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Titanium(III) fluoride, also known as titanium trifluoride, is a chemical compound with the formula TiF3. It is a red to brown crystalline powder that is known for its unique chemical properties and various applications across different industries.

13470-08-1

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13470-08-1 Usage

Uses

Used in Laboratory Chemicals:
Titanium(III) fluoride is used as a laboratory chemical for various research and development purposes. Its unique properties make it a valuable compound for scientific studies and experimentation.
Used in Chemical Manufacturing:
Titanium(III) fluoride is also utilized in the manufacturing of chemicals. Its chemical properties contribute to the production of various compounds and substances that are essential in different industries.
Used in the Chemical Industry:
Titanium(III) fluoride is used as a raw material in the chemical industry for the production of other titanium-containing compounds and products. Its unique properties make it a valuable component in the synthesis of various chemicals.
Used in the Electronics Industry:
Due to its semiconducting properties, titanium(III) fluoride is used in the electronics industry for the development of electronic components and devices. Its ability to conduct electricity under certain conditions makes it a useful material in this field.
Used in the Metallurgical Industry:
Titanium(III) fluoride is employed in the metallurgical industry for various applications, such as the production of titanium metal and its alloys. Its ability to react with other elements makes it a crucial component in the metallurgical processes.
Used in the Ceramic Industry:
In the ceramic industry, titanium(III) fluoride is used as a colorant and opacifying agent. Its unique properties allow it to impart specific colors and characteristics to ceramic materials, making it a valuable addition to the industry.
Used in the Aerospace Industry:
Titanium(III) fluoride is utilized in the aerospace industry for the development of high-strength, lightweight materials. Its properties contribute to the creation of advanced materials that are essential for the construction of aircraft and spacecraft components.

Check Digit Verification of cas no

The CAS Registry Mumber 13470-08-1 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 1,3,4,7 and 0 respectively; the second part has 2 digits, 0 and 8 respectively.
Calculate Digit Verification of CAS Registry Number 13470-08:
(7*1)+(6*3)+(5*4)+(4*7)+(3*0)+(2*0)+(1*8)=81
81 % 10 = 1
So 13470-08-1 is a valid CAS Registry Number.
InChI:InChI=1/3FH.Ti/h3*1H;/q;;;+2/p-3

13470-08-1 Well-known Company Product Price

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  • Alfa Aesar

  • (13079)  Titanium(III) fluoride   

  • 13470-08-1

  • 10g

  • 549.0CNY

  • Detail
  • Alfa Aesar

  • (13079)  Titanium(III) fluoride   

  • 13470-08-1

  • 50g

  • 2094.0CNY

  • Detail
  • Aldrich

  • (399817)  Titanium(III)fluoride  

  • 13470-08-1

  • 399817-5G

  • 376.74CNY

  • Detail

13470-08-1SDS

SAFETY DATA SHEETS

According to Globally Harmonized System of Classification and Labelling of Chemicals (GHS) - Sixth revised edition

Version: 1.0

Creation Date: Aug 12, 2017

Revision Date: Aug 12, 2017

1.Identification

1.1 GHS Product identifier

Product name Titanium(III) fluoride

1.2 Other means of identification

Product number -
Other names TITANIUM(III) FLUORIDE

1.3 Recommended use of the chemical and restrictions on use

Identified uses For industry use only.
Uses advised against no data available

1.4 Supplier's details

1.5 Emergency phone number

Emergency phone number -
Service hours Monday to Friday, 9am-5pm (Standard time zone: UTC/GMT +8 hours).

More Details:13470-08-1 SDS

13470-08-1Relevant academic research and scientific papers

TiF2: Linear or bent?

Wilson, Antony V.,Roberts, Alexander J.,Young, Nigel A.

