You Searched For: Bis(tricyclohexylphosphine)palladium(0)


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Supplier: General Separation Technologies, Inc.
Description: Typical application: Alcohols II and III, Amines (low MW), Amines/ Alcohols/ Chlorides, Aromatics analysis: ASTM D16 analytes, Aromatics II, Blood alcohol, Bourbon, Branched alcohols, BTEX, Chlorinated Isooctane, Citronella java oil, Esters III, Ethylene oxide, FAME Standard I, FAMEs (Coca Butter), Fast styrene analysis, Flavor volatiles, Formaldehyde Underivatized, Fragrance allergens, Fragrance Reference Standard II, Free Fatty Acids, Free Organic Acids/C4-C5 Isomers, Impurities in Ethylbenzene, Impurities in mixed xylenes, Impurities in p-Xylene-ASTM D3798, Impurities in styrene, Industrial Solvent, Lavender Oil Spiked with Camphor, Monomers in latex paint by headspace, Mushroom aroma (Synthetic), Nitrosamines, Nutmeg oil, Organic acids, Phenols III, Polyunsaturated fatty acid methyl esters, Rapeseed oil, Rapid analysis of water in organic solvents, Solvents I, II, Spearmint oil, Strawberry syrup, Sulphur and Selenium in Garlic by Headspace, Tramanian lavander oil, Volatile organics, Volatile sulfurs.

Supplier: AGILENT TECHNOLOGIES, INC (CSD) CA
Description: A high-polarity PEG column with an extended temperature range for alcohols, solvents, benzenes, styrenes, and organic acids.

Catalog Number: (CA47729-678)
Supplier: Draeger
Description: This easy-to-use, portable system integrates a variety of substance-specific chemical sensing chips with a handheld reader.


Catalog Number: (89140-950)
Supplier: Brandtech
Description: For measurement of settleable/sedimenting solids in suspension.


Supplier: TCI America
Description: (stabilized with MEHQ)
CAS Number: 50325-49-0
MDL Number: MFCD08704374
Molecular Formula: C9H11N
Molecular Weight: 133.19
Purity/Analysis Method: >92.0% (GC)
Form: Clear Liquid
Color: Colorless
Boiling point (°C): 60
Specific Gravity (20/20): 0.98
Storage Temperature: <0°C
Supplier: CUBE BIOTECH
Description: AASTYs (Acrylic acid-co-styrenes) - like AASTY 6-45 - are highly alternating copolymers, well-suited for generating native lipid nanodiscs. They are a 2022 novel developed series for membrane protein solubilization & stabilization. AASTY 6-45 gets it's name from its molecular weight and Acrylic Acid : Styrene Ratio. These varying ratios of acrylic acid to styrene contribute to the hydrophilic properties of our AASTYs. In general lighter AASTYs, like 6-45 tend to be more aggressive, while heavier AASTYs, such as 11-45 show higher thermodynamic stability.

The exact composition of AASTY copolymers shows different extraction efficiency, depending on the lipid composition of the lipid bilayers being formulated into nanodiscs. As AASTY is made by controlled radical polymerization techniques, the dispersity of polymer molecular weight distribution is low, and the molecular weights are controlled. This means that excess AASTY copolymer can be removed by dialysis after nanodisc formation. Based on previous findings on SMA, it is the expectation that AASTY of different molecular weights will display different rates of nanodisc formation, extraction efficacy, and stability of resulting nanodiscs.

Every membrane protein solubilization needs to undergo a screening process before. The characteristic phospholipid environment surrounding the different membrane proteins in question performs differently well with each polymer. To support you in this process we offer a handy Screening Kit for AASTYs to test them all. Additionally, we recommend the two following publications if you would like to get further information: Smith et al. 2020 & Timcenko et al. 2022

Supplier: TCI America
Description: 2-Vinylphenylboronic Acid, CAS Number: 15016-42-9, Molecular Formula: C8H9BO2, MW: 147.97, Synonyms: Styrene-2-boronic Acid (contains varying amounts of Anhydride), 2-Vinylbenzeneboronic Acid (contains varying amounts of Anhydride), Size: 5G

Supplier: Thermo Scientific Chemicals
Description: Fieser: 5,355 6,302 9,256 11,276 13,152 15,178 18,194
Catalog Number: (CAAG5190-5122)
Supplier: AGILENT TECHNOLOGIES, INC (CSD) CA
Description: Syringe filters are often used to clarify small-volume samples before HPLC and ion chromatography.


Supplier: CUBE BIOTECH
Description: AASTYs (Acrylic acid-co-styrenes) - like AASTY 6-55 - are highly-alternating copolymers, well-suited for generating native lipid nanodiscs. They are a 2022 novel developed series for membrane protein solubilization & stabilization. AASTY 6-55 gets its name from its molecular weight and Acrylic Acid : Styrene Ratio. These varying ratios of acrylic acid to styrene contribute to the hydrophilic properties of our AASTYs. In general, lighter AASTYs, like 6-55 tend to be more aggressive, while heavier AASTYs, such as 11-45 show higher thermodynamic stability.

