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Merck

LCL30

Lithium chloride solution

2 M in ethanol

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About This Item

Fórmula lineal:
LiCl
Número CAS:
Peso molecular:
42.39
NACRES:
NA.24
PubChem Substance ID:
UNSPSC Code:
41116107
MDL number:

Nombre del producto

Lithium chloride solution, 2 M in ethanol

InChI

1S/ClH.Li/h1H;/q;+1/p-1

SMILES string

[Li+].[Cl-]

InChI key

KWGKDLIKAYFUFQ-UHFFFAOYSA-M

concentration

2 M in ethanol

application(s)

cleaning products
cosmetics
flavors and fragrances
food and beverages
personal care

format

single component solution

storage temp.

2-8°C

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Application

Lithium chloride may be used as a salt precursor for the preparation of stock solution of lithium for the determination of lithium ions in environmental water samples by ion chromatography equipped with a high-capacity cation-exchange column. It may be used to generate lithium adducts of neutral carbohydrates present in food and beverage samples and plants so as to increase the sensitivity of detection for quadrupole mass spectrometry analysis (MS) with electrospray ionization (ESI) post their separation using anion exchange chromatography.

pictograms

FlameExclamation mark

signalword

Danger

hcodes

Hazard Classifications

Eye Irrit. 2 - Flam. Liq. 2

Clase de almacenamiento

3 - Flammable liquids

wgk

WGK 1

flash_point_f

57.2 °F

flash_point_c

14 °C


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Analysis of carbohydrates in plants by high-performance anion-exchange chromatography coupled with electrospray mass spectrometry
Guignard C, et al.
Journal of Chromatography A, 1085(1), 137-142 (2005)
Analysis of carbohydrates by anion exchange chromatography and mass spectrometry
Bruggink C, et al.
Journal of Chromatography A, 1085(1), 104-109 (2005)
Determination of inorganic cations and ammonium in environmental waters by ion chromatography with a high-capacity cation-exchange column
Thomas DH, et al.
Journal of Chromatography A, 956(1-2), 181-186 (2002)
Karla M Acevedo et al.
The Journal of biological chemistry, 289(16), 11007-11019 (2014-03-13)
Amyloid precursor protein (APP) undergoes post-translational modification, including O- and N-glycosylation, ubiquitination, and phosphorylation as it traffics through the secretory pathway. We have previously reported that copper promotes a change in the cellular localization of APP. We now report that
Na An et al.
Proceedings of the National Academy of Sciences of the United States of America, 111(40), 14325-14331 (2014-09-17)
Human telomeric DNA consists of tandem repeats of the sequence 5'-TTAGGG-3' that can fold into various G-quadruplexes, including the hybrid, basket, and propeller folds. In this report, we demonstrate use of the α-hemolysin ion channel to analyze these subtle topological

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