplatinate | 12285-90-4

中文名称
——
中文别名
——
英文名称
potassium hexahydroxoplatinate
英文别名
potassium hydroxoplatinate(IV);potassium hydroxoplatinate;hexahydroxo platinum(IV) acid, potassium salt;potassium hexahydroxoplatinum(IV);Potassium;platinum(4+);hexahydroxide
potassium hexahydroxoplatinate化学式
CAS
12285-90-4
化学式
H6O6Pt*2K
mdl
——
分子量
375.321
InChiKey
KBCCPDZWVLCBQP-UHFFFAOYSA-H
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

物化性质

  • 熔点:
    150 °C(lit.)
  • 暴露限值:
    ACGIH: TWA 0.002 mg/m3NIOSH: IDLH 4 mg/m3; TWA 0.002 mg/m3

计算性质

  • 辛醇/水分配系数(LogP):
    -6.34
  • 重原子数:
    8.0
  • 可旋转键数:
    0.0
  • 环数:
    0.0
  • sp3杂化的碳原子比例:
    0.0
  • 拓扑面积:
    121.38
  • 氢给体数:
    6.0
  • 氢受体数:
    6.0

安全信息

  • TSCA:
    Yes
  • 危险品标志:
    Xi
  • 危险类别码:
    R36/37/38
  • WGK Germany:
    3
  • 安全说明:
    S26,S36
  • 危险性防范说明:
    P264,P302+P352,P305+P351+P338,P362,P403,P501
  • 危险性描述:
    H315,H319

SDS

SDS:a3b5e50e7177249a1b9f47652df3b695
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反应信息

  • 作为反应物:
    描述:
    potassium hexahydroxoplatinate 以 not given 为溶剂, 生成
    参考文献:
    名称:
    Gmelin Handbuch der Anorganischen Chemie, Gmelin Handbook: Pt: MVol.B4, 9, page 280 - 281
    摘要:
    DOI:
  • 作为产物:
    描述:
    氯化铂 在 alkali hydroxide 作用下, 生成 potassium hexahydroxoplatinate
    参考文献:
    名称:
    Bellucci, I., Zeitschrift fur anorganische Chemie, 1905, vol. 44, p. 177 - 181
    摘要:
    DOI:
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文献信息

