Ferric citrate - Animal Free, Low Endotoxin, for cell culture , CAS No.3522-50-7

CAS: 3522-50-7 Cat. No.: F657080 Peso molecular: 244.94 Número EC: 222-536-6 PubChem CID: 61300
Disponible para pedir
GRADE & PURITY Animal Free ? Animal-free — produced without animal-derived components to reduce contamination risk. Use in biomanufacturing and culture avoiding animal-origin material. Low Endotoxin ? Low-endotoxin grade — endotoxin reduced to low controlled levels. Use in sensitive biological work where high endotoxin would interfere. for Cell culture ? Cell-culture grade — low endotoxin and contaminants to support viable cell growth. Use in mammalian/other cell culture media and supplements.
Synonyms
A832727 | iron(3+) citrate | 2-hydroxypropane-1,2,3-tricarboxylate;iron(3+) | FERRIC CITRATE [INCI] | FT-0627304 | Auryxia | 2-hydroxy-1,2,3-propanetricarboxylic acid iron salt | Iron 2-hydroxy-1,2,3-propanetricarboxylate | Citric acid, iron(3+) salt (1:1
Storage
Protected from light,Room temperature
Shipped In
Normal
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Size
Estado
Price
Qty
50g
F657080-50g
8-12 wks(?) Production requires sourcing of materials. We appreciate your patience and understanding.
49,90US$
250g
F657080-250g
8-12 wks(?) Production requires sourcing of materials. We appreciate your patience and understanding.
171,90US$
Enter a quantity for the sizes you want to add.
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Why this grade

Animal Free, Low Endotoxin, for cell culture Animal Free,for Cell culture,Low Endotoxin for sensitive chromatographic and analytical workflows requiring minimal baseline interference.

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Storage & shipping

Protected from light,Room temperature Ships Normal Check lot-specific COA for exact specifications.

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Quality documents

SDS, COA, datasheet, and spec sheet available for download. Lot-specific COA accessible via lot number lookup.

📚

Literature proof

Cited in 21 peer-reviewed publications across chromatography, organic synthesis, and cross-coupling reactions.

Specifications

Sinónimos
A832727 | iron(3+) citrate | 2-hydroxypropane-1, 2, 3-tricarboxylate;iron(3+) | FERRIC CITRATE [INCI] | FT-0627304 | Auryxia | 2-hydroxy-1, 2, 3-propanetricarboxylic acid iron salt | Iron 2-hydroxy-1, 2, 3-propanetricarboxylate | Citric acid, iron(3+) salt (1:1
Especificaciones y pureza
Animal Free, Low Endotoxin, for cell culture
Condiciones de almacenamiento de almacenamiento
Protected from light, Room temperature
Enviado en
Normal
Grado
Animal Free, for Cell culture, Low Endotoxin
Nombres e identificadores
Sonrisas canónicasC(C(=O)[O-])C(CC(=O)[O-])(C(=O)[O-])O.[Fe+3]
IUPAC Name2-hydroxypropane-1,2,3-tricarboxylate;iron(3+)
InChIKeyNPFOYSMITVOQOS-UHFFFAOYSA-K
INCHI1S/C6H8O7.Fe/c7-3(8)1-6(13,5(11)12)2-4(9)10;/h13H,1-2H2,(H,7,8)(H,9,10)(H,11,12);/q;+3/p-3
Isómeros SMILES C(C(=O)[O-])C(CC(=O)[O-])(C(=O)[O-])O.[Fe+3]
CAS alternativo 6043-74-9
PubChem CID 61300
Peso molecular 244.94

Documentation

📋 Safety Data Sheet (SDS)

Comprehensive hazard, handling, storage, and regulatory compliance document.

Download SDS →

✅ Certificate of Analysis (COA)

Lot-specific quality data. Enter your lot number to retrieve the exact COA.

Look up COA →

📊 Datasheet

Quick-reference summary of product specifications and applications.

View datasheet →

🔬 Specification Sheet

Full quality attributes and acceptance criteria for this grade.

View spec sheet →

Advanced Data

Taxonomic Classification

Taxonomy Tree

KingdomOrganic compounds
SuperclassOrganic acids and derivatives
ClaseCarboxylic acids and derivatives
SubclassTricarboxylic acids and derivatives
Intermediate Tree Nodes Not available
Direct ParentTricarboxylic acids and derivatives
Alternative Parents Tertiary alcohols  Carboxylic acid salts  Organic transition metal salts  Carboxylic acids  Organic oxides  Hydrocarbon derivatives  Carbonyl compounds  
Molecular FrameworkAliphatic acyclic compounds
Substituents Tricarboxylic acid or derivatives - Tertiary alcohol - Carboxylic acid salt - Organic transition metal salt - Carboxylic acid - Organic oxygen compound - Organic oxide - Hydrocarbon derivative - Organic salt - Organooxygen compound - Carbonyl group - Alcohol - Aliphatic acyclic compound
DescripciónThis compound belongs to the class of organic compounds known as tricarboxylic acids and derivatives. These are carboxylic acids containing exactly three carboxyl groups.
External Descriptors Not available
Estructura 3D
Modelo de Estructura Química Interactiva





Certificados (CoA, COO, BSE/TSE y tabla de análisis)
C of A & Other Certificates(BSE/TSE, COO):
Analytical Chart:

Find and download the COA for your product by matching the lot number on the packaging.

