Zinc iron oxide - ≥99% metals basis, ≤100nm , CAS No.12063-19-3

CAS: 12063-19-3 Cat. No.: Z107248 Peso molecular: 241.08 Número EC: 235-052-5 PubChem CID: 11831558
Disponible para pedir
GRADE & PURITY ≥99% metals basis ≤100nm
Synonyms
ZnFe2O4 | Zinc iron oxide, nanopowder, <100 nm particle size (BET), >99% trace metals basis | EINECS 235-052-5 | Cobalt Zinc Ferrite Nanopowder | Diiron zinc tetraoxide | Zinc Iron Oxide Nanopowder | Zinc iron oxide | CHEBI:133337 | hydroxy(oxo)iron;zinc
Storage
Room temperature
Shipped In
Normal
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Size
Estado
Price
Qty
5g
Z107248-5g
1
9,90US$
25g
Z107248-25g
1
17,90US$
100g
Z107248-100g
1
59,90US$
500g
Z107248-500g
8-12 wks(?) Production requires sourcing of materials. We appreciate your patience and understanding.
274,90US$
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Why this grade

≥99% metals basis, ≤100nm for sensitive chromatographic and analytical workflows requiring minimal baseline interference.

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Storage & shipping

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.

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Literature proof

Cited in 11 peer-reviewed publications across chromatography, organic synthesis, and cross-coupling reactions.

Descripción general

Zinc iron oxide nanoparticles are chemically stable and exhibit superparamagnetic properties. There are a number of methods to prepare ZnO nanoparticles, some of them are self-propagated combustion of fuels (alanine, glycine and proline), co-precipitation, sol-gel reaction, spin coating, ball milling and auto combustion.

Specifications

Sinónimos
ZnFe2O4 | Zinc iron oxide, nanopowder, <100 nm particle size (BET), >99% trace metals basis | EINECS 235-052-5 | Cobalt Zinc Ferrite Nanopowder | Diiron zinc tetraoxide | Zinc Iron Oxide Nanopowder | Zinc iron oxide | CHEBI:133337 | hydroxy(oxo)iron;zinc
Especificaciones y pureza
≥99% metals basis, ≤100nm
Condiciones de almacenamiento de almacenamiento
Room temperature
Enviado en
Normal
Pureza
≥99% metals basis
Nombres e identificadores
Sonrisas canónicasO[Fe]=O.O[Fe]=O.[Zn]
IUPAC Namehydroxy(oxo)iron;zinc
InChIKeyNNGHIEIYUJKFQS-UHFFFAOYSA-L
INCHI1S/2Fe.2H2O.2O.Zn/h;;2*1H2;;;/q2*+1;;;;;/p-2
Isómeros SMILES O[Fe]=O.O[Fe]=O.[Zn]
PubChem CID 11831558
Peso molecular 241.08

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.

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🔬 Specification Sheet

Full quality attributes and acceptance criteria for this grade.

View spec sheet →

Advanced Data

Taxonomic Classification

Taxonomy Tree

KingdomInorganic compounds
SuperclassMixed metal/non-metal compounds
ClaseTransition metal organides
SubclassTransition metal oxides
Intermediate Tree Nodes Not available
Direct ParentTransition metal oxides
Alternative Parents Inorganic oxides  
Molecular FrameworkNot available
Substituents Transition metal oxide - Inorganic oxide
DescripciónThis compound belongs to the class of inorganic compounds known as transition metal oxides. These are inorganic compounds containing an oxygen atom of an oxidation state of -2, in which the heaviest atom bonded to the oxygen is a transition metal.
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.

