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Yttrium Chloride Hexahydrate, also known as Yttrium(III) chloride hexahydrate, is a white, adhering crystalline powder. It is a chemical compound with the formula YCl3·6H2O and is a soluble salt of yttrium, a rare earth element. YTTRIUM CHLORIDE HEXAHYDRATE is widely used in various industries due to its unique properties and applications.

10025-94-2

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10025-94-2 Usage

Uses

Used in Electronic Ceramics:
Yttrium Chloride Hexahydrate is used as a raw material for the production of electronic ceramics. It is essential in creating components with specific electrical and magnetic properties, which are crucial for various electronic devices.
Used in Glass Industry:
In the glass industry, Yttrium Chloride Hexahydrate is used as an additive to enhance specific characteristics of the glass, such as its refractive index and thermal stability. This improves the overall quality and performance of the glass products.
Used in Phosphors:
Yttrium Chloride Hexahydrate is used as a key component in the manufacturing of phosphors, which are materials that emit light when exposed to radiation. These phosphors are used in various applications, such as lighting, displays, and imaging technologies.
Used in Rare Earth Phosphors:
High purity grades of Yttrium Chloride Hexahydrate are used as a critical material for tri-band rare earth phosphors. These phosphors have unique properties that make them suitable for various applications, including lighting and display technologies.
Used in Yttrium-Iron-Garnets:
Yttrium Chloride Hexahydrate is used in the production of Yttrium-Iron-Garnets, which are very effective microwave filters. These garnets are essential components in communication systems, as they help filter and control the flow of microwave signals.
Used in Synthetic Garnets:
Yttrium is used in the production of a large variety of synthetic garnets, which have various applications in different industries, such as electronics, telecommunications, and aerospace. Yttrium Chloride Hexahydrate plays a crucial role in the synthesis of these garnets, ensuring their high quality and performance.
Used in Yttria Production:
Yttria, a compound of yttrium and oxygen, is used to make Yttrium Iron Garnets, which are very effective microwave filters. Yttrium Chloride Hexahydrate is an essential precursor in the production of Yttria, contributing to the overall performance and efficiency of these filters.

Check Digit Verification of cas no

The CAS Registry Mumber 10025-94-2 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 1,0,0,2 and 5 respectively; the second part has 2 digits, 9 and 4 respectively.
Calculate Digit Verification of CAS Registry Number 10025-94:
(7*1)+(6*0)+(5*0)+(4*2)+(3*5)+(2*9)+(1*4)=52
52 % 10 = 2
So 10025-94-2 is a valid CAS Registry Number.
InChI:InChI=1/3ClH.6H2O.Y/h3*1H;6*1H2;/q;;;;;;;;;+3/p-3

10025-94-2 Well-known Company Product Price

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  • Aldrich

  • (204919)  Yttrium(III)chloridehexahydrate  99.999% trace metals basis

  • 10025-94-2

  • 204919-10G

  • 1,864.98CNY

  • Detail
  • Aldrich

  • (204919)  Yttrium(III)chloridehexahydrate  99.999% trace metals basis

  • 10025-94-2

  • 204919-50G

  • 6,341.40CNY

  • Detail
  • Aldrich

  • (464317)  Yttrium(III)chloridehexahydrate  99.99% trace metals basis

  • 10025-94-2

  • 464317-25G

  • 800.28CNY

  • Detail
  • Aldrich

  • (464317)  Yttrium(III)chloridehexahydrate  99.99% trace metals basis

  • 10025-94-2

  • 464317-100G

  • 2,713.23CNY

  • Detail
  • Aldrich

  • (211648)  Yttrium(III)chloridehexahydrate  99.9% trace metals basis

  • 10025-94-2

  • 211648-50G

  • 821.34CNY

  • Detail
  • Aldrich

  • (211648)  Yttrium(III)chloridehexahydrate  99.9% trace metals basis

  • 10025-94-2

  • 211648-250G

  • 2,413.71CNY

  • Detail

10025-94-2SDS

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 YTTRIUM CHLORIDE HEXAHYDRATE

1.2 Other means of identification

Product number -
Other names Yttrium(III) chloride hexahydrate

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:10025-94-2 SDS

10025-94-2Relevant academic research and scientific papers

A novel sandwich polyoxometalate linked by mixed RE/TM interlayer: [Fe(phen)3]2[As2W18Fe2{Y(OH2)2}2O68]·6.5H2O

Wang, Jingping,Wang, Wei,Niu, Jingyang

, p. 29 - 34 (2008)

A novel sandwich polyoxometalate, [Fe(phen)3]2[As2W18Fe2{Y(H2O)2}2O68]·6. 5H2O 1, (phen = 1,10-phenanthroline), has been hydrothermally synthesized and characterized by elemental analyses, IR(25 ~ 650 °C), single-crystal X-ray diffraction, ESR spectroscopy and thermal analyses (TG-DTA). The crystallographic analysis reveals that the dimeric polyanion, [As2W18Fe2{Y(OH2)2}2O68]6-, are constructed from two [B-AsW9O34]9- fragments linked by two Y3+ ions and two Fe3+ ions. The ESR spectra exhibit that the high spin state and the low spin state of Fe(III) coexist in the title compound.

