如果按照规格使用和储存,则不会分解。避免接触氧化物。
请提供具体的合成制备方法和用途内容,以便进行进一步的润色。
中文名称 | 英文名称 | CAS号 | 化学式 | 分子量 |
---|---|---|---|---|
3-苯氧基丙酸 | 3-phenoxypropanoic acid | 7170-38-9 | C9H10O3 | 166.177 |
3-苯氧基-1-丙醇 | 3-phenoxypropanol | 6180-61-6 | C9H12O2 | 152.193 |
3-苯氧基丙腈 | 3-phenoxypropionitrile | 3055-86-5 | C9H9NO | 147.177 |
中文名称 | 英文名称 | CAS号 | 化学式 | 分子量 |
---|---|---|---|---|
3-苯氧基丙酸 | 3-phenoxypropanoic acid | 7170-38-9 | C9H10O3 | 166.177 |
3-苯氧基丙酰氯 | 3-phenoxypropyonic chloride | 28317-96-6 | C9H9ClO2 | 184.622 |
N-羟基-3-苯氧基丙酰胺 | 3-phenoxypropionylhydroxamic acid | 1016863-79-8 | C9H11NO3 | 181.191 |
3-苯氧基丙酰基 肼 | 3-phenoxypropionyl hydrazide | 95885-09-9 | C9H12N2O2 | 180.206 |
The catalytic hydroalkoxylation of α,β-unsaturated esters, nitriles, and ethers with aliphatic and aromatic alcohols over pollucite using thermal and microwave-assisted methods was investigated. To study the effect of the alcohol structures on the mechanism of the hydroalkoxylation reaction, different alcohols, such as methanol to butanol, cyclohexanol, phenol, and 2-ethylhexanol were used. The activities of pollucite, in contrast to other basic solids, were scarcely affected by the presence of air and moisture. The correlation between alcohol acidity and reaction activity is discussed. The prepared pollucite was characterized by X‐ray diffraction, volumetric nitrogen adsorption surface area analysis, and CO2 temperature‐programmed desorption. Scanning electron microscopy analysis revealed that the size of the modified nano catalyst particles was under 40 nm.
A series of 1,4-disubstituted semicarbazide and 4,4’-bis[1-substituted semicarbazide]diphenylmethane derivatives were synthesized to explore their antibacterial activity. New compounds were characterized by elemental analysis and spectroscopic data. In order to find the tautomeric equilibrium for the molecules energy calculations for each possible tautomeric form of model compound 2, and for the most antibacterially active compound 7 in the investigated series, were calculated for the gas phase at the RHF/SCF/6-31G** level of theory