, p. 1774 - 1776 (2008)

Calling nonlinearity into question: When Ti atoms are isolated in fluorine-doped argon matrices, TiF4, TiF3, TiF 2, and TiF are identified by their IR spectra. The Ti isotope pattern observed for the ν3 mode of TiF2 is indistinguishable from that of a linear geometry. Therefore, there is now no reliable evidence for the nonlinearity of any 3d transition-metal difluorides or dichlorides. (Chemical Equation Presented)

Preparation, crystal structure, and magnetic properties of β-Li3TiF6 = Li2[4]Li7[6](TiF 6)(TiF6)2 - A double fluoride?

Tyagi, Avesh K.,Poettgen, Rainer,Koehler, Juergen

, p. 1329 - 1334 (1996)

Purple colored single crystals of the β-modification of Li3TiF6 have been prepared by heating an appropriate mixture of LiF and TiF3 at 820°C under an argon atmosphere. β-Li3TiF6 crystallizes in C2/c with a = 14.452(2) A, b = 8.798(1) A, c = 10.113(1) A and β = 96.30(1)°. The structure is isotypic to β-Li3VF6 and contains isolated compressed TiF6 octahedra (dTi-F = 1.91-2.01 A). Magnetic properties of β-Li3TiF6 were studied and discussed. Band structure calculations and calculations of the Madelung part of the lattice energy, MAPLE, were performed to discuss the chemical bonding. Johann Ambrosius Barth 1996.

Formation and calculations of the simple terminal triplet pnictinidene molecules n÷MF3, P÷MF3, and As÷MF3 (M = Ti, Zr, Hf)

Wang, Xuefeng,Lyon, Jonathan T.,Andrews, Lester

, p. 6297 - 6302 (2009/12/04)

Laser-ablated Ti, Zr, and Hf atoms react with NF3, PF 3, or AsF3 to produce triplet state terminal pnictinidene N÷MF3, P÷MF3, or As÷MF3 molecules, which are trapped in an argon matrix. Prod

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 CX4 (X = F and Cl) to produce triplet state XC÷TiX3 complexes trapped in an argon matrix. Products are identified by their infrared spectra and comparison to theoretically predicted vibrations.

Synthesis, structure, and magnetic properties of compounds NaMIIZr2F11 (MII = Ti, V, Cu) and a notice on NaPdZr2F11

Bialowons,Müller

, p. 1187 - 1194 (2008/10/09)

By synthesizing NaTiZr2F11 in form of red single crystals, it was possible to obtain a complex fluoride with Ti2+ for the first time. It crystallizes like the analogous greenish blue vanadium compound isotypic to AgPdZr2F11 [1] monoclinic, spacegroup C2/m-C2h3 (No. 12) with a = 918.0/911.5 pm, b = 682.6/675.7 pm, c = 780.8/776.6 pm, β = 116.2/116.2° and Z = 2. Colourless NaCuZr2F11 however crystallizes as a result of the Jahn-Teller distortion of Cu2+ triclinic (space group P1-Ci1 (No. 2), a = 552.7 pm, b = 568.2 pm, c = 768.0 pm, α = 111.0°, β = 97.4°, γ = 106.4°) and is - as expected - isotypic to NaAgZr2F11 [1]. Johann Ambrosius Earth 1996.

Thermodynamic Properties of Solid Titanium Trifluoride

Rezukhina, T. N.,Gorshkova, T. I.,Tsvetkov, A. A.

, p. 1001 - 1004 (2007/10/02)

By using the e.m.f. method with a solid electrolyte in the cell Ti, TiF3(CaF2)Al,AlF3 at 800 - 900 K we have determined the thermodynamic properties of crystalline TiF3: ΔHof,298.15=337.0 +/- 1.3 kcal mole-1, ΔGof, 298.15=-319.0 +/- 1.4 kcal mole-1, and So298.15=19.8 +/- 1.6 cal mole-1 K-1.A critical review of the thermodynamic parameters of TiF3 obtained from heterogeneous equilibrium data, which are found in standard tabulations, shows that the results of the e.m.f. method are the more reliable and can be recommended with a high level of confidence.

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