8 results found

Lot NumberCertificate TypeFechaArticulo
K2520396Certificate of AnalysisNov 12, 2025 F657080
K2520398Certificate of AnalysisNov 12, 2025 F657080
K2521733Certificate of AnalysisNov 12, 2025 F657080
I2508223Certificate of AnalysisAug 26, 2025 F657080
I2508735Certificate of AnalysisAug 26, 2025 F657080
I2508736Certificate of AnalysisAug 26, 2025 F657080
D2422342Certificate of AnalysisMar 13, 2024 F657080
D2422343Certificate of AnalysisMar 13, 2024 F657080
Propiedades químicas y físicas
SensibilidadLight sensitive.
Peso molecular244.940 g/mol
XLogP3
Hydrogen Bond Donor Count1
Hydrogen Bond Acceptor Count7
Rotatable Bond Count2
Exact Mass244.938 Da
Monoisotopic Mass244.938 Da
Topological Polar Surface Area141.000 Ų
Heavy Atom Count14
Formal Charge0
Complexity211.000
Isotope Atom Count0
Defined Atom Stereocenter Count0
Undefined Atom Stereocenter Count0
Defined Bond Stereocenter Count0
Undefined Bond Stereocenter Count0
The total count of all stereochemical bonds0
Covalently-Bonded Unit Count2
Preguntas frecuentes y artículos
Citations of This Product
Referencias
1. Xuyang Zou, Jiangzhang Wang, Guojun Lv, Tao Wang, Chaoyi Zhou, Yan Chen, Jialing Shen, Shihao Su, Zhongmin Liu.  (2023)  Fe-MFI zeolite-encapsulated copper oxide with excellent re-usability for efficient tetracycline degradation.  MICROPOROUS AND MESOPOROUS MATERIALS,      [PMID:] [10.1016/j.micromeso.2023.112735]
2. Yunjin Zhong, Lebing Zhuo, Wangyang Lu.  (2023)  Analysis of photocatalytic degradation of polyamide microplastics in metal salt solution by high resolution mass spectrometry.  Journal of Environmental Sciences,      [PMID:38105070] [10.1016/j.jes.2023.06.018]
3. Zizhang Guo, Yan Kang, Haiming Wu, Mei Li, Zhen Hu, Jian Zhang.  (2023)  Enhanced removal of phenanthrene and nutrients in wetland sediment with metallic biochar: Performance and mechanisms.  CHEMOSPHERE,      [PMID:36990361] [10.1016/j.chemosphere.2023.138523]
4. Jia-Qi Liu, Xin Ma, Dong-Feng Liu, Chuan-Wang Yang, Dao-Bo Li, Di Min, Han-Qing Yu.  (2023)  Multiple roles of released c-type cytochromes in tuning electron transport and physiological status of Geobacter sulfurreducens.  BIOTECHNOLOGY AND BIOENGINEERING,  120  (5): (1346-1356).  [PMID:36779277] [10.1002/bit.28351]
5. Jian Lin, Yan-Fei Li, Jing-Ping Zhang, Hai-Ming Xie, Hai-Zhu Sun.  (2022)  Quantitative manipulation of covalent bonds to obtain ultra-stable half/full Li-ion batteries via gel encapsulation-post annealing route.  COMPOSITES SCIENCE AND TECHNOLOGY,      [PMID:] [10.1016/j.compscitech.2022.109668]
6. Hang Zhao, Bingbing Tian, Chenliang Su, Ying Li.  (2021)  Single-Atom Iron and Doped Sulfur Improve the Catalysis of Polysulfide Conversion for Obtaining High-Performance Lithium–Sulfur Batteries.  ACS Applied Materials & Interfaces,      [PMID:33528984] [10.1021/acsami.0c20446]
7. Baoyu Liu, Jiajin Huang, Zhantu Liao, Chongzhi Zhu, Qiaoli Chen, Guan Sheng, Yihan Zhu, Yi Huang, Jinxiang Dong.  (2021)  Integrating pore interconnectivity and adaptability in a single crystal hierarchical zeolite for liquid alkylation.  AICHE JOURNAL,  67  (6): (e17177).  [PMID:] [10.1002/aic.17177]
8. Wei Wu, Man Wang, Jun Wang, Zhenyao Wei, Tian Zhang, Shang-Sen Chi, Chaoyang Wang, Yonghong Deng.  (2020)  Transition metal oxides as lithium-free cathodes for solid-state lithium metal batteries.  Nano Energy,      [PMID:] [10.1016/j.nanoen.2020.104867]
9. Qin Zhu, Jiaorong Yan, Qiguang Dai, Qingqing Wu, Yuanpu Cai, Jinyan Wu, Xingyi Wang, Wangcheng Zhan.  (2019)  Ethylene glycol assisted synthesis of hierarchical Fe-ZSM-5 nanorods assembled microsphere for adsorption Fenton degradation of chlorobenzene.  JOURNAL OF HAZARDOUS MATERIALS,      [PMID:31732347] [10.1016/j.jhazmat.2019.121581]
