Cyclohexylamines
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Filtered Search Results
Sigma Aldrich N,N-Dimethylcyclohexylamine
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| Boiling Point | 158°C to 159°C (lit.) |
|---|---|
| Percent Purity | 99% |
| Linear Formula | C6H11N(CH3)2 |
| CAS | 98-94-2 |
| Molecular Weight (g/mol) | 127.23 |
| MDL Number | MFCD00003844 |
| Refractive Index | n20/D 1.454 (literature) |
| Synonym | Cyclohexyldimethylamine; Dimethylaminocyclohexane |
| RTECS Number | GX1198000 |
| Recommended Storage | Room Temperature |
| Molecular Formula | C8H17N |
| EINECS Number | 202-715-5 |
| Density | 0.849 g/mL (at 25°C (literature)) |
Sigma Aldrich N-Ethylcyclohexylamine
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| CAS | 5459-93-8 |
|---|
Sigma Aldrich 1,2-Diaminocyclohexane, mixture of cis and trans
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| Boiling Point | 92°C to 93°C (18 mmHg) |
|---|---|
| Percent Purity | 99% |
| Linear Formula | C6H10(NH2)2 |
| CAS | 694-83-7 |
| Molecular Weight (g/mol) | 114.19 |
| MDL Number | MFCD00001491 |
| Refractive Index | n20/D 1.49 (literature) |
| Synonym | 1,2-Cyclohexanediamine; DHC 99 |
| Recommended Storage | Room Temperature |
| Molecular Formula | C6H14N2 |
| EINECS Number | 211-776-7 |
| Density | 0.931 g/mL (at 25°C (literature)) |
Sigma Aldrich Dicyclohexylamine
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| Boiling Point | 117°C to 120°C (10 mmHg), 256°C (lit.) |
|---|---|
| Percent Purity | 99% |
| Linear Formula | (C6H11)2 NH |
| CAS | 101-83-7 |
| Molecular Weight (g/mol) | 181.32 |
| MDL Number | MFCD00011658 |
| Refractive Index | n20/D 1.484 (literature) |
| RTECS Number | HY4025000 |
| Recommended Storage | Room Temperature |
| Molecular Formula | C12H23N |
| EINECS Number | 202-980-7 |
| Density | 0.912 g/mL (at 20°C (literature)) |
| Melting Point | -2°C (lit.) |
Sigma Aldrich Cyclohexylamine
MilliporeSigma Sigma Organics products encompass a wide range of quality reagents, solvents, catalysts, and building blocks for organic synthesis. From benchtop discovery to process development and scale-up, Sigma Organics solutions are built to meet the needs of synthetic chemists.
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| Boiling Point | 134°C (lit.) |
|---|---|
| Linear Formula | C6H11NH2 |
| Molecular Weight (g/mol) | 99.17 |
| Density | 0.867 g/mL (at 25°C (literature)) |
| Percent Purity | ≥99.9% |
| CAS | 108-91-8 |
| MDL Number | MFCD00001486 |
| Refractive Index | n20/D 1.459 (literature) |
| Synonym | Aminocyclohexane |
| RTECS Number | GX0700000 |
| Recommended Storage | Room Temperature |
| Molecular Formula | C6H13N |
| EINECS Number | 203-629-0 |
| Melting Point | -17°C (lit.) |
Sigma Aldrich 2-tert-Butoxymethylphenylboronic acid
MilliporeSigma Sigma Organics products encompass a wide range of quality reagents, solvents, catalysts, and building blocks for organic synthesis. From benchtop discovery to process development and scale-up, Sigma Organics solutions are built to meet the needs of synthetic chemists.
