1) n-Octyldimethylchlorosilane
正辛基化二甲基化氯化硅烷
2) chlorodimethyloctyl-silane
正辛基化二甲基化氯化硅烷
3) chlorodimethyloctylsilane
正辛基化二甲基化氯化硅烷
4) octanol
正辛醇
1.
Effects of adding octanol or isooctylal on absorption of ammonia in water or dilute sulfuric acid and its surface tension were investigated in a lab scale absorption tower.
采用旋流板式塔,考察了在吸收剂中添加正辛醇或异辛醇前后氨的气液传质性能。
2.
Bromooctane was synthesized from potassium bromide(by-product of synthesizing 2-hydroxy-4-octyloxybenzophenone) and n-octanol using concentrated sulfuric acid as a catalyst.
以生产2-羟基-4-正辛氧基二苯甲酮的副产物溴化钾和正辛醇为原料,浓硫酸为催化剂,合成了溴代正辛烷。
3.
Using n-octanol/water distribution coefficients(Kow) of 367 substituted benzene derivatives from literature,22 group values and 7 correction factors were calculated by regression with least square method.
利用367种取代苯类化合物已测定的正辛醇/水分配系数(Kow),通过最小二乘法回归优化得到22个基团值和7个校正因子。
5) n-Octane
正辛烷
1.
Liquid-Liquid Equilibrium of Quaternary System 1,2,4-Trimethylbenzene-n-octane-(sulfolane and N-formylmorpholine);
偏三甲苯-正辛烷-(环丁砜+N-甲酰吗啉)液-液相平衡研究
2.
Isomeric performance of n-octane over NiMo/SAPO-11 catalyst;
NiMo/SAPO-11催化剂上正辛烷的异构化性能
3.
Study of hydrocracking of n-octane on Ni-Mo/Y-β catalyst;
Ni-Mo/Y-β催化正辛烷加氢裂化的研究
6) n-octylaldehyde
正辛醛
1.
2-heptyl-1,3-dioxolane was synthesized from n-octylaldehyde and ethylene glycol using by Fe2(SO4)3/SiO2 as catalyst.
以正辛醛和乙二醇为原料,以硅胶负载硫酸铁[Fe2(SO4)3/SiO2]为催化剂,合成了2-庚基-1,3-二噁戊烷,考察了醛醇摩尔配比、反应时间、催化剂用量及其稳定性对产率的影响。
参考词条
补充资料:正辛基化二甲基化氯化硅烷
CAS:18162-84-0
分子式:C10H23ClSi
分子质量:206.83
沸点:222-225℃
中文名称:正辛基化二甲基化氯化硅烷
英文名称:n-Octyldimethylchlorosilane
chlorodimethyloctyl-silane
chlorodimethyloctylsilane
chloro-dimethyl-octyl-silane
分子式:C10H23ClSi
分子质量:206.83
沸点:222-225℃
中文名称:正辛基化二甲基化氯化硅烷
英文名称:n-Octyldimethylchlorosilane
chlorodimethyloctyl-silane
chlorodimethyloctylsilane
chloro-dimethyl-octyl-silane
说明:补充资料仅用于学习参考,请勿用于其它任何用途。