  • Synthesis and Structure of New Pt(IV) Perfluorocarboxylate Complexes and Their Reactivity with Respect to Alkanes and Cycloalkanes
    作者:I. P. Stolyarov、N. V. Cherkashina、A. V. Churakov、A. V. Naumkin、A. B. Kornev、A. V. Chernyak、V. M. Martynenko
    DOI:10.1134/s0036023619010200
    日期:2019.1
    New Pt(IV) perfluorocarboxylate complexes of the composition [Pt(RFCOO)4]n and M2[Pt(RFCOO)6] (RF = CF3, C2F5; M = Li, Na, K, Rb, Cs, NMe4) have been synthesized and studied. These complexes are strong oxidizing agents capable of oxidizing alkanes in trifluoroacetic acid under mild conditions to form trifluoroacetic acid esters and acting as catalysts for the oxidative trifluoroacetoxylation of alkanes
    组成为[Pt(R F COO)4 ] n和M 2 [Pt(R F COO)6 ]的新Pt(IV)全氟羧酸盐络合物(R F = CF 3,C 2 F 5; M = Li,Na, K,Rb,Cs,NMe 4)已被合成和研究。这些络合物是强氧化剂,能够在温和条件下氧化三氟乙酸中的烷烃以形成三氟乙酸酯,并充当烷烃,环烷烃和骨架化合物的三乙氧基化的催化剂。它们也可以用作合成各种氧化态的的其他全氟羧酸盐络合物的起始化合物。通过X射线衍射确定了(NMe 4)2 [Pt(CF 3 COO)6 ]·6CF 3 COOH的结构。
  • Two routes to platinum-based carboxylate-bridged heterometallics
    作者:Ilya A. Yakushev、Igor P. Stolarov、Natalia V. Cherkashina、Andrei V. Churakov、Yan V. Zubavichus、Alexander A. Markov、Alexander E. Gekhman、Michael N. Vargaftik
    DOI:10.1016/j.ica.2020.119631
    日期:2020.8
    Abstract A series of novel platinum(II) and platinum(IV) acetate-bridged heterometallic complexes was prepared by (1) one-step reaction of platinum acetate blue Pt(OOCMe)2.5–2.75 (PAB) with the complementary metal carboxylates in rather low (10–40%) yield and (2) two-step synthesis starting from potassium hexa(hydroxido)platinate(IV) in much higher (up to 90%) yield. The complexes were structurally
    摘要通过(1)乙酸蓝Pt(OOCMe)2.5–2.75(PAB)与互补羧酸盐的一步反应制备了一系列新颖的乙酸(II)和乙酸(IV)桥联的杂属配合物。低(10-40%)的产率和(2)从六(羟基)(IV)开始的两步合成,产率更高(高达90%)。通过单晶XRD对复合物进行结构表征,并通过量子化学方法对其进行研究。
  • First platinum(ii)–alkaline-earth acetate-bridged complexes Ptii(m-OAc)4Mii(AcOH)4 (M = Ca, Sr, Ba)
    作者:Igor P. Stolarov、Ilya A. Yakushev、Pavel V. Dorovatovskii、Yan V. Zubavichus、Victor N. Khrustalev、Michael N. Vargaftik
    DOI:10.1016/j.mencom.2018.03.031
    日期:2018.3
    The first platinum(ii)–alkaline-earth acetate-bridged complexes Pt ii (m-OAc) 4 M ii (AcOH) 4 (M = Ca, Sr, Ba) were synthesized, structurally characterized using single-crystal synchrotron radiation X-ray diffraction analysis and tested for catalytic performance in homogeneous styrene hydrogenation under mild conditions.
    合成了第一批(ii)-碱土乙酸桥连的配合物Pt ii(m-OAc)4 M ii(AcOH)4(M = Ca,Sr,Ba),使用单晶同步加速器辐射X-射线衍射分析,并测试了在温和条件下均相苯乙烯加氢的催化性能。
  • New Heterometallic Carboxylate Complexes of Platinum and Iron, Precursors for Nanosized Intermetallic Compound PtFe Production
    作者:I. P. Stolarov、N. V. Cherkashina、I. A. Yakushev、A. V. Churakov、A. B. Kornev、E. V. Fatyushina
    DOI:10.1134/s003602362004021x
    日期:2020.4
    AbstractThe interaction of acetate platinum blue [Pt(OАс)2.25]n with oxoacetate complex of Fe(III) or potassium hydroxoplatinate K2[Pt(OH)6] with Fe(II) acetate and acetic acid gives complex [PtFe(OAc)4]2O ⋅ 4CH2Cl2 (I) and an exchange of I with pivalic acid gives the complex [PtFe(Piv)4Cl]2 (II). Both were structurally characterized (CCDC nos. 1949448 and 1952998 correspondingly, deposit@ccdc.cam
    摘要乙酸蓝[Pt(OАс)2.25 ] n与Fe(III)的氧乙酸盐配合物或氢氧2 [Pt(OH)6 ]与乙酸Fe(II)和乙酸的相互作用得到配合物[PtFe(OAc)4 ] 2 O⋅4CH 2 Cl 2(I)和I与新戊酸的交换得到复合物[PtFe(Piv)4 Cl] 2(II)。两者均具有结构特征(CCDC号分别为1949448和1952998,deposit @ ccdc.cam.ac.uk或http://www.ccdc.cam.ac.uk/data_request/cif)。这些化合物具有“中国灯笼”的结构,是双属催化剂(例如燃料电池)的潜在前体。
  • Platinum Acetate Blue: Synthesis and Characterization
    作者:Natalia V. Cherkashina、Dmitry I. Kochubey、Vladislav V. Kanazhevskiy、Vladimir I. Zaikovskii、Vladimir K. Ivanov、Alexander A. Markov、Alla P. Klyagina、Zhanna V. Dobrokhotova、Natalia Yu. Kozitsyna、Igor B. Baranovsky、Olga G. Ellert、Nikolai N. Efimov、Sergei E. Nefedov、Vladimir M. Novotortsev、Michael N. Vargaftik、Ilya I. Moiseev
    DOI:10.1021/ic500940a
    日期:2014.8.18
    Platinum acetate blue (PAB) of the empirical formula Pt(OOCMe)2.5±0.25, a byproduct in the synthesis of crystalline platinum(II) acetate Pt4(OOCMe)8, is an X-ray amorphous substance containing platinum in the oxidation state between (II) and (III). Typical PAB samples were studied with X-ray diffraction, differential thermal analysis–thermogravimetric, extended X-ray absorption fine structure, scanning
    经验公式为Pt(OOCMe)2.5±0.25的乙酸蓝(PAB),它是结晶乙酸(II)Pt 4(OOCMe)8合成中的副产物是在(II)和(III)之间的氧化态含有的X射线无定形物质。对典型的PAB样品进行了X射线衍射,差热分析–热重分析,扩展X射线吸收精细结构,扫描电子显微镜,透射电子显微镜,磁化学和组合量子化学密度泛函理论–分子力学建模的研究,从而揭示了主要的PAB样品。 PAB分子构件的结构特征。通过制备新的同核和异核配合物Pt II(dipy)(OOCMe)2(1),Pt II(μ-OOCMe)4 Co II(OH )证明了PAB在合成配合物中的适用性2)(2)和Pt III 2(OOCMe)4(O 3 SPhMe)2(3),并使用PAB作为起始原料。
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