Date published: 2026-4-20

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Lithium sulfate monohydrate (CAS 10102-25-7)

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Application:
Lithium sulfate monohydrate is a monohydrate lithium sulfate salt
CAS Number:
10102-25-7
Molecular Weight:
127.96
Molecular Formula:
H2Li2O5S
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

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Lithium sulfate monohydrate (Li2SO4·H2O) is a white crystalline compound extensively used in various industrial and research fields unrelated to medical or pharmaceutical applications. This hydrate form of lithium sulfate is particularly valued in the ceramics industry, where it is used to lower the melting temperatures and enhance the properties of ceramic glazes, thereby improving their durability and aesthetic quality. It also finds applications in metallurgical processes as an electrolyte in molten salt baths, which are utilized for the heat treatment of metals to optimize their grain structure and mechanical properties at high temperatures. In the realm of energy storage research, lithium sulfate monohydrate is significant due to its potential role in lithium-ion batteries, especially in the development of advanced electrolytes that aim to increase battery efficiency, stability, and safety. Its excellent solubility and thermal stability, along with favorable ionic conductivity, make it a subject of interest for improving electrolyte formulations in battery technology. Additionally, its use in electrochemistry laboratories helps in understanding ionic transport mechanisms, further broadening its application in developing energy-efficient technologies. Through these diverse uses, lithium sulfate monohydrate highlights its versatility and importance in technical and scientific advancements.


Lithium sulfate monohydrate (CAS 10102-25-7) References

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  2. Overexpression and preliminary X-ray crystallographic analysis of prophenoloxidase activating factor II, a clip domain family of serine proteases.  |  Piao, S., et al. 2005. Biochim Biophys Acta. 1752: 103-6. PMID: 15953772
  3. Experimental study and Monte-Carlo simulation of the nucleation and growth processes during the dehydration of Li2SO4.H2O single crystals.  |  Favergeon, L., et al. 2005. Phys Chem Chem Phys. 7: 3723-7. PMID: 16358020
  4. Investigations of the bond-selective response in a piezoelectric Li2SO4.H2O crystal to an applied external electric field.  |  Schmidt, O., et al. 2009. Acta Crystallogr A. 65: 267-75. PMID: 19535848
  5. Crystal growth and spectroscopic characterization of Aloevera amino acid added lithium sulfate monohydrate: a non-linear optical crystal.  |  Manimekalai, R., et al. 2014. Spectrochim Acta A Mol Biomol Spectrosc. 122: 232-7. PMID: 24316535
  6. Comment on the paper: 'Crystal growth and spectroscopic characterization of Aloevera amino acid added lithium sulfate monohydrate: a non-linear optical crystal'.  |  Srinivasan, BR. 2015. Spectrochim Acta A Mol Biomol Spectrosc. 134: 574-6. PMID: 25096925
  7. Discovering the kinetics of thermal decomposition during continuous cooling.  |  Liavitskaya, T. and Vyazovkin, S. 2016. Phys Chem Chem Phys. 18: 32021-32030. PMID: 27531194
  8. Further insights into the kinetics of thermal decomposition during continuous cooling.  |  Liavitskaya, T., et al. 2017. Phys Chem Chem Phys. 19: 18836-18844. PMID: 28517008
  9. Deciphering the orthorhombic crystal structure of a novel NEIL1 nanobody with pseudo-merohedral twinning.  |  Thompson, MK., et al. 2023. bioRxiv.. PMID: 37609231
  10. Neutron‐Diffraction Study of Lithium Sulfate Monohydrate.  |  Smith, H. G., et al. 1968. The Journal of Chemical Physics. 48.12: 5561-5565.

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

Lithium sulfate monohydrate, 100 g

sc-211743
100 g
$87.00

Lithium sulfate monohydrate, 500 g

sc-211743A
500 g
$315.00