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indium(III) phosphate

中文名称
——
中文别名
——
英文名称
indium(III) phosphate
英文别名
indium phosphate;indium(III) orthophosphate;indium orthophosphate;Indium(III)-orthophosphat;2,4,5-trioxa-1λ5-phospha-3-indabicyclo[1.1.1]pentane 1-oxide
indium(III) phosphate化学式
CAS
——
化学式
In*O4P
mdl
——
分子量
209.791
InChiKey
UJXZVRRCKFUQKG-UHFFFAOYSA-K
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):
    -3.21
  • 重原子数:
    6
  • 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:
    86.2
  • 氢给体数:
    0
  • 氢受体数:
    4

反应信息

  • 作为反应物:
    描述:
    indium(III) phosphate 以 neat (no solvent, solid phase) 为溶剂, 生成
    参考文献:
    名称:
    Phase formation in the InPO4-Na3PO4-Li3PO4 ternary system
    摘要:
    The 950 degrees C isothermal section of the InPO4-Na3PO4-Li3PO4 ternary system was studied and constructed; one-, two, and three-phase fields are outlined. Five solid-solution regions exist in the system: solid solutions based on the complex phosphate LiNa5(PO4)(2) (olympite structure), the indium ion stabilized high-temperature Na3PO4 phase (Na3(1 - x)Inx(PO4); space group Fm (3) over bar m), the complex phosphate Na3In2(PO4)(3), and the a and-phases of the compound Li3In2(PO4)(3). A narrow region of melt was found in the vicinity of eutectic equilibria. All the phases detected in the system are derivatives of phases existing in the binary sub-systems. Isovalent substitution of lithium for sodium in Na3In2(PO4) (3) leads to a significant increase in the region of a NASICON-like solid solution.
    DOI:
    10.1134/s0036023611090191
  • 作为产物:
    描述:
    参考文献:
    名称:
    ITO, EHJDZI
    摘要:
    DOI:
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文献信息

