Formula: ErCl3·6H2O
CAS: 10025-75-9
Mol.wt.381.71
Erbium(Ⅲ)Chloride Hexahydrate

Formula: YCl3·6H2O
CAS: 10025-94-2
Mol.wt.303.26
Yttrium(Ⅲ)Chloride Hexahydrate

Formula: PrCl3·6H2O
CAS: 10025-90-8
Mol.wt.444.62
Praseodymium Chloride Heptahydrate

Formula: NdCl3
CAS: 10024-93-8
Mol.wt.250.60
Anhydrous Neodymium Chloride

Formula: CeCl3
CAS: 7790-86-5
Mol.wt.246.47
Anhydrous Cerium(lll) Chloride

Formula: LaCl3
CAS: 10099-58-8
Mol.wt.245.26
Anhydrous Lanthanum Chloride

Formula: Y2(CO3)3·xH2O
CAS: 38245-39-5
Mol.wt.357.82(anhydrous basis)
High Purity Yttrium Carbonate Hydrate

Formula: La2(CO3)3·xH2O
CAS: 6487-39-4
Mol.wt.457.85(anhydrous basis)
High Purity Cerium Carbonate Hydrate

Formula: Ce2(CO3)3·xH2O
CAS: 54451-25-1
Mol.wt.460.26(anhydrous basis)
Fine Crystalline Spherica Cerium Carbonate Hydrate

Formula: Ce2(CO3)3·xH2O
CAS: 54451-25-1
Mol.wt.460.26(anhydrous basis)
Low Chloride Cerium Carbonate Hydrate

Formula: Ce2(CO3)3·xH2O
CAS: 54451-25-1
Mol.wt.460.26(anhydrous basis)
High Purity Cerium Carbonate Hydrate

Formula: Ce2(CO3)3·xH2O
CAS: 54454-25-1
Mol.wt.460.26(anhydrous basis)
Large Particle Size Cerium Carbonate Hydrate

Formula: Y(NO3)3·6H2O
CAS: 13494-98-9
Mol.wt.382.91
Yttrium(Ⅲ)Chloride Hexahydrate

Formula: Nd(NO3)3·6H2O
CAS: 16454-60-7
Mol.wt.438.24
Neodymium(Ⅲ) Nitrate Hexahydrate

Formula: Pr(NO3)3·6H2O
CAS: 15878-77-0
Mol.wt.434.91
Praseodymium(Ⅲ) Nitrate Hexahydrate

Formula: Ce(NH4)2(NO3)6
CAS: 16774-21-3
Mol.wt.548.22
Electronic Grade Cerium(lV) Ammonium Nitrate

Formula: Ce(NH4)2(NO3)6
CAS: 16774-21-3
Mol.wt.548.22
Cerium(lV) Ammonium Nitrate

Formula: Ce(NO3)3·6H2O
CAS: 10294-41-4
Mol.wt.434.22
Cerium(lll) Nitrate Hexahydrate

Formula: (NH4)4Ce(SO4)4·xH2O
CAS: 7637-03-8
Mol.wt.596.52(anhydrous basis)
Cerium(lV) Ammonium Sulfate Hydrate

Formula: Ce(SO4)2·4H2O
CAS: 10294-42-5
Mol.wt.404.284
Cerium(lV) Sulfate Trahydratete

Formula: Ce2(SO4)3·5H2O
CAS: 16648-30-9
Mol.wt.658.42
Cerium(lll) Sulfate Pentahydrate

Formula: La2(SO4)3·8H2O
CAS: 57804-25-8
Mol.wt.709.8
Lanthanum Sulfate Hydrare

Formula: YF3
CAS: 13709-49-4
Mol.wt.145.90
Yttrium Fluoride

Formula:
CAS:
Mol.wt.
Praseodymium-Neodymium Fluoride

Formula: CeF3
CAS: 7758-88-5
Mol.wt.197.12
Cerium Fluoride

Formula: LaF3
CAS: 13709-38-1
Mol.wt.195.9
Lanthanum Fluoride

Formula: Zr(SO4)2 · 4H2O
CAS: 7446-31-3
Mol.wt.355.41
Zirconium(lV) Sulfate Tetrahydrate

Formula: Zr(C2H3O2)4
CAS: 7585-20-8
Mol.wt.327.4
Zirconium(lV) Acetate Solution

Formula: Zr(NO3)4 · 2H2O
CAS: 13746-89-9
Mol.wt.375.36
Zirconium(lV) Nitrate Dihydrate

Established in 2012, Sichuan Wonaixi New Materials Technology Co., Ltd. has consistently focused on the research, development, and production of rare earth functional materials. Recognized as a "National High-Tech Enterprise" and designated as a "Specialized, Refined, Unique, and Innovative Enterprise" in Sichuan Province, the company operates specialized production lines with an annual capacity of 15,000 tons of high-purity rare earth salts and 3,000 tons of precision rare earth polishing powder.
The product range covers nine major categories of rare earth products—including nitrates, acetates, sulfates, hydroxides, fluorides, chlorides, carbonates, polishing powders—along with zirconium salts, totaling over 50 specialized variants. These materials are extensively applied in defense systems, aerospace engineering, pharmaceutical manufacturing, electronics, new energy technologies, three-way catalysis, environmental protection, and precision optical polishing, addressing diverse demands of clients in specialized industrial sectors.
Annual output of high-purity rare earth salts (tons)
Annual output of optical polishing powder (tons)
These materials are extensively applied in defense systems, aerospace engineering, pharmaceutical manufacturing, electronics, new energy technologies, three-way catalysis, environmental protection, and precision optical polishing, addressing diverse demands of clients in specialized industrial sectors.
These materials are extensively applied in defense systems, aerospace engineering, pharmaceutical manufacturing, electronics, new energy technologies, three-way catalysis, environmental protection, and precision optical polishing, addressing diverse demands of clients in specialized industrial sectors.
These materials are extensively applied in defense systems, aerospace engineering, pharmaceutical manufacturing, electronics, new energy technologies, three-way catalysis, environmental protection, and precision optical polishing, addressing diverse demands of clients in specialized industrial sectors.
These materials are extensively applied in defense systems, aerospace engineering, pharmaceutical manufacturing, electronics, new energy technologies, three-way catalysis, environmental protection, and precision optical polishing, addressing diverse demands of clients in specialized industrial sectors.
These materials are extensively applied in defense systems, aerospace engineering, pharmaceutical manufacturing, electronics, new energy technologies, three-way catalysis, environmental protection, and precision optical polishing, addressing diverse demands of clients in specialized industrial sectors.
These materials are extensively applied in defense systems, aerospace engineering, pharmaceutical manufacturing, electronics, new energy technologies, three-way catalysis, environmental protection, and precision optical polishing, addressing diverse demands of clients in specialized industrial sectors.
These materials are extensively applied in defense systems, aerospace engineering, pharmaceutical manufacturing, electronics, new energy technologies, three-way catalysis, environmental protection, and precision optical polishing, addressing diverse demands of clients in specialized industrial sectors.
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