10 results found

Lot NumberCertificate TypeFechaArticulo
B2514018Certificate of AnalysisSep 27, 2024 Z107248
J2509471Certificate of AnalysisSep 27, 2024 Z107248
J2528199Certificate of AnalysisSep 27, 2024 Z107248
K2401592Certificate of AnalysisSep 27, 2024 Z107248
K2401593Certificate of AnalysisSep 27, 2024 Z107248
K2401594Certificate of AnalysisSep 27, 2024 Z107248
K2401595Certificate of AnalysisSep 27, 2024 Z107248
K2401596Certificate of AnalysisSep 27, 2024 Z107248
K2401597Certificate of AnalysisSep 27, 2024 Z107248
D2425436Certificate of AnalysisMar 09, 2024 Z107248
Propiedades químicas y físicas
SolubilidadInsoluble in water.
Peso molecular243.100 g/mol
XLogP3
Hydrogen Bond Donor Count2
Hydrogen Bond Acceptor Count4
Rotatable Bond Count0
Exact Mass241.794 Da
Monoisotopic Mass241.794 Da
Topological Polar Surface Area74.600 Ų
Heavy Atom Count7
Formal Charge0
Complexity30.700
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 Count3
Citations of This Product
Referencias
1. Yirui Zhao, Hang Yang, Hongshun Hao, Fuxiao Zhu, Gongliang Zhang, Jingran Bi, Shuang Yan, Hongman Hou.  (2022)  Construction of an S-Scheme Ag2MoO4/ZnFe2O4 Nanofiber Heterojunction for Enhanced Photoelectrocatalytic Activity under Visible Light Irradiation.  LANGMUIR,      [PMID:36288509] [10.1021/acs.langmuir.2c01881]
2. Tong Beibei, Shi Longfei, Liu Xiaohong.  (2022)  Sol–Gel Synthesis and Photocatalytic Activity of Graphene Oxide/ZnFe2O4-Based Composite Photocatalysts.  Frontiers in Materials,      [PMID:] [10.3389/fmats.2022.934759]
3. Ruan Chongyan, Wang Xijun, Wang Chaojie, Zheng Lirong, Li Lin, Lin Jian, Liu Xiaoyan, Li Fanxing, Wang Xiaodong.  (2022)  Selective catalytic oxidation of ammonia to nitric oxide via chemical looping.  Nature Communications,  13  (1): (1-12).  [PMID:35132054] [10.1038/s41467-022-28370-0]
4. Qianchun Zhang, Yan Wang, Qin Zhou, Yafei Chen, Yuguo Zheng, Shan Tang, Yuxian Zhao, Li Jiang.  (2021)  Highly efficient cataluminescence gas sensor based on nanosized h-BN for trace acetylacetone detection.  MEASUREMENT SCIENCE and TECHNOLOGY,  32  (9): (095114).  [PMID:] [10.1088/1361-6501/abf95b]
5. Yang Cao, Xianyu Lei, Qianlin Chen, Chao Kang, Wenxue Li, Baojun Liu.  (2018)  Enhanced photocatalytic degradation of tetracycline hydrochloride by novel porous hollow cube ZnFe2O4.  JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY A-CHEMISTRY,      [PMID:] [10.1016/j.jphotochem.2018.07.023]
6. Yida Lu, Yiping Feng, Fengliang Wang, Xuegang Zou, Zhi-Feng Chen, Ping Chen, Haijin Liu, Yuehan Su, Qianxin Zhang, Guoguang Liu.  (2017)  Facile hydrothermal synthesis of carbon dots (CDs) doped ZnFe2O4/TiO2 hybrid materials with high photocatalytic activity.  JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY A-CHEMISTRY,      [PMID:] [10.1016/j.jphotochem.2017.10.049]
7. Z.L. Zhang, M. Wan, Y.L. Mao.  (2012)  Enhanced photovoltaic effect of TiO2-based composite ZnFe2O4/TiO2.  JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY A-CHEMISTRY,      [PMID:] [10.1016/j.jphotochem.2012.02.009]
8. Fan Sun, Xueli Xing, Chunyang Zhang, Jinrui Zhang, Hui Hong.  (2024)  Enhanced Photocatalytic CO2 Reduction Performance via Photothermal–Magnetic Synergistic Effects for Solar Fuel Production.  ACS Sustainable Chemistry & Engineering,      [PMID:] [10.1021/acssuschemeng.3c07919]
9. Shengbo Sang, Qiuyun Tan, Qian Chai, Jiaolin Jiang, Kaile Wu, Pengli Xiao, Dong Zhao, Xing Guo, Zhuoqing Yang, Xiushan Dong, Yang Ge.  (2024)  Magneto-Mechanical Coupling Study of Magnetorheological Elastomer Thin Films for Sensitivity Enhancement.  ACS Sensors,      [PMID:38183297] [10.1021/acssensors.3c02171]
10. Guosheng Li, Yu Ding, Xiaohan Li, Kunhong Li, Xinrui Yin, Liang Zhao, Shenyong Ren, Chunming Xu, Baojian Shen.  (2024)  Non-equilibrium electronic structure of Fe-based bulk catalysts: Dual-channel electron transfer behavior among Fe, Zn, and P species and its impact on hydrodesulfurization reaction pathway.  FUEL,      [PMID:] [10.1016/j.fuel.2024.130923]
11. Qianchun Zhang, Qin Zhou, Yan Wang, Yun Wu, Li Jiang, Yuguo Zheng, Junyi Liang.  (2020)  The development of a simple yet excellent cataluminescence sensor based on nano-Dy2O3 for the rapid monitoring of cyclopentanone.  MEASUREMENT SCIENCE and TECHNOLOGY,  31  (9): (095102).  [PMID:] [10.1088/1361-6501/ab8e6b]
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