Titanium tetrachloride

  • CAS:7550-45-0
  • MF:TiCl4
  • Purity:99%
  • Molecular Weight:189.692
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Product Details

  • CAS: 7550-45-0
  • MF: TiCl4
  • Appearance: colourless liquid with a penetrating odour
  • Top Quality Titanium tetrachloride 7550-45-0 Hot Sell In Stock

    • Molecular Formula:TiCl4
    • Molecular Weight:189.692
    • Appearance/Colour:colourless liquid with a penetrating odour 
    • Vapor Pressure:33900mmHg at 25°C 
    • Melting Point:-25 °C 
    • Refractive Index:1.61 
    • Boiling Point:135-136 °C(lit.) 
    • Flash Point:46 °F 
    • PSA:0.00000 
    • Density:1.73 g/mL at 20 °C(lit.) 
    • LogP:2.75800 

    Titanium(IV) chloride(Cas 7550-45-0) Usage

    Use Description

    Titanium(IV) chloride, a versatile chemical compound, finds applications across various fields. In the field of metallurgy and materials science, it serves as a crucial reagent in the production of titanium metal and alloys, owing to its ability to reduce titanium tetrachloride to pure titanium. These titanium materials are prized for their exceptional strength-to-weight ratio and corrosion resistance, making them vital in aerospace, automotive, and medical industries for the manufacturing of aircraft, lightweight structural components, and medical implants. In the chemical industry, titanium(IV) chloride acts as a catalyst in various organic synthesis reactions, playing a key role in the production of specialty chemicals, including plastics and pharmaceuticals. Additionally, in the electronics industry, it is used in the manufacture of semiconductors and as a reducing agent in the fabrication of certain electronic components. Its versatile nature makes it indispensable in multiple sectors, contributing to advancements in technology, engineering, and chemistry.

    InChI:InChI=1/4ClH.Ti/h4*1H;/q;;;;+4/p-4

    7550-45-0 Relevant articles

    Preparation and properties of some new trifluoromethanesulfonates

    Noftle, Ronald E.,Cady, George H.

    , p. 2182 - 2184 (1966)

    Nitrosyl trifluoromethanesulfonate, NOSO...

    Heterogeneous Catalysis in Solution. Part 27. - Reaction between Titanium(III) and Triiodide Ions Catalysed by Platinum

    Xiao, Shaorong,Spiro, Michael

    , p. 1983 - 1986 (1994)

    The rate of the reaction between titaniu...

    Impact of synthesis conditions on surface chemistry and structure of carbide-derived carbons

    Portet, Cristelle,Kazachkin, Dmitry,Osswald, Sebastian,Gogotsi, Yury,Borguet, Eric

    , p. 137 - 142 (2010)

    Carbide-derived carbons produced by chlo...

    The low temperature synthesis of metal oxides by novel hydrazine method

    Rane,Uskaikar,Pednekar,Mhalsikar

    , p. 627 - 638 (2008/10/09)

    The hydroxide, oxalate and citrate precu...

    Compatibility of TiO2 with a CaO-CaCl2 melt

    Lebedev,Sal'nikov,Tarabaev,Sizikov,Rymkevich

    , p. 1491 - 1497 (2008/03/15)

    Interaction of TiO2 with a CaO-CaCl2 mel...

    Electron deficient carbon-titanium triple bonds: Formation of triplet XC÷TiX3 methylidyne complexes

    Lyon, Jonathan T.,Andrews, Lester

    , p. 9858 - 9863 (2008/10/09)

    Laser-ablated titanium atoms react with ...

    7550-45-0 Process route

    thionyl chloride
    7719-09-7

    thionyl chloride

    [TiCl<sub>3</sub>(OSeCl<sub>2</sub>)2]2O
    301172-67-8

    [TiCl3(OSeCl2)2]2O

    sulfur dioxide
    7446-09-5,12143-17-8,89125-89-3

    sulfur dioxide

    titanium tetrachloride
    7550-45-0

    titanium tetrachloride

    selenium tetrachloride
    10026-03-6

    selenium tetrachloride

    Conditions
    Conditions Yield
    using excess SOCl2;
    Dichlorodifluoromethane
    75-71-8

    Dichlorodifluoromethane

    titanium(IV) oxide

    titanium(IV) oxide

    TiCl<sub>2</sub>F<sub>2</sub>

    TiCl2F2

    titanium(IV) fluoride
    7783-63-3

    titanium(IV) fluoride

    titanium tetrachloride
    7550-45-0

    titanium tetrachloride

    Conditions
    Conditions Yield
    In neat (no solvent); reaction at 700-750°C;;

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