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Magnesium chloride hexahydrate
Applications
Crystallization grade Magnesium chloride hexahydrate for formulating screens or for optimization
Features
Preformulated and sterile filtered
Lot to lot consistency
Consistent with Hampton Research screens & kits
Quality and convenience
Description
Optimize reagents are preformulated macromolecular crystallization grade reagents designed specifically for the crystallization of proteins, peptides, and nucleic acids. Each Optimize solution is formulated using high purity salts, polymers, and buffers. Sterile filtered Optimize reagents are formulated at convenient, ready to use concentrations. Optimize reagents remove the guesswork and make the process of reproducing preliminary screening conditions and general optimization faster, easier, and more convenient. When using Optimize reagents, a scientist moves directly from the screen to the optimization with no time wasted searching for and formulating salts, buffers, and viscous polymers. Each Optimize reagent is supplied with a Certificate of Analysis as documentation of reagent quality and performance. Optimize buffer reagents are supplied with calibrated titration curves to make titration easy, fast, and accurate.

Magnesium chloride hexahydrate
Synonym: None
MgCl2 • 6H2O
Mr 203.30
CAS Number 7791-18-6
EC Number 2320946
RTECS OM2975000
Purity >99.0%
Measured pH range of 5.0 M Magnesium chloride hexahydrate: 3.4 - 4.2 at 25 degrees Celsius.
Measured pH range of 2.0 M Magnesium chloride hexahydrate: 4.8 - 6.0 at 25 degrees Celsius.

Al < 0.0005%
As < 0.00001%
Ba < 0.0005%
Bi < 0.0005%
Ca < 0.005%
Cd < 0.0005%
Co < 0.0005%
Cr < 0.0005%
Cu < 0.0005%
Fe < 0.0005%
K < 0.2%
Li < 0.0005%
Mn < 0.0005%
Mo < 0.0005%
N < 0.0002%
Na < 0.3%
Ni < 0.0005%
PO4 < 0.0005%
Pb < 0.0005%
SO4 < 0.005%
Sr < 0.0005%
Zn < 0.0005%

CAT NO NAME DESCRIPTION
HR2-559 Magnesium chloride hexahydrate - 2.0 M solution 100 ml
Price Quantity
$76.00
CAT NO NAME DESCRIPTION
HR2-803 Magnesium chloride hexahydrate - 5.0 M solution 200 ml
Price Quantity
$98.00
References
1.Structural and Functional Characterization of OmpF Porin Mutants Selected for Larger Pore Size. Lou, K-L; Saint, N; Prilipov, A; Rummel, G; Benson, SA; Rosenbusch, JP; Schirmer, T. J Biol Chem 271, 20669-20675, 1996.
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