Re-investigation of ortho-metalated N,N-dialkylbenzylamine complexes of rare-earth metals. First structurally characterized arylates of neodymium and gadolinium Li[LnAr4]

Petrov, Alex R.,Rufanov, Konstantin A.,Harms, Klaus,Sundermeyer, J?rg

, p. 1212 - 1218 (2009)

The influence of the ether ligand in [LnCl3(solv)n], solv = THF, DME; n = 1-3 in reactions with ortho-lithiated dimethyl-benzylamine Li(dmba) has been studied. An improved protocol towards homoleptic tris-aryl complexes of the type [

New amino acid ligated yttrium hydroxy clusters

Thielemann, Dominique T.,Fernandez, Ignacio,Roesky, Peter W.

, p. 6661 - 6666 (2010)

The synthesis of the four mixed pentanuclear yttrium hydroxy clusters [Y5(OH)5(α-AA)4(Ph2acac) 6] (α-AA = d-phenyl glycine, l-proline, l-valine, and l-tryptophan; Ph2acac = dibenzoylmethani

Functionalised β-diketone assisted self-assembly of a hexanuclear yttrium oxo-hydroxo cluster

Jami, Ananda Kumar,Kishore, Pilli V.V.N.,Baskar, Viswanathan

, p. 2284 - 2286 (2009)

The reaction of YCl3·6H2O with ortho-hydroxydibenzoylmethane (HO-DBMH) in a 1:2 ratio, in methanol and in the presence of excess triethylamine as a base yielded a yellow precipitate which on crystallization from toluene or benzene /h

Facile solid-state chemical synthesis of novel ternary lanthanide complexes at room temperature

Yang, Xiao-Fei,Zhang, Rong-Xian,Yao, Fan,Ouyang, Wei-Meng

, p. 37 - 41 (2012/04/11)

This paper reports a facile one-step synthesis of two ternary lanthanide complexes via room temperature solid-state reactions of lanthanide chloride hydrates with two ligands, potassium sorbate (PS), and 8-hydroxyquinoline (8-hq). The structural features, composition, and the morphologies of two complexes are characterized by elemental analysis, UV-Vis, FT-IR, XRD, SEM, and EDX. The thermal property of two ternary lanthanide complexes was also investigated. UV-Vis and FT-IR results confirm the coordination of lanthanide ion with two ligands. XRD results show that signals of complexes are not from reactants, and are believed to originate from the corresponding ternary lanthanide complex.

Synthesis, structure, and antibacterial properties of ternary rare-earth complexes with o-methylbenzoic Acid and 1,10-phenanthroline1

Chen,Wang,Yang,Zhao,Zhang,Wang,Zhao

, p. 541 - 546 (2009/12/02)

Ternary rare-earth complexes with o-methylbenzoic acid (o-MBA) and 1,10-phenanthroline (Phen) Ln2(o-MBA)6(Phen)2 ? nH2O(n = 0, 1) (Ln = La, Pr, Y, Yb) were synthesized and characterized by elemental analysis, IR

Preparation and properties of conductive amorphous mercury tetrathiolato polymers

Tang, Yu,Gan, Xinmin,Tan, Minyu

, p. 587 - 589 (2007/10/03)

The preparation and properties of two series of polymers based on mercury complexes of ethylenetetrathiolate (ett) and tetrathiafulvalenetetrathiolate ligand (ttftt) of stoichiometry [[(Hg- ett)Lnx](n)(Ln = La, Nd, Sm, Eu, x = 0.4; Ln = Er, Y, x = 0.3) and [(Hg- ttftt)Lny](n)(Ln = La, Nd, Sm, Eu, Er, Y, y = 0.2) are described. The insoluble amorphous polymer complexes have been characterized by elemental analysis, IR spectra, TG-DTA techniques and conductivity measurements. As compacted pellets these complexes behave as semi-conductors at 25 °C.

The dehydration schemes of rare-earth chlorides

Hong, Vu Van,Sundstroem, Johan

, p. 37 - 43 (2008/10/09)

The dehydration schemes of LaCl3·7H2O, CeCl3·7H2O, PrCl3·7H2O, PrCl3·7H2O, EuCl3·6H2O, GdCl3·OH2O, HoCl3·6H2O, ErCl3·OH2O, TmCl3·6H2O, YbCl3·OH2O and YCl3·6H2O have been investigated by the isothermal fluidizedbed technique. This technique is based on the fact that reactions proceed at a close approach to equilibrium and thus give rise to constant reaction rate regimes at constant gas flow and temperature in the bed. By injecting a small portion of HCl(g) (~1%) into the gas stream, hydrolysis is avoided, and dehydration to the monohydrate is recorded by both thermal analysis of the preheated inlet gas and chemical analysis of samples taken from the bed. Based on the present results, together with previous results on NdCl3·OH2O, TbCl3·6H2O and DyCl3·6H2O, dehydration schemes of all rare-earth chlorides except LuCl3 and ScCl3 are suggested.

SYNTHESIS AND SPECTRALINVESTIGATION ON RARE EARTH(III0 COMPLEXES OF AMIDO ACID LIGAND DERIVED FROM 2,4-DINITROPHENYLHYDRAZINE

Shen, Xu,Xie, Yuyuan

, p. 499 - 510 (2008/10/09)

Fourteen rare earth(III) complexes REL3.nH2O (where RE = Sc, n=5; Re = Z, La, Ce, Sm, Eu, Gd, Tb, Dy, Ho, Er, Zb, n = 6; RE = Pr, Nd, n =4; HL =1-(N-carboxymethyl-N-phenyl)amino-avetyl-2',4'-dinitrophenylhydrazine), have been synthesized and characterized

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