The exact composition of AASTY copolymers shows different extraction efficiency, depending on the lipid composition of the lipid bilayers being formulated into nanodiscs. As AASTY is made by controlled radical polymerization techniques, the dispersity of polymer molecular weight distribution is low, and the molecular weights are controlled. This means that excess AASTY copolymer can be removed by dialysis after nanodisc formation. Based on previous findings on SMA, it is the expectation that AASTY of different molecular weights will display different rates of nanodisc formation, extraction efficacy, and stability of resulting nanodiscs.

Every membrane protein solubilization needs to undergo a screening process before. The characteristic phospholipid environment surrounding the different membrane proteins in question performs differently well with each polymer. To support you in this process, we offer a handy Screening Kit for AASTYs to test them all. Additionally, we recommend the two following publications if you would like to get further information: Smith et al. 2020 & Timcenko et al. 2022

Supplier: CUBE BIOTECH
Description: AASTYs (Acrylic acid-co-styrenes) - like AASTY 11-55 - are highly alternating copolymers, well-suited for generating native lipid nanodiscs. They are a 2022 novel developed series for membrane protein solubilization & stabilization. AASTY 11-55 is named from its molecular weight and Acrylic Acid : Styrene Ratio. These varying ratios of acrylic acid to styrene contribute to the hydrophilic properties of our AASTYs. In general lighter AASTYs, like 6-45 tend to be more aggressive, while heavier AASTYs, such as 11-55 show higher thermodynamic stability.

The exact composition of AASTY copolymers shows different extraction efficiencies, depending on the lipid composition of the lipid bilayers being formulated into nanodiscs. As AASTY is made by controlled radical polymerization techniques, the dispersity of polymer molecular weight distribution is low, and the molecular weights are controlled. This means that excess AASTY copolymer can be removed by dialysis after nanodisc formation. Based on previous findings on SMA, it is the expectation that AASTY of different molecular weights will display different rates of nanodisc formation, extraction efficacy, and stability of resulting nanodiscs.

Every membrane protein solubilization needs to undergo a screening process before. The characteristic phospholipid environment surrounding the different membrane proteins in question performs differently well with each polymer. To support you in this process we offer a handy Screening Kit for AASTYs to test them all. Additionally, we recommend the two following publications if you would like to get further information: Smith et al. 2020 & Timcenko et al. 2022

Supplier: TCI America
Description: 3-Vinylphenylboronic Acid, CAS Number: 15016-43-0, Molecular Formula: C8H9BO2, MW: 147.97, Synonyms: Styrene-3-boronic Acid (contains varying amounts of Anhydride), 3-Vinylbenzeneboronic Acid (contains varying amounts of Anhydride), Size: 5G

Supplier: General Separation Technologies, Inc.
Description: Typical Application: 5% Fragrance Materials Association Mix, Acrylate Impurities II, Antidepressants (Basic Drugs- Uncategories), Antiepileptics, Barbiturates (Acidic/Neutral Drugs-Underivatized), Fentanyls, Organochlorine Pesticides III, Phenoxy Acid Herbicides, Styrene Impurities, TMS derivatized Sugars, Triazine Herbicides I, VOCs in Packaging materials.

Supplier: Corning
Description: Cell culture microplates are sterile and nonpyrogenic. Lids available where indicated.
Supplier: General Separation Technologies, Inc.
Description: Typical Application: Alcohols II and III, Amines (low MW), Amines/ Alcohols/ Chlorides, Aromatics Analysis: ASTM D16 Analytes, Aromatics II, Blood Alcohol, Bourbon, Branched alcohols, BTEX, Chlorinated Isooctane, Citronella Java Oil, Esters III, Ethylene Oxide, FAME Standard I, FAMEs (Coca Butter), Fast Styrene Analysis, Flavor Volatiles, Formaldehyde Underivatized, Fragrance Allergens, Fragrance Reference Standard II, Free Fatty Acids, Free Organic Acids/C4-C5 Isomers, Impurities in Ethylbenzene, Impurities in Mixed Xylenes, Impurities in p-Xylene-ASTM D3798, Impurities in Styrene, Industrial Solvent, Lavender Oil Spiked with Camphor, Monomers in Latex Paint by Headspace, Mushroom Aroma (Synthetic), Nitrosamines, Nutmeg Oil, Organic Acids, Phenols III, Polyunsaturated Fatty Acid Methyl Esters, Rapeseed Oil, Rapid Analysis of Water in Organic Solvents, Solvents I, II, Spearmint Oil, Strawberry Syrup, Sulfur and Selenium in Garlic by Headspace, Tramanian Lavander Oil, Volatile Organics, Volatile Sulphurs.

Supplier: General Separation Technologies, Inc.
Description: Typical Application: 5% Fragrance Materials Association Mix, Acrylate Impurities II, Antidepressants (Basic Drugs- Uncategories), Antiepileptics, Barbiturates (Acidic/Neutral Drugs-Underivatized), Fentanyls, Organochlorine Pesticides III, Phenoxy Acid Herbicides, Styrene Impurities, TMS derivatized Sugars, Triazine Herbicides I, VOCs in Packaging materials.

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Stock for this item is limited, but may be available in a warehouse close to you. Please make sure that you are logged in to the site so that available stock can be displayed. If the call is still displayed and you need assistance, please call us at 1-800-932-5000.
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