Cat. No JK326442_500_G
J&K Chemical

Product Information

Product Name
Cesium carbonate, 99.9%
Brand Name
J&K
Product Number
326442
CAS
534-17-8
Molecular Formula
Cs2CO3
Molecular Weight
325.82
SDS Document
Certificate of Analysis (COA)​
COA not found

General Information

Synonyms
Carbonic acid dicesium
PubChem CID
10796
IUPAC Name
dicesium;carbonate
InChI Key
FJDQFPXHSGXQBY-UHFFFAOYSA-L
SMILES
C(=O)(O-)O-.Cs+.Cs+

Properties

Density
4.072
Melting Point
610

Safety Information

Signal Word
Warning
Hazard Statement
H315
H319
H335
Precautionary Statement
P280
P321
P261
P271
P319
P405
P501
P302+P352
P332+P317
P362+P364
P264+P265
P305+P351+P338
P337+P317
P304+P340
P403+P233

Description

Product Introduction

Cesium Carbonate (CAS No. 534-17-8) is an inorganic cesium salt and a strong, non-nucleophilic inorganic base widely used in organic synthesis, medicinal chemistry, pharmaceutical research, materials chemistry, and cross-coupling reactions.

Its high solubility in certain organic solvents compared with many other inorganic carbonates makes Cesium Carbonate particularly useful in synthetic chemistry. It is frequently employed as a base for O-alkylation, N-alkylation, C–C coupling, C–N coupling, and other base-promoted transformations.

Cesium Carbonate is also used in the preparation of functional organic materials and in research involving organic electronics and optoelectronic materials.

 

Mechanism / Principle

Strong Inorganic Base Function

Cesium Carbonate functions primarily as a strong inorganic base in organic reactions.

In synthetic applications:

  • Cesium carbonate provides carbonate ions that act as bases.
  • It can deprotonate acidic N–H, O–H, and related functional groups.
  • The resulting nucleophilic species can undergo alkylation or coupling reactions.
  • Its relatively high solubility in some organic reaction media can facilitate efficient base–substrate interaction.
  • The cesium ion can influence reaction selectivity and nucleophilicity through ion pairing.

Its combination of strong basicity, low nucleophilicity, and useful solubility characteristics makes it valuable for synthetic transformations.

 

Key Research Applications

1. Organic Synthesis

Cesium Carbonate is widely used as a base in synthetic organic chemistry.

Applications include:

  • O-alkylation
  • N-alkylation
  • S-alkylation
  • Deprotonation reactions
  • Condensation reactions
  • Functional-group transformations

 

2. Suzuki-Miyaura and Cross-Coupling Reactions

Cesium Carbonate can serve as the inorganic base in palladium-catalyzed cross-coupling reactions.

Applications include:

  • Suzuki-Miyaura coupling
  • C–C bond formation
  • Aryl coupling
  • Heteroaryl coupling
  • Pharmaceutical intermediate synthesis

 

3. Buchwald-Hartwig and C–N Coupling

Cesium Carbonate is frequently used as a base in palladium-catalyzed amination reactions.

Applications include:

  • C–N bond formation
  • Aryl amination
  • Heteroarylamine synthesis
  • Medicinal chemistry
  • Pharmaceutical synthesis

 

4. Nucleophilic Substitution

Its strong basicity makes Cesium Carbonate useful in nucleophilic substitution reactions.

Applications include:

  • Alkyl halide substitution
  • Ether synthesis
  • Nucleophile generation
  • Heterocycle functionalization
  • Organic building-block synthesis

 

5. Medicinal Chemistry

Cesium Carbonate is useful in medicinal chemistry because it can promote a variety of bond-forming reactions under relatively mild conditions.

Applications include:

  • Lead compound synthesis
  • Pharmaceutical intermediate preparation
  • Heterocycle functionalization
  • Structure–activity relationship studies
  • Library synthesis

 

6. Materials and Organic Electronics

Cesium-containing materials and cesium salts are investigated in advanced materials research.

Applications include:

  • Organic semiconductor synthesis
  • Optoelectronic materials
  • Functional organic molecules
  • Materials precursor research
  • Electronic materials development

 

7. Photovoltaic Materials Research

Cesium-containing compounds are also important in research on advanced photovoltaic materials, particularly cesium-containing perovskite systems.