  • M(IO<sub>3</sub>)(HPO<sub>4</sub>)(H<sub>2</sub>O) (M = Sc, Fe, Ga, In): Introduction of Phosphate Anions into Metal Iodates
    作者:Tong-Ying Chang、Bing-Ping Yang、Chun-Li Hu、Dong Yan、Jiang-Gao Mao
    DOI:10.1021/acs.cgd.7b00924
    日期:2017.9.6
    The first series of metal phosphate iodates, namely, M(IO3)(HPO4)(H2O) (M = Sc 1, Fe 2, Ga 3, In 4), have been obtained through hydrothermal syntheses. The title compounds are isomorphic and crystallize in the monoclinic space group C2/c (No. 15). Their structures feature a three-dimensional (3D) network composed of 1D [M(HPO4)(H2O)]+ chains that are further bridged by IO3 groups, forming 1D tunnels
    通过水热合成获得了第一系列的金属磷酸盐碘酸盐,即M(IO 3)(HPO 4)(H 2 O)(M = Sc 1,Fe 2,Ga 3,In 4)。标题化合物是同构的,并且在单斜空间群C 2 / c(No. 15)中结晶。它们的结构具有由1D [M(HPO 4)(H 2 O)] +链组成的三维(3D)网络,这些链进一步由IO 3组桥接,形成基于沿b的八元环的一维隧道。-轴。磁性测量显示化合物2中磁性中心之间的反铁磁耦合相互作用。紫外吸收光谱测量表明,化合物2在约427nm处显示出宽的吸收峰。的TGA研究和IR谱对化合物1 - 4还进行。
  • The crystal structure and characterization of 2-D and 3-D indium phosphates synthesized from a water/ethylene glycol mixed-solvent system
    作者:Gen-Wu Ge、Yu-Xiang Hu、Mei-Pin Liu、Yi-Zhi Li、Hong-Bin Du、Xiao-Zeng You
    DOI:10.1016/j.ica.2011.12.024
    日期:2012.4
    Three indium phosphates [In 16 (HPO 4 ) 28 (H 2 O) 12 ](NH 4 ) 8 (H 2 O) 12 ( 1 ), [In 2 (OH)(HPO 4 ) 2 (PO 4 )](H 2 O)(C 6 H 18 N 2 ) ( 2 ) and [In 3 (HPO 4 ) 6 ](C 2 N 2 H 10 )(H 3 O)(H 2 O) 2 ( 3 ) were solvothermally synthesized from water/ethylene glycol (EG) mixed solvent systems by using 1,3-propyldiamine (1,3-PDA), 2-methyl-pentamethylenediamine (MPMD) and diethylenetriamine (DETA) as structure
    三种磷酸铟[In 16(HPO 4)28(H 2 O)12](NH 4)8(H 2 O)12(1),[In 2(OH)(HPO 4)2(PO 4)](溶剂热合成H 2 O)(C 6 H 18 N 2)(2)和[In 3(HPO 4)6](C 2 N 2 H 10)(H 3 O)(H 2 O)2(3)分别使用1,3-丙基二胺(1,3-PDA),2-甲基五亚甲基二胺(MPMD)和二亚乙基三胺(DETA)作为结构导向剂(SDA)从水/乙二醇(EG)混合溶剂体系中获得。化合物1由[In 7(HPO 4)14(H 2 O)6] 7−的阴离子层组成,这些阴离子层通过InO 6八面体相连,形成与12-相交的阴离子三维(3-D)开放骨架成员环通道。通道充满了电荷平衡的铵阳离子和客体水分子。化合物2具有由InO 6八面体和PO 4四面体形成的[In 2(OH)(HPO 4)2(PO 4)] 2–的阴离子层组
  • Synthesis of InP nanofibers from tri(m-tolyl)phosphine: an alternative route to metal phosphidenanostructures
    作者:Junli Wang、Qing Yang、Zude Zhang、Tanwei Li、Shuyuan Zhang
    DOI:10.1039/b912525f
    日期:——
    < triphenylphosphine. The correlation between the stability of triarlyphosphines and the growth of InP nanocrystals was investigated, and experimental results showed that the relatively stable triarlyphosphines (tri(m-tolyl)phosphine and triphenylphosphine) were favorable for the preparation of one-dimensional (1D) InP nanostructures (nanofibers and nanowires). The reactivity (stability) of triarlyphosphines
    的合成 铟磷纳米纤维通过新的Ullmann型反应铟 纳米粒子与 三(间甲苯基)膦 (磷(PhMe)3)通常是为了说明制备纳米结构金属磷化物(包括III–V(13–15)和过渡金属磷化物)的替代途径。 三芳基膦 其他两种化合物 三(间甲苯基)膦 异构体 二苯基(对甲苯基)膦, 和 三苯膦 被比较地用来合成 铟磷纳米晶体。从三芳基膦的碳化方面来看,InP产品的拉曼光谱和热重分析(TGA)研究表明,这些三芳基膦的稳定性符合以下顺序:三(对甲苯基)膦 ≈ 三(邻甲苯基)膦 < 二苯基(对甲苯基)膦 < 三(间甲苯基)膦 < 三苯膦。三芳膦的稳定性与铜的生长的相关性。铟磷 对纳米晶体进行了研究,实验结果表明,相对稳定的三芳基膦(三(间甲苯基)膦 和 三苯膦)有利于一维(1D)的制备 铟磷纳米结构(纳米纤维和纳米线)。还比较了三芳基膦的反应性(稳定性)。P(SiMe 3)3 (通常参见:JMNedeljković,
  • Thermal stability and IR spectra of indium(III) phosphates(V) obtained in solid state
    作者:M. Bosacka
    DOI:10.1016/j.tca.2011.05.013
    日期:2011.8
    Abstract Three indium(III) phosphates(V), i.e. In(PO3)3, In4(P2O7)3 and InPO4 have been obtained as a result of a solid-state reaction between In2O3 and (NH4)2HPO4. Melting temperatures and the products of thermal decomposition have been determined for the obtained indium(III) phosphates(V).
    摘要 作为 In2O3 和 (NH4)2HPO4 之间的固相反应的结果,已经获得了三种磷酸铟 (V),即 In(PO3)3、In4(P2O7)3 和 InPO4。已确定所得磷酸铟 (III) (V) 的熔化温度和热分解产物。
  • Synthesis and Structure of the New Ammonium Indium Phosphate (NH4)In(OH)PO4
    作者:A.A. Filaretov、M.G. Zhizhin、L.N. Komissarova、V.P. Danilov、V.V. Chernyshev、B.I. Lazoryak
    DOI:10.1006/jssc.2002.9606
    日期:2002.7
    A new ammonium indium phosphate (NH4)In(OH)PO4 was prepared by hydrothermal reaction in the In2O3–NH4H2PO4–NH3/OH system (T=200°C, autogenous pressure, 7 days). The formula (NH4)In(OH)PO4 was determined on the basis of chemical and thermal analysis (TG/DSC), X-ray powder diffraction and IR-spectroscopy. (NH4)In(OH)PO4 crystallizes in the tetragonal system with space group P43212 (No. 96); a=9.4232(1)
    在In 2 O 3 -NH 4 H 2 PO 4 -NH 3 / OH体系(T = 200°C,自生压力,7 )下通过水热反应制备了新的磷酸铵铟(NH 4)In(OH)PO 4。天)。式(NH 4)In(OH)PO 4是根据化学和热分析(TG / DSC),X射线粉末衍射和红外光谱确定的。(NH 4)In(OH)PO 4在具有空间群P 4 3 2 1 2(No. 96)的四方体系中结晶。一种= 9.4232(1)埃,c ^ = 11.1766(1)埃,V = 992.45(2)埃3 ; Z= 8。通过Rietveld方法(R w= 6.35%,R p= 5.10%)精制晶体结构。次谐波产生研究证实(NH 4)In(OH)PO 4的结构不具有对称中心。所述顺式-InO 4(OH)2八面体形成螺旋链,平行于Ç轴。In–O–In键几乎等距。链通过磷酸四面体相互连接,并沿着氢氧根形成含NH 4 +离子的隧道。c轴。(NH
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