tert-Butyl Methyl Ether
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Sigma Aldrich 4-hydroxy-6-(trifluoromethoxy)quinoline-3-carboxylic 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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ABSOLUTE STANDARDS METHYL TERT-BUTYL ETHER
NC1972728 METHYL TERT-BUTYL ETHER
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Sigma Aldrich Fine Chemicals Biosciences tert Butyl methyl ether AC
tert-Butyl methyl ether (methyl tert-butyl ether MTBE) is a gasoline additive. Its oxidative degradation by propane-oxidizing bacterial strains has been tested. Kinetics of its heat-mediated biodegradation has been investigated under various reaction conditions. Its biodegradation followed a pseudo-first-order decay model and its pseudo-first-order rate constants were evaluated. Its extraction from water has been proposed by employing an organic polymeric compound Nafion. MTBE can be synthesized by acid-catalyzed reaction between methanol and isobutene. A study suggests that the addition of MTBE increases the number of active sites during polymerization of propene by stopped-flow method. This solvent meets ACS (American Chemical Society) specifications and can be used for processes requiring strict quality conditions such as analytical testing.
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Sigma Aldrich Fine Chemicals Biosciences tert Butyl methyl ether HP1L
tert-Butyl methyl ether is a gasoline additive. Its oxidative degradation by propane-oxidizing bacterial strains has been tested. Kinetics of its heat-assisted persulfate oxidation has been investigated at various pH temperature oxidant concentration and ionic strength levels. Its biodegradation followed a pseudo-first-order decay model and its pseudo-first-order rate constants were evaluated. MTBE can be synthesized by acid catalyzed reaction between methanol and isobutene. A study suggests that the addition of MTBE increases the number of active sites during polymerization of propene by stopped-flow method.
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Sigma Aldrich Fine Chemicals Biosciences tert Butyl methyl ether HP
tert-Butyl methyl ether is a gasoline additive. Its oxidative degradation by propane-oxidizing bacterial strains has been tested. Kinetics of its heat-assisted persulfate oxidation has been investigated at various pH temperature oxidant concentration and ionic strength levels. Its biodegradation followed a pseudo-first-order decay model and its pseudo-first-order rate constants were evaluated. MTBE can be synthesized by acid catalyzed reaction between methanol and isobutene. A study suggests that the addition of MTBE increases the number of active sites during polymerization of propene by stopped-flow method.
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Sigma Aldrich Fine Chemicals Biosciences tert-Butyl methyl ether | 1634-04-4 | MFCD00008812 | 4l
tert-Butyl methyl ether | 99.8% | 88.15 | 1634-04-4 | MFCD00008812 | 4l
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Sigma Aldrich Fine Chemicals Biosciences tert-Butyl methyl ether | 1634-04-4 | MFCD00008812 | 1l
tert-Butyl methyl ether | Purity: 99.8% | MW: 88.15 | 1634-04-4 | MFCD00008812 | 1l
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Sigma Aldrich Fine Chemicals Biosciences tert Butyl methyl ether HP
tert-Butyl methyl ether (MTBE) is a commonly used organic solvent. It can be synthesized by acid-catalyzed reaction between methanol and isobutene. It is an effective alternate to lead-containing additives for enhancing the octane rating of gasoline. The decomposition mechanism of MTBE by heat-assisted persulfate oxidation under different conditions has been reported. A study suggests that the addition of MTBE increases the number of active sites during polymerization of propene by the stopped-flow method.
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Sigma Aldrich Fine Chemicals Biosciences tert Butyl methyl ether HP
tert-Butyl methyl ether is a gasoline additive. Its oxidative degradation by propane-oxidizing bacterial strains has been tested. Kinetics of its heat-assisted persulfate oxidation has been investigated at various pH temperature oxidant concentration and ionic strength levels. Its biodegradation followed a pseudo-first-order decay model and its pseudo-first-order rate constants were evaluated. MTBE can be synthesized by acid catalyzed reaction between methanol and isobutene. A study suggests that the addition of MTBE increases the number of active sites during polymerization of propene by stopped-flow method.
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Sigma Aldrich Fine Chemicals Biosciences tert-Butyl methyl ether su1L
tert-Butyl methyl ether (methyl tert-butyl ether MTBE) is a gasoline additive. Its oxidative degradation by propane-oxidizing bacterial strains has been tested. Kinetic studies of its heat-assisted persulfate oxidation at various pH temperature oxidant concentration and ionic strength levels suggests that reaction exhibits a pseudo-first-order decay model.
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eMolecules 1217474-04-8 | (2R,4R)-1-TERT-BUTYL 2-METHYL 4-AMINOPYRROLIDINE-1,2-DICARBOXYLATE HCL | AstaTech | MFCD11042656 | 280.750 | C11H21ClN2O4 | 95.000 | Cl.COC(=O)[C@H]1C[C@@H](N)CN1C(=O)OC(C)(C)C | 0.25g | 402181363
(2R,4R)-1-TERT-BUTYL 2-METHYL 4-AMINOPYRROLIDINE-1,2-DICARBOXYLATE HCL | AstaTech | 1217474-04-8 | MFCD11042656 | 280.750 | C11H21ClN2O4 | 95.000 | Cl.COC(=O)[C@H]1C[C@@H](N)CN1C(=O)OC(C)(C)C | 0.25g | 402181363
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Aobchem Tert-butyl(2-fluorophenoxy)dimethylsilane | ≥97% | CAS 103438-89-7 | C12H19FOSi | 1g
Tert-butyl(2-fluorophenoxy)dimethylsilane | ≥97% | CAS 103438-89-7 | C12H19FOSi | 1g
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BLD PHARMATECH CO LIMITED tert-Butyl (1S,2S,5R)-2-((S)-1-hydroxyethyl)-3,8-diazabicyclo[3.2.1]octane-8-carboxylate, CAS Number: 2820537-22-0, 1g, Purity: 95%
tert-Butyl (1S,2S,5R)-2-((S)-1-hydroxyethyl)-3,8-diazabicyclo[3.2.1]octane-8-carboxylate, CAS Number: 2820537-22-0, 1g, Purity: 95%
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eMolecules 4188-69-6 | METHYL-1-PROPENYL ETHER | AstaTech | MFCD01861884 | 72.107 | C4H8O | 98.000 | CO\C=C\C | 0.25g | 785153248
METHYL-1-PROPENYL ETHER | AstaTech | 4188-69-6 | MFCD01861884 | 72.107 | C4H8O | 98.000 | CO\C=C\C | 0.25g | 785153248
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Cambridge Isotope Laboratories Diphenyl ether (D10 98%) 0 5 g
Diphenyl ether (D10 98%) 0 5 g
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