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Molybdenum carbide - 99% trace metals basis, high purity , CAS No.12069-89-5

  • ≥99% metals basis
In stock
Item Number
M302623
Grouped product items
SKUSizeAvailabilityPrice Qty
M302623-1g
1g
5
$9.90
M302623-5g
5g
3
$15.90
M302623-25g
25g
3
$27.90
M302623-100g
100g
2
$83.90
M302623-500g
500g
1
$330.90

Discover Molybdenum carbide by Aladdin Scientific in 99% trace metals basis for only $9.90. Available - in Ligands at Aladdin Scientific. Tags: .

Basic Description

Specifications & Purity≥99% metals basis
Storage TempRoom temperature,Desiccated
Shipped InNormal
Product Description

Product Application:

Molybdenum carbide is used in the production of solid molybdenum carbide grades of hard metal in the manufacture of mixed crystal. It used as coating material.

Names and Identifiers

Molecular Weight 203.89

Certificates(CoA,COO,BSE/TSE and Analysis Chart)

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.

13 results found

Lot NumberCertificate TypeDateItem
I2222061Certificate of AnalysisJul 10, 2025 M302623
E2312274Certificate of AnalysisAug 11, 2022 M302623
A2329064Certificate of AnalysisAug 11, 2022 M302623
K2328038Certificate of AnalysisAug 11, 2022 M302623
J2423249Certificate of AnalysisAug 11, 2022 M302623
I2222039Certificate of AnalysisAug 11, 2022 M302623
I2222058Certificate of AnalysisAug 11, 2022 M302623
I2222059Certificate of AnalysisAug 11, 2022 M302623
I2222060Certificate of AnalysisAug 11, 2022 M302623
L2420523Certificate of AnalysisAug 11, 2022 M302623
D2324159Certificate of AnalysisAug 11, 2022 M302623
C2310614Certificate of AnalysisAug 11, 2022 M302623
K2316071Certificate of AnalysisAug 11, 2022 M302623

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Chemical and Physical Properties

SolubilityInsoluble in water.
Melt Point(°C)2687℃

Specifications

Purity99-100(%)
X-Ray DiffractionConforms to Structure
ICP: Confirms Mo ComponentConfirmed

Citations of This Product

1. Niandu Wu, Jiawei Liu, Wenhua Zhao, Jun Du, Wei Zhong.  (2023)  Molybdenum carbide MXene embedded with nickel sulfide clusters as an efficient electrocatalyst for hydrogen evolution reaction.  INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,  48  (17526).  [PMID:] [10.1016/j.ijhydene.2023.01.286]
2. Hao Cheng, Xinyan Li, Chao Huang, Jian Zhu, Ping Wang, Heng Cao, Chongling Feng, Dingxun Ling, Hao Liu, Min Cheng.  (2023)  Accelerated Fe(III)/Fe(II) cycle for rapid elimination of Rhodamine B by a novel Mo2C co-catalytic Fe2+/H2O2 system.  Journal of Cleaner Production,  393  (136354).  [PMID:] [10.1016/j.jclepro.2023.136354]
3. Tingting Liu, Heng Liu, Xiuju Wu, Yanli Niu, Bomin Feng, Wei Li, Weihua Hu, Chang Ming Li.  (2018)  Molybdenum carbide/phosphide hybrid nanoparticles embedded P, N co-doped carbon nanofibers for highly efficient hydrogen production in acidic, alkaline solution and seawater.  ELECTROCHIMICA ACTA,  281  (710).  [PMID:] [10.1016/j.electacta.2018.06.018]
4. Fei Wang, Yuliang Zhang, Mengyang Cong, Ting Shu, Ying Qin, Yanhua Lei, Miranda Liu, Xiaobo Chen, Yi Lin, Zecheng Qian.  (2024)  Generic strategy to prepare PPy-based nanocomposites for efficient and stable interfacial solar desalination with excellent salt-rejecting performance.  SOLAR ENERGY MATERIALS AND SOLAR CELLS,  275  (113041).  [PMID:] [10.1016/j.solmat.2024.113041]
5. Miao Liu, Ying He, Ying-Ying Jiao, Ling Ding, Di An, Yang Yang, Qing-Qing Hao, Hui-Yong Chen, Qun-Xing Luo.  (2024)  Nature of Glucose Epimerization Catalyzed by Mo-Containing Bulk Catalysts in Aqueous Phase.  ACS Catalysis,  14  (19): (14895-14911).  [PMID:] [10.1021/acscatal.4c02893]
6. Zhang Luyao, Wang Li, Chen Junliang, Li Jinzhou, Huang Peng, Nie Xinming, Yang Jianping.  (2025)  Persulfate-Based Advanced Oxidation Reforming of Polyethylene Terephthalate Fiber into Formate via Singlet Oxygen Activation.  Advanced Fiber Materials,    (1-14).  [PMID:] [10.1007/s42765-025-00525-w]

References

1. Niandu Wu, Jiawei Liu, Wenhua Zhao, Jun Du, Wei Zhong.  (2023)  Molybdenum carbide MXene embedded with nickel sulfide clusters as an efficient electrocatalyst for hydrogen evolution reaction.  INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,  48  (17526).  [PMID:] [10.1016/j.ijhydene.2023.01.286]
2. Hao Cheng, Xinyan Li, Chao Huang, Jian Zhu, Ping Wang, Heng Cao, Chongling Feng, Dingxun Ling, Hao Liu, Min Cheng.  (2023)  Accelerated Fe(III)/Fe(II) cycle for rapid elimination of Rhodamine B by a novel Mo2C co-catalytic Fe2+/H2O2 system.  Journal of Cleaner Production,  393  (136354).  [PMID:] [10.1016/j.jclepro.2023.136354]
3. Tingting Liu, Heng Liu, Xiuju Wu, Yanli Niu, Bomin Feng, Wei Li, Weihua Hu, Chang Ming Li.  (2018)  Molybdenum carbide/phosphide hybrid nanoparticles embedded P, N co-doped carbon nanofibers for highly efficient hydrogen production in acidic, alkaline solution and seawater.  ELECTROCHIMICA ACTA,  281  (710).  [PMID:] [10.1016/j.electacta.2018.06.018]
4. Fei Wang, Yuliang Zhang, Mengyang Cong, Ting Shu, Ying Qin, Yanhua Lei, Miranda Liu, Xiaobo Chen, Yi Lin, Zecheng Qian.  (2024)  Generic strategy to prepare PPy-based nanocomposites for efficient and stable interfacial solar desalination with excellent salt-rejecting performance.  SOLAR ENERGY MATERIALS AND SOLAR CELLS,  275  (113041).  [PMID:] [10.1016/j.solmat.2024.113041]
5. Miao Liu, Ying He, Ying-Ying Jiao, Ling Ding, Di An, Yang Yang, Qing-Qing Hao, Hui-Yong Chen, Qun-Xing Luo.  (2024)  Nature of Glucose Epimerization Catalyzed by Mo-Containing Bulk Catalysts in Aqueous Phase.  ACS Catalysis,  14  (19): (14895-14911).  [PMID:] [10.1021/acscatal.4c02893]
6. Zhang Luyao, Wang Li, Chen Junliang, Li Jinzhou, Huang Peng, Nie Xinming, Yang Jianping.  (2025)  Persulfate-Based Advanced Oxidation Reforming of Polyethylene Terephthalate Fiber into Formate via Singlet Oxygen Activation.  Advanced Fiber Materials,    (1-14).  [PMID:] [10.1007/s42765-025-00525-w]

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