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Sigma Aldrich trans-N,N'-Dimethylcyclohexane-1,2-diamine
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| Boiling Point | 78°C to 80°C (18 mmHg) |
|---|---|
| Percent Purity | 97% |
| Linear Formula | C8H18N2 |
| CAS | 67579-81-1 |
| Molecular Weight (g/mol) | 142.24 |
| MDL Number | MFCD03001702 |
| Refractive Index | n20/D 1.472 (literature) |
| Recommended Storage | Room Temperature |
| Molecular Formula | C8H18N2 |
| Density | 0.902 g/mL (at 25°C (literature)) |
Sigma Aldrich 1-Ethynylpyrene
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| CAS | 34993-56-1 |
|---|
Sigma Aldrich 1-Phenylsemicarbazide
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| CAS | 103-03-7 |
|---|
Sigma Aldrich 4-Methylcyclohexylamine, mixture of cis and trans
MilliporeSigma Sigma Organics products encompass a wide range of quality reagents, solvents, catalysts, and building blocks for organic synthesis. From benchtop discovery to process development and scale-up, Sigma Organics solutions are built to meet the needs of synthetic chemists.
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| CAS | 6321-23-9 |
|---|
Medchemexpress LLC Phosphoenolpyruvic acid potassium-13C2 | 201996-39-6 | 97.0% | 208.12 | 1 MG
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Phosphoenolpyruvic acid (potassium)-13C2 is the 13C labeled version of Phosphoenolpyruvic acid potassium. This compound is a glycolysis metabolite that contains a high-energy phosphate group. It participates in both glycolysis and gluconeogenesis, serving as an energy source to generate ATP under conditions of limited energy. Additionally, Phosphoenolpyruvic acid potassium has demonstrated cytoprotective and anti-oxidative properties.
- 13C labeled compound, useful as a tracer.
- Can be utilized as an internal standard for quantitative analysis using methods like NMR, GC-MS, or LC-MS.
- Involved in glycolysis and gluconeogenesis.
- Acts as an energy source for ATP production in energy-limited conditions.
- Exhibits cytoprotective properties.
- Shows anti-oxidative properties.
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eMolecules ChemScene / (1S2R)-1-((tert-Butoxycarbonyl)amino)-2-vinylcyclopropanecarboxylic acid / 1g / 536831138 / CS-B0184 / 0.000 / 259214-55-6 / MFCD06795884 / 227.260 / C11H17NO4
ChemScene / (1S2R)-1-((tert-Butoxycarbonyl)amino)-2-vinylcyclopropanecarboxylic acid / 1g / 536831138 / CS-B0184 / 0.000 / 259214-55-6 / MFCD06795884 / 227.260 / C11H17NO4
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Selleck Chemical LLC (1R.2R)-trans-N-Boc-1.2-cyclohexanediamine S3896-25mg
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(1R 2R)-trans-N-Boc-1 2-cyclohexanediamine is an intermediate in organic synthesis
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eMolecules (1S,2R)-1-PHENYL-2-PYRROLIDIN-1-YL-PROPAN-1-OL | 56571-92-7 | MFCD02093492 | 25g
AstaTech | (1S,2R)-1-PHENYL-2-PYRROLIDIN-1-YL-PROPAN-1-OL | 25g | 112528723 | 65114 | 97.000 | 56571-92-7 | MFCD02093492 | 205.301 | C13H19NO
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Medchemexpress LLC Phosphoenolpyruvic acid cyclohexylammonium salt | 10526-80-4 | 98.0% | 267.22 | 500 MG
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Phosphoenolpyruvic acid (Phosphoenolpyruvate) cyclohexylammonium salt is a glycolysis metabolite with a high-energy phosphate group. It is involved in glycolysis and gluconeogenesis, and used as an energy source to produce ATP under energy-limited conditions. This compound also exhibits cytoprotective and anti-oxidative properties. It is for research use only.
- Glycolysis metabolite with a high-energy phosphate group
- Involved in glycolysis and gluconeogenesis
- Used as an energy source to produce ATP under energy-limited conditions
- Exhibits cytoprotective and anti-oxidative properties
- Significantly reduces the decrease in cell viability induced by hydrogen peroxide
- Reduces H2O2-stimulated increase in intracellular reactive oxygen species
- Demonstrates scavenging potential against hydroxyl radicals
- Attenuates cell injury induced by 2-Deoxy-D-glucose
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