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Diethylzinc | CAS:557-20-0
Diethylzinc
  • 名称:二乙基锌 | Diethylzinc
  • CAS号:557-20-0
  • 别名:
  • 分子式:C4H10Zn
  • 分子量:123.51
  • EINESC号:209-161-3

产品描述

物理化学性质

熔点 -39--28 ºC
水溶性 起反应 VIOLENTLY
沸点 118 ºC
闪点 -40 ºC
密度 0.726
折射率 1.498

安全数据

危险品标志 F;C;N
危险类别码 R11;R14;R17;R34;R48/20;R50/53;R6
安全说明书 S16;S26;S36/37/39;S45;S61;S8

SDS

来源 SDS样本
Alfa-Aesar 浏览或下载
Sigma-Aldrich 浏览或下载
Ereztech 浏览或下载
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Use of multivariate analysis for optimization of separation parameters and prediction of migration time, resolution, and resolution per unit time in micellar electrokinetic chromatography.Alicia A Williams et al.Electrophoresis, 27(21), 4127-4140 (2006-11-01) Sodium cholate aggregation and chiral recognition of the probe molecule (R,S)-1,1'-binaphthyl-2,2'-diylhydrogenphosphate (BNDHP) observed by 1H and 31P NMR spectroscopy.Christine M Hebling et al.Langmuir : the ACS journal of surfaces and colloids, 24(24), 13866-13874 (2008-12-05) Use of NMR binding interaction mapping techniques to examine interactions of chiral molecules with molecular micelles.Kevin F Morris et al.The journal of physical chemistry. B, 110(35), 17359-17369 (2006-09-01) Fluorescence anisotropy as a measure of chiral recognition.M E McCarroll et al.Journal of the American Chemical Society, 123(13), 3173-3174 (2001-07-18) Multivariate approach for the enantioselective analysis in micellar electrokinetic chromatography-mass spectrometry. I. Simultaneous optimization of binaphthyl derivatives in negative ion mode.Jun He et al.Journal of chromatography. A, 1216(5), 845-856 (2008-12-27) NMR characterization of 1,1'-binaphthyl-2,2'-diyl hydrogen phosphate binding to chiral molecular micelles.Stephanie A Kingsbury et al.Magnetic resonance in chemistry : MRC, 48(3), 184-191 (2010-01-06) Use of chiral amino acid ester-based ionic liquids as chiral selectors in CE.Ioannis J Stavrou et al.Electrophoresis, 34(4), 524-530 (2012-12-05) Chiral capillary electrophoresis: facts and fiction on the reproducibility of resolution with randomly substituted cyclodextrins.Ulrich Schmitt et al.Electrophoresis, 25(16), 2801-2807 (2004-09-08) Facile and efficient enantioselective Strecker reaction of ketimines by chiral sodium phosphate.Ke Shen et al.Chemistry (Weinheim an der Bergstrasse, Germany), 15(24), 6008-6014 (2009-05-07) Enantioseparation of atropisomeric 1,1'-binaphthyl-2,2'-diyl hydrogen phosphate in capillary electrophoresis by using di- and oligosaccharides as chiral selectors: di- and oligosaccharide chiral selectors in capillary electrophoresis.B Chankvetadze et al.Chirality, 10(1-2), 134-139 (1998-02-21) Chiral selectivity of guanosine media in capillary electrophoresis.Yingying Dong et al.Electrophoresis, 32(13), 1735-1741 (2011-06-28) Comparative study on the enantiomer separation of 1,1'-binaphthyl-2,2'diyl hydrogenphosphate and 1,1'-bi-2-naphthol by liquid chromatography and capillary electrophoresis using single and combined chiral selector systems.Anna Bielejewska et al.Journal of chromatography. A, 977(2), 225-237 (2002-11-29) Enantioseparation using selected polysaccharides as chiral buffer additives in capillary electrophoresis.B Chankvetadze et al.Journal of chromatography. A, 773(1-2), 331-338 (1997-06-27) Stacking and separation of enantiomers by acetonitrile-salt mixtures in micellar electrokinetic chromatography.Tom M H Choy et al.Electrophoresis, 24(18), 3116-3123 (2003-10-01) A comparison of ionic liquids to molecular organic solvents as additives for chiral separations in micellar electrokinetic chromatography.Simon M Mwongela et al.Journal of separation science, 30(9), 1334-1342 (2007-07-12) Optimization of 12 chiral analytes with 8 polymeric surfactants.Eugene Billiot et al.Journal of chromatographic science, 46(9), 757-763 (2008-11-15) Delta-cyclodextrin as novel chiral probe for enantiomeric separation by electromigration methods.Dorothee Wistuba et al.Electrophoresis, 27(21), 4359-4363 (2006-10-06) Comparison of alkylglycoside surfactants in enantioseparation by capillary electrophoresis.Y Mechref et al.Electrophoresis, 18(6), 912-918 (1997-06-01)
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Products currently covered by valid US Patents are offered for R&D use in accordance with 35 USC 271 +A13(1).

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