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22992-15-0

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22992-15-0 Usage

Description

Gadolinium Oxalate Hydrate is a chemical compound derived from gadolinium, a rare earth element. It is characterized by its high magnetic moment and unique properties that make it suitable for various applications across different industries.

Uses

Used in Optical Glass Industry:
Gadolinium Oxalate Hydrate is used as a key component in the manufacturing of optical glass. Its unique properties contribute to the overall quality and performance of the final product.
Used in Microwave Applications:
In the field of electronics, Gadolinium Oxalate Hydrate serves as a dopant for Gadolinium Yttrium Garnets, which are essential for microwave applications due to their specific magnetic properties.
Used in Phosphor Production for Colour TV Tubes:
High purity Gadolinium Oxalate Hydrate is utilized in the production of phosphors for colour television tubes. Its presence enhances the brightness and color quality of the display.
Used in Medical Imaging:
When mixed with EDTA dopants, Gadolinium Oxalate Hydrate is used as an injectable contrast agent for patients undergoing magnetic resonance imaging (MRI). Its high magnetic moment allows it to reduce relaxation times, thereby enhancing signal intensity and improving the clarity of the images produced.

Check Digit Verification of cas no

The CAS Registry Mumber 22992-15-0 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 2,2,9,9 and 2 respectively; the second part has 2 digits, 1 and 5 respectively.
Calculate Digit Verification of CAS Registry Number 22992-15:
(7*2)+(6*2)+(5*9)+(4*9)+(3*2)+(2*1)+(1*5)=120
120 % 10 = 0
So 22992-15-0 is a valid CAS Registry Number.
InChI:InChI=1/3C2H2O4.2Gd.10H2O/c3*3-1(4)2(5)6;;;;;;;;;;;;/h3*(H,3,4)(H,5,6);;;10*1H2/q;;;2*+3;;;;;;;;;;/p-6

22992-15-0SDS

SAFETY DATA SHEETS

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

Version: 1.0

Creation Date: Aug 18, 2017

Revision Date: Aug 18, 2017

1.Identification

1.1 GHS Product identifier

Product name GADOLINIUM OXALATE HYDRATE

1.2 Other means of identification

Product number -
Other names Triacetic acid gadolinium salt

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:22992-15-0 SDS

22992-15-0Downstream Products

22992-15-0Relevant articles and documents

Field-induced slow magnetic relaxation and magnetocaloric effects in an oxalato-bridged gadolinium(iii)-based 2D MOF

Orts-Arroyo, Marta,Rabelo, Renato,Carrasco-Berlanga, Ainoa,Moliner, Nicolás,Cano, Joan,Julve, Miguel,Lloret, Francesc,De Munno, Giovanni,Ruiz-García, Rafael,Mayans, Júlia,Martínez-Lillo, José,Castro, Isabel

supporting information, p. 3801 - 3805 (2021/03/29)

The coexistence of field-induced slow magnetic relaxation and moderately large magnetocaloric efficiency in the supra-Kelvin temperature region occurs in the 2D compound [GdIII2(ox)3(H2O)6]n·4nH2O (1), a feature that can be exploited in the proof-of-concept design of a new class of slow-relaxing magnetic materials for cryogenic magnetic refrigeration.

Self-assembled light lanthanide oxalate architecture with controlled morphology, characterization, growing mechanism and optical property

He, Hongmei,Zhang, Youjin,Zhu, Wei,Zheng, Ao

, p. 1546 - 1552 (2011/10/01)

Flower-like Sm2(C2O4)3· 10H2O had been synthesized by a facile complex agent assisted precipitation method. The flower-like Sm2(C2O 4)3·10H2O was characterized by X-ray diffraction, X-ray photoelectron spectroscopy, Fourier transform infrared spectroscopy, field-emission scanning electron microscopy, thermogravimetry- differential thermal analysis and photoluminescence. The possible growth mechanism of the flower-like Sm2(C2O4) 3·10H2O was proposed. To extend this method, other Ln2(C2O4)3·nH2O (Ln = Gd, Dy, Lu, Y) with different morphologies also had been prepared by adjusting different rare earth precursors. Further studies revealed that besides the reaction conditions and the additive amount of complex agents, the morphologies of the as-synthesised lanthanide oxalates were also determined by the rare earth ions. The Sm2(C2O4) 3·10H2O and Sm2O3 samples exhibited different photoluminescence spectra, which was relevant to Sm 3+ energy level structure of 4f electrons. The method may be applied in the synthesis of other lanthanide compounds, and the work could explore the potential optical materials.

Thermal decomposition of mixed Ce and Gd oxalates and thermal properties of mixed Ce and Gd oxides

Ubaldini,Artini,Costa,Carnasciali,Masini

, p. 207 - 211 (2008/10/09)

The aim of the present work is to study the thermal decomposition of the mixed oxalates (Ce1-xGdx)2(C2O 4)3?nH2O. The mechanisms of decomposition of Ce and Gd oxalate are different, and mixed oxalates behave in an intermediate way. Their dehydration stages are more similar to those of Gd oxalate, as not all the molecules of water are equivalent like the cerium oxalate. The decomposition leads to (Ce1-xGdx)O2-x/2. For x close to 0 or to 1 two solid solutions exist, while for the central composition, the presence of a biphasic region can not be excluded.

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