CADMIUM POTASSIUM CYANIDE

CAS 14402-75-6 MFCD00049653

化学结构图

14402-75-6
SMILES: [K+].[K+].N#C[Cd-2](C#N)(C#N)C#N

化学属性

Mol. FormulaC4CdN4.2K
Mol. Weight294.678

别名和识别编码

Chemical NameCADMIUM POTASSIUM CYANIDE
Synonym Cadmate(2-), tetrakis[cyano-C]-, dipotassium, (T-4)- Potassium tetracyanocadmate(II) Kalium-tetracyanocadmiat Dipotassium tetracyanocadmate cadmium dipotassium tetracyanide Cadmate(2-), tetrakis(cyano-C)-, dipotassium, (T-4)- Cadmate(2-), tetrakis(cyano-kappaC)-, dipotassium, (T-4)- Tetrakis(cyano-C)cadmat(2-) Dikalium-Salz (T-4)- Cadmium potassium cyanide
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分类

  • {uni_hamburg} no charge; metal-organic; 3fragments; ionic

相关文献及参考

  • Short: III/20a Title: Nuclear Quadrupole Resonance Spectroscopy Data: Nuclei D ... Cl Author: Chihara, H.; Nakamura, N. Editor: Hellwege, K.-H.; Hellwege, A.M. Source: Landolt-Börnstein, New Series Volume: III/20a Year: 1988 Keyword: NQR ISBN: 3-540-18161-X ISBN: 978-3-540-18161-3 Internet Resource: DOI:10.1007/b31153 RefComment: IX,677 pages. Hardcover Abstract: Nuclear Quadrupole Resonance Spectroscopy has become a standard method for structural research in molecular and solid state physics as well as for different branches of chemistry. The volumes cover data for more than 8,000 substances in the solid state. Data for free molecules have been published in volumes II/14 and II/15 of the New Series. The tables are arranged according to the atomic number of the elements.
  • Short: III/35D5 Title: Nuclear Magnetic Resonance (NMR) Data: Chemical Shifts for Carbon-13, Part 5: Organometallic Compounds Author: Mikhova, Bozhana Editor: Gupta, R.R.; Lechner, M.D. Source: Landolt-Börnstein, New Series Volume: III/35D5 Year: 2008 Keyword: Carbon-13; chemical shift; magnetic properties of nuclei; nuclear magnetic resonance data ISBN: 978-3-540-74188-6 (print) ISBN: 978-3-540-74189-3 (electronic) Internet Resource: DOI:10.1007/978-3-540-74189-3 RefComment: VIII, 241 p., Hardcover RefComment: Written for Scientists and engineers in the fields of physics, chemistry and physical chemistry who intend to use NMR to study the structure and the binding of molecules Abstract: Nuclear Magnetic Resonance (NMR) is based on the fact that certain nuclei exhibit a magnetic moment, oriented by a magnetic field, and absorb characteristic frequencies in the radiofrequency part of the spectrum. The spectral lines of the nuclei are highly influenced by the chemical environment i.e. the structure and interaction of the molecules. NMR is now the leading technique and a powerful tool for the investigation of the structure and interaction of molecules. The present Landolt

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