Lithium titanate - 99% trace metals basis, high purity , CAS No.12031-82-2

  • ≥99% metals basis
Item Number
L302594
Grouped product items
SKUSizeAvailabilityPrice Qty
L302594-100g
100g
In stock
$93.90
L302594-500g
500g
Available within 4-8 weeks(?)
Items will be manufactured post-order and can take 4-8 weeks. Thank you for your patience!
$420.90

Basic Description

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

Lithium titanate (LTO) can be used as an anode material, which shows an ion conductivity of 10−3 Scm−1 at room temperature. It can also be used as an alternative to conventional graphite materials. LTO can further be used in the fabrication of high-performance lithium-ion batteries for electric vehicles (EVs).

Names and Identifiers

Molecular Weight 109.75

Certificates

Certificate of Analysis(COA)

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10 results found

Lot NumberCertificate TypeDateItem
C2208501Certificate of AnalysisDec 06, 2024 L302594
C2208502Certificate of AnalysisDec 06, 2024 L302594
C2125249Certificate of AnalysisJan 02, 2024 L302594
C2125250Certificate of AnalysisJan 02, 2024 L302594
L2215597Certificate of AnalysisNov 14, 2022 L302594
L2215804Certificate of AnalysisNov 14, 2022 L302594
L2215805Certificate of AnalysisNov 14, 2022 L302594
L2215806Certificate of AnalysisNov 14, 2022 L302594
B2309089Certificate of AnalysisFeb 11, 2022 L302594
C2208459Certificate of AnalysisFeb 11, 2022 L302594

Chemical and Physical Properties

SolubilityInsoluble in water
Melt Point(°C)1520-1564°

Related Documents

Citations of This Product

1. Jing Kuang, Zhi-Yong Rao, Di-Wei Zheng, Dong Kuang, Qian-Xiao Huang, Ting Pan, Hao Li, Xuan Zeng, Xian-Zheng Zhang.  (2023)  Nanoparticles Hitchhike on Monocytes for Glioblastoma Treatment after Low-Dose Radiotherapy.  ACS Nano,  17  (14): (13333–13347).  [PMID:37404077] [10.1021/acsnano.3c01428]
2. X.C. Han, H.J. Xu, W.S. Hua.  (2023)  Decomposition performance and kinetics analysis of magnesium hydroxide regulated with C/N/Ti/Si additives for thermochemical heat storage.  APPLIED ENERGY,  344  (121322).  [PMID:] [10.1016/j.apenergy.2023.121322]
3. Qihan Meng, Lei Wang, Fei Chen, Qingfei Hao, Xudong Sun.  (2023)  Preparation of Ramsdellite-type Li2Ti3O7 hollow microspheres with high tap density by flame melting method as anode of Li-ion battery.  MATERIALS RESEARCH BULLETIN,  161  (112166).  [PMID:] [10.1016/j.materresbull.2023.112166]
4. Saisai Li, Yun Huang, Wenhao Ren, Xing Li, Mingshan Wang, Haijun Cao.  (2021)  Stabilize lithium metal anode through in-situ forming a multi-component composite protective layer.  CHEMICAL ENGINEERING JOURNAL,  422  (129911).  [PMID:] [10.1016/j.cej.2021.129911]

References

1. Jing Kuang, Zhi-Yong Rao, Di-Wei Zheng, Dong Kuang, Qian-Xiao Huang, Ting Pan, Hao Li, Xuan Zeng, Xian-Zheng Zhang.  (2023)  Nanoparticles Hitchhike on Monocytes for Glioblastoma Treatment after Low-Dose Radiotherapy.  ACS Nano,  17  (14): (13333–13347).  [PMID:37404077] [10.1021/acsnano.3c01428]
2. X.C. Han, H.J. Xu, W.S. Hua.  (2023)  Decomposition performance and kinetics analysis of magnesium hydroxide regulated with C/N/Ti/Si additives for thermochemical heat storage.  APPLIED ENERGY,  344  (121322).  [PMID:] [10.1016/j.apenergy.2023.121322]
3. Qihan Meng, Lei Wang, Fei Chen, Qingfei Hao, Xudong Sun.  (2023)  Preparation of Ramsdellite-type Li2Ti3O7 hollow microspheres with high tap density by flame melting method as anode of Li-ion battery.  MATERIALS RESEARCH BULLETIN,  161  (112166).  [PMID:] [10.1016/j.materresbull.2023.112166]
4. Saisai Li, Yun Huang, Wenhao Ren, Xing Li, Mingshan Wang, Haijun Cao.  (2021)  Stabilize lithium metal anode through in-situ forming a multi-component composite protective layer.  CHEMICAL ENGINEERING JOURNAL,  422  (129911).  [PMID:] [10.1016/j.cej.2021.129911]

Solution Calculators