Cas no 10030-90-7 (Butanedioic acid,iron(2+) salt (1:1))
Butanedioic acid,iron(2+) salt (1:1) Chemical and Physical Properties
Names and Identifiers
-
- Butanedioic acid,iron(2+) salt (1:1)
- iron succinate
- AG-D-05009
- Cerevon
- CTK3J8756
- D08015
- Ferplex (TN)
- Ferrlecit 2
- Ferromyn
- Ferrous succinate
- Iron(2+)succinate
- Ironsuccinate (Fe(O4C4H4)) (7CI)
- MolPort-006-119-212
- Succinic acid, iron(2+) salt (1:1) (8CI)
- V1658
- Iron(II)-succinate
- Eisen(II)-succinat
- ferrous succinic acid
- Succinic acid iron(II) salt
- Butanedioic acid, iron(2+) salt (1:1)
- butanedioic acid, iron (+2) salt
- butanedioate;iron(2+)
- 10030-90-7
- Iron succinate (fe(o4c4h4))
- FERROUS SUCCINATE [MI]
- FERROUS SUCCINATE [WHO-DD]
- EINECS 233-082-3
- SCHEMBL275423
- 818ZYK7N91
- SUCCINIC ACID, IRON(2+) SALT (1:1)
- DB14489
- NS00088877
- Q27269230
- FERROUS SUCCINATE [MART.]
- NS00082085
- iron(II) succinate
- UNII-818ZYK7N91
- Succinic acid iron(II) salt;Succinic acid iron(II) salt
- NS00087159
- Butanedioic acid;Iron succinate
- MDXRFOWKIZPNTA-UHFFFAOYSA-L
- DB-220782
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- Inchi: 1S/C4H6O4.Fe/c5-3(6)1-2-4(7)8;/h1-2H2,(H,5,6)(H,7,8);/q;+2/p-2
- InChI Key: MDXRFOWKIZPNTA-UHFFFAOYSA-L
- SMILES: [Fe+2].[O-]C(CCC(=O)[O-])=O
Computed Properties
- Exact Mass: 171.945894g/mol
- Monoisotopic Mass: 171.945894g/mol
- Isotope Atom Count: 0
- Hydrogen Bond Donor Count: 0
- Hydrogen Bond Acceptor Count: 4
- Heavy Atom Count: 9
- Rotatable Bond Count: 1
- Complexity: 81.6
- Covalently-Bonded Unit Count: 2
- Defined Atom Stereocenter Count: 0
- Undefined Atom Stereocenter Count : 0
- Defined Bond Stereocenter Count: 0
- Undefined Bond Stereocenter Count: 0
- Molecular Weight: 171.92g/mol
- Topological Polar Surface Area: 80.3?2
Experimental Properties
- Color/Form: No data avaiable
- Density: g/cm3
- Melting Point: No data available
- Boiling Point: No data available
- Flash Point: No data available
- Vapor Pressure: No data available
Butanedioic acid,iron(2+) salt (1:1) Security Information
- Signal Word:warning
- Hazard Statement: H303+H313+H333
- Warning Statement: P264+P280+P305+P351+P338+P337+P313
- Safety Instruction: H303+H313+H333
- Storage Condition:Store at 4 ° C, -4 ° C is better
Butanedioic acid,iron(2+) salt (1:1) Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| Ambeed | A952107-500g |
Iron(II) succinate |
10030-90-7 | 98+% | 500g |
$278.0 | 2025-02-25 | |
| A2B Chem LLC | AA01777-25g |
Butanedioic acid, iron(2+) salt (1:1) |
10030-90-7 | 98% | 25g |
$110.00 | 2024-04-20 | |
| A2B Chem LLC | AA01777-100g |
Butanedioic acid, iron(2+) salt (1:1) |
10030-90-7 | 98% | 100g |
$310.00 | 2024-04-20 | |
| A2B Chem LLC | AA01777-250g |
Butanedioic acid, iron(2+) salt (1:1) |
10030-90-7 | 98% | 250g |
$560.00 | 2024-04-20 |
Butanedioic acid,iron(2+) salt (1:1) Suppliers
Butanedioic acid,iron(2+) salt (1:1) Related Literature
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Netaji K. Desai,Govind B. Kolekar,Shivajirao R. Patil New J. Chem. 2014 38 4394
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Fei Qu,Shuai Wang,Dongya Liu,Jinmao You RSC Adv. 2015 5 82570
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Shima Saffarionpour,Levente L. Diosady Food Funct. 2023 14 5062
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Hong He,Qun Huang,Cancan Liu,Shirong Jia,Yiwei Wang,Fengping An,Hongbo Song RSC Adv. 2019 9 5053
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5. LXXV.—Chemical properties of concentrated solutions of certain salts. Part II. Double potassium succinatesWilliam Colebrook Reynolds J. Chem. Soc. Trans. 1898 73 701
Additional information on Butanedioic acid,iron(2+) salt (1:1)
Comprehensive Analysis of Butanedioic acid,iron(2+) salt (1:1) (CAS No. 10030-90-7): Properties, Applications, and Industry Trends
Butanedioic acid,iron(2+) salt (1:1), registered under CAS No. 10030-90-7, is an organometallic compound gaining traction in industrial and nutritional applications. Commonly referred to as ferrous succinate, this iron-based derivative of succinic acid exhibits unique physicochemical properties, including high solubility in aqueous media and enhanced bioavailability compared to inorganic iron salts. Its molecular structure combines one ferrous ion (Fe2?) with one succinate anion, creating a stable coordination complex ideal for controlled-release formulations.
The compound's relevance has surged due to growing interest in sustainable iron fortification and chelated mineral supplements. Recent studies highlight its superior absorption rates in dietary iron supplementation, addressing global concerns about iron deficiency anemia while minimizing gastrointestinal side effects. In agriculture, ferrous succinate serves as an effective micronutrient fertilizer, particularly in alkaline soils where traditional iron sources exhibit poor availability.
From a manufacturing perspective, CAS No. 10030-90-7 demonstrates exceptional stability in pharmaceutical formulations. Its low redox reactivity prevents undesirable interactions with oxygen-sensitive compounds, making it valuable for multivitamin preparations. The compound's pH buffering capacity also contributes to its utility in functional food products, where it maintains iron solubility across varying acidity levels.
Emerging research explores Butanedioic acid,iron(2+) salt (1:1) in biodegradable materials development. Its ability to participate in polymerization reactions while providing iron ions positions it as a candidate for controlled-release packaging systems. This aligns with circular economy principles, answering frequent search queries about "eco-friendly metal-containing polymers" and "sustainable active packaging."
Quality specifications for ferrous succinate emphasize heavy metal limits and crystallinity parameters, reflecting industry demand for pharmaceutical-grade materials. Analytical techniques like X-ray diffraction and ICP-OES verify its compliance with USP/EP monographs, a common concern among formulation chemists searching for "certified iron supplements excipients."
In conclusion, CAS No. 10030-90-7 represents a versatile compound bridging nutritional science and industrial innovation. Its dual functionality as nutrient and stabilizer responds to market needs for multifunctional additives, while ongoing research continues to uncover novel applications in green chemistry and advanced material science.
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