CAS No. 12045-01-1

Chemical Identifiers

Linear Formula Co2B
Pubchem CID N/A
MDL Number MFCD00146483
EC No. 235-722-7
IUPAC Name N/A
Beilstein/Reaxys No. N/A
SMILES N/A
InchI Identifier N/A
InchI Key N/A

Health & Safety Information

Signal Word Danger
Hazard Statements H315-H319-H335-H350
Hazard Codes T
Risk Codes 45-36/37/38
Safety Statements 53-22-26-36/37/39-45
RTECS Number N/A
Transport Information N/A
WGK Germany 3

Reseach

  • Axial Magnetic Anisotropy from Two Systems Fe2B and Co2B with Planar Anisotropy. Taufour V, Lamichhane T, Bud'Ko SL, Jesche A, Goldman AI, Dennis KW, McCallum RW, Antropov V, Canfield PC. InAPS Meeting Abstracts 2015 Mar.
  • A Co2B Mediated NaBH4 Reduction Protocol Applicable to a Selection of Functional Groups in Organic Synthesis. Lundevall FJ, Elumalai V, Drageset A, Totland C, Bjørsvik HR. European Journal of Organic Chemistry. 2018 Jul 13;2018(26):3416-25.
  • Co2B and Co Nanoparticles Immobilized on the N–B-Doped Carbon Derived from Nano-B4C for Efficient Catalysis of Oxygen Evolution, Hydrogen Evolution, and Oxygen Reduction Reactions. Liu X, Wang Y, Chen L, Chen P, Jia S, Zhang Y, Zhou S, Zang J. ACS Applied Materials & Interfaces. 2018 Oct 10;10(43):37067-78.
  • The influence of magnetocrystalline anisotropy on the magnetocaloric effect: A case study on Co2B. Fries M, Skokov KP, Karpenkov DY, Franco V, Ener S, Gutfleisch O. Applied Physics Letters. 2016 Dec 5;109(23):232406.
  • Amorphous Co2B grown on CoSe2 nanosheets as a hybrid catalyst for efficient overall water splitting in alkaline medium. Guo Y, Yao Z, Shang C, Wang E. ACS Applied Materials & Interfaces. 2017 Oct 31;9(45):39312-7.
  • Catalytic activity of nanoscale borides: Co2B and Ni7B3 in the liquid-phase hydrogenation of citral. Kalyon N, Hofmann K, Malter J, Lucas M, Claus P, Albert B. Journal of Catalysis. 2017 Aug 1;352:436-41.
  • Guan B, Fan L, Wu X, Wang P, Qiu Y, Wang M, Guo Z, Zhang N, Sun K. The facile synthesis and enhanced lithium–sulfur battery performance of an amorphous cobalt boride (Co2B)@ graphene composite cathode. Journal of Materials Chemistry A. 2018;6(47):24045-9.
  • Amorphous cobalt boride (Co2B) as a highly efficient nonprecious catalyst for electrochemical water splitting: oxygen and hydrogen evolution. Masa J, Weide P, Peeters D, Sinev I, Xia W, Sun Z, Somsen C, Muhler M, Schuhmann W. Advanced Energy Materials. 2016 Mar;6(6):1502313.
  • Cobalt boride catalysts for small-scale energy application. V. I. Simagina, A. M. Ozerova, O. V. Komova, G. V. Odegova, O. V. Netskina. Catalysis Today, Volume 242, Part A, 15 March 2015, Pages 221-229.
  • Contact fatigue performance of cobalt boride coatings. A. Meneses-Amador, D. Sandoval-Juárez, G. A. Rodríguez-Castro, D. Fernández-Valdés, J. L. Arciniega-Martínez. Surface and Coatings Technology, Volume 353, 15 November 2018, Pages 346-354.
  • Effect of the diffusion annealing process in the indentation properties of cobalt boride layer. A. M. Delgado-Brito, D. López-Suero, A. Ruiz-Ríos, R. A. García-León, I. Campos-Silva. Ceramics International, Volume 45, Issue 6, 15 April 2019, Pages 7767-7777.