Applications include:

  • Perovskite precursor research
  • Cesium-containing photovoltaic materials
  • Thin-film materials
  • Solar-cell materials development
  • Optoelectronic materials research

 

Advantages

  • Strong inorganic base
  • Relatively low nucleophilicity
  • Useful in a broad range of organic transformations
  • Suitable for O-, N-, and S-alkylation
  • Compatible with many palladium-catalyzed reactions
  • Useful in medicinal chemistry
  • Applicable to pharmaceutical synthesis
  • Valuable reagent for advanced materials research

 

Storage & Handling

  • Store in a tightly sealed container.
  • Keep in a cool, dry, and well-ventilated environment.
  • Protect from moisture, as Cesium Carbonate is hygroscopic.
  • Minimize exposure to atmospheric humidity during handling.
  • Close the container promptly after use.
  • Avoid contact with strong acids and incompatible materials.
  • Handle powders carefully to minimize dust generation.
  • Follow the product-specific SDS for detailed safety and handling requirements.

 

Research Areas

Researchers working in the following fields may benefit from Cesium Carbonate (CAS No. 534-17-8):

  • Organic synthesis
  • Medicinal chemistry
  • Pharmaceutical chemistry
  • Cross-coupling chemistry
  • Heterocyclic chemistry
  • Materials chemistry
  • Organic electronics
  • Optoelectronics
  • Photovoltaic research
  • Synthetic methodology development

FAQ

Q1: What is Cesium Carbonate?

A: Cesium Carbonate is an inorganic cesium salt with the molecular formula Cs₂CO₃ and CAS No. 534-17-8. It is widely used as a strong inorganic base in synthetic chemistry.

 

Q2: What is Cesium Carbonate used for?

A: Cesium Carbonate is mainly used as a base in organic synthesis, alkylation, cross-coupling, C–N bond formation, medicinal chemistry, and pharmaceutical synthesis.

 

Q3: What is the molecular weight of Cesium Carbonate?

A: The molecular weight of Cesium Carbonate is 325.82 g/mol.

 

Q4: Is Cesium Carbonate a strong base?

A: Yes. Cesium Carbonate is a strong inorganic base commonly used to promote deprotonation and base-mediated organic transformations.

 

Q5: Can Cesium Carbonate be used in Suzuki coupling?

A: Yes. Cesium Carbonate can be used as an inorganic base in Suzuki-Miyaura and other palladium-catalyzed cross-coupling reactions.

 

Q6: Is Cesium Carbonate hygroscopic?

A: Cesium Carbonate should be protected from moisture and atmospheric humidity during storage and handling. The container should be tightly closed when not in use.

 

Q7: What is the physical form of Cesium Carbonate?

A: Cesium Carbonate is generally supplied as a white crystalline powder or solid.

 

Q8: How should Cesium Carbonate be stored?

A: Store tightly sealed in a cool, dry environment and protect it from moisture and atmospheric humidity.

References Data Source From Pubchem

Peripheral aryl group transposition on pyridines using photoredox catalysis

Publication Name: Nature Synthesis
Publication Date: 2026-03-04
DOI: 10.1038/s44160-026-01023-6

Correction: Biohybrid architectures featuring immobilized metallic nanoparticles for catalytic carbon-carbon bond formation

Publication Name: Catal
Publication Date: 2026-03-03
DOI: 10.1007/s44422-025-00012-8|10.1007/s44422-026-00022-0

Multifunctional ligand engineering enables high-performance CsPb(Br/Cl)3 nanocrystals toward efficient and stable pure-blue perovskite LEDs

Publication Name: Light: Science & Applications
Publication Date: 2026-02-28
DOI: 10.1038/s41377-026-02214-8

High-throughput reaction screening using acoustic ejection mass spectrometry

Publication Name: Nature Protocols
Publication Date: 2026-02-23
DOI: 10.1038/s41596-025-01320-y

Catalytic asymmetric sulfonimidoyl transfer to access chiral sulfonimidoyl fluorides and related derivatives

Publication Name: Nature Chemistry
Publication Date: 2026-02-20
DOI: 10.1038/s41557-026-02071-3

Cesium carbonate, 99.9%

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