10. Sibo Chen, Mingli Li, Siyuan Yang, Xin Li, Shengsen Zhang.  (2019)  Graphitied carbon-coated bimetallic FeCu nanoparticles as original g-C3N4 cocatalysts for improving photocatalystic activity.  APPLIED SURFACE SCIENCE,      [PMID:] [10.1016/j.apsusc.2019.06.127]
11. Guodong Du, Yakun Xi, Xiaohui Tian, Yanbin Zhu, Yingke Zhou, Chengji Deng, Hongxi Zhu, Angulakshmi Natarajan.  (2019)  One-step hydrothermal synthesis of 3D porous microspherical LiFePO4/graphene aerogel composite for lithium-ion batteries.  CERAMICS INTERNATIONAL,      [PMID:] [10.1016/j.ceramint.2019.06.035]
12. Qinghua Tian, Jingbin Yan, Li Yang.  (2019)  Achieving extremely facile preparation in high-performance ferroferric oxide/carbon composite anode material for lithium-ion batteries.  JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS,      [PMID:] [10.1016/j.jpcs.2019.02.018]
13. Tuo Liu, Qinghua Tian, Wei Zhang, Jizhang Chen, Li Yang.  (2019)  FexOy nanoparticles in-situ embedded in porous carbon framework towards improved lithium storage.  MATERIALS CHEMISTRY AND PHYSICS,      [PMID:] [10.1016/j.matchemphys.2019.01.039]
14. Zhiyang Li, Yuning Mao, Qinghua Tian, Wei Zhang, Li Yang.  (2019)  Extremely facile preparation of high-performance Fe2O3 anode for lithium-ion batteries.  JOURNAL OF ALLOYS AND COMPOUNDS,      [PMID:] [10.1016/j.jallcom.2018.12.392]
15. Zhao Xinhong, Duan Weiting, Zhang Xiaoxiao, Ji Dong, Zhao Yu, Li Guixian.  (2018)  Insights into the effects of modifying factors on the solvent-free synthesis of FeAPO-5 catalysts towards phenol hydroxylation.  Reaction Kinetics Mechanisms and Catalysis,  125  (2): (1055-1070).  [PMID:] [10.1007/s11144-018-1465-2]
16. Fengyi Zhong, Qi Wang, Caili Xu, Yingchun Yang, Yi Wang, Yun Zhang, Daojiang Gao, Jian Bi, Guangyin Fan.  (2018)  Ultrafine and highly dispersed Ru nanoparticles supported on nitrogen-doped carbon nanosheets: Efficient catalysts for ammonia borane hydrolysis.  APPLIED SURFACE SCIENCE,      [PMID:] [10.1016/j.apsusc.2018.05.192]
17. Guodong Du, Yingke Zhou, Xiaohui Tian, Guan Wu, Yakun Xi, Shengyu Zhao.  (2018)  High-performance 3D directional porous LiFePO4/C materials synthesized by freeze casting.  APPLIED SURFACE SCIENCE,      [PMID:] [10.1016/j.apsusc.2018.05.142]
18. Wang Xiaoqin, Yang Yufei, Zhang Yong, Li Qiaoqin, Gong Ming, Zhang Runlan, Xiong Shanxin.  (2017)  Facile synthesis and capacitance properties of N-doped porous carbon/iron oxide composites through the single-step pyrolysis of coal-based polyaniline.  JOURNAL OF POROUS MATERIALS,  25  (3): (845-853).  [PMID:] [10.1007/s10934-017-0497-8]
19. Xiaofeng Tu, Yingke Zhou, Yijie Song.  (2016)  Freeze-drying synthesis of three-dimensional porous LiFePO4 modified with well-dispersed nitrogen-doped carbon nanotubes for high-performance lithium-ion batteries.  APPLIED SURFACE SCIENCE,      [PMID:] [10.1016/j.apsusc.2016.12.220]
20. Jie Yuan, Yiwen Chen, Guangqi Zhou, Haijiang Chen, Haichun Gao.  (2013)  Investigation of roles of divalent cations in Shewanella oneidensis pellicle formation reveals unique impacts of insoluble iron.  BIOCHIMICA ET BIOPHYSICA ACTA-GENERAL SUBJECTS,      [PMID:23911985] [10.1016/j.bbagen.2013.07.023]
21. Bingxu Liu, Lihua Wang, Xiao Gong, Haiguang Zhao, Yuanming Zhang.  (2022)  Large scale synthesis of carbon dots for efficient luminescent solar concentrators.  Journal of Materials Chemistry C,  10  (48): (18154-18163).  [PMID:] [10.1039/D2TC04285A]
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