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乙氧基

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It was found that these ionic liquids possess the thermoregulated function of"mono-phase under low temperature, biphase under high temperature".

测定了不同乙氧基链长的上述离子液体在有机溶剂中的溶剂性能,找到了具有&室温均相,高温分相&的温控离子液体/有机溶剂液液双相体系。

To enable the fabrication of a thermally stable ultralow dielectric constant film, specific precursor materials are used, such as, silane derivatives, for instance, diethoxymethylsilane and organic molecules, for instance, bicycloheptadiene and cyclopentene oxide.

为了制造热稳定的超低介电常数膜,使用特殊的前体材料,如硅烷衍生物例如二乙氧基甲基硅烷和有机分子例如双环庚二烯和环戊烯氧化物。

However, we measured the vapour pressures of dipropyl ether (1) and 1-propyl alcohol (2) up to about the normal boiling point of the respective pure components, which are lower than the 2-ethoxyethanol (3) boiling point.

然而我们测得二丙醚(1)和1-丙醇(2)的蒸汽压分别达到了各自正常情况下的沸点,这比2-乙氧基乙醇(3)的沸点要低的多。

In order to carry out the separation of the azeotropic mixture dipropyl ether + 1-propyl alcohol by extractive distillation, we are studied the influence on the phase equilibria behavior four different solvent: 1-pentanol [2], butyl propionate [3], N,Ndimethylformamide [4] and 2-ethoxyethanol.

为了用萃取性蒸馏法分离二丙醚和1-丙醇组成的共沸混合物,我们正在研究4种不同溶剂对相平衡行为的影响:1-戊醇[2]、丙酸丁酯[3]、N,N-二甲基甲酰胺[4]和2-乙氧基乙醇。

As can be seen in Fig. 5, dipropyl ether will be recovered in the distillate using 1-pentanol, N,N-dimethylformamide and 2-ethoxyethanol as entrainers and butyl propionate is the only entrainer studied that inverts the volatility of the azeotropic mixture.

从图 5可以看出,使用1-戊醇、N,N-二甲基甲酰胺和2-乙氧基乙醇作为共溶剂时二丙醚将在馏分中回收,丙酸丁酯是唯一与共沸混合物挥发性相反的共溶剂。

Dipropyl ether will be recovered in the distillate using 1-pentanol.

使用1-戊醇。N.N-二甲基甲酰胺和2-乙氧基乙醇作为共溶剂时二丙醚将在馏分中回收。

A study on HPLC analysis of benzopyrene in grain;2. Induction of EROD activity was investigated by an in vitro assay based on benzopyrene and hexa chlorobenzene .

用7-乙氧基异叻唑酮-脱乙基酶检测的方法,研究了苯并芘和六氯苯对日本青鳉肝脏EROD酶的比活力的影响。

Water, Kaolin, Montmorillonite, Stearic Acid, Cetyl Alcohol, Glycereth-26, Glyceryl Stearate, Peg-100 Stearate, Aloe Barbadensis Leaf Juice, Triethanolamine, Titanium Dioxide, Menthyl Pca, Lauryl Pca, Fragrance, Diazolidinyl Urea, Propylene Glycol, Ethoxydiglycol, Methylparaben, Citric Acid, Panax Ginseng Root Extract, Zinc Pca, Copper Pca, Yellow 5, Blue 1

水,高岭土,蒙脱土,硬脂酸,鲸蜡醇,Glycereth-26,甘油硬脂酸酯,培格100硬脂酸,芦荟叶汁,三乙醇胺,二氧化钛,薄荷醇,香料,尿素醛,丙二醇,乙氧基二甘醇,对羟基苯甲酸甲酯,柠檬酸,人参精华,锌,铜,黄色5#,蓝色1#。

Scanning electron microscopy,transmission electron microscopy,circular dichroism and small-angle X-ray diffraction were used to analyze the aggregation mode of CSG in the organogel phase.A hierarchical self-assembly model was proposed to explain the transition from molecular to primary and secondary structure.It is shown from our results that CSG can aggregate into a micellar fibril nanostructure with high length-to-width ratio which is bundled and entangled to form a three-dimensional(3D) network that immobilize the fluid component probably by surface tension.Moreover,sol-gel polymerization of tetraethoxysilane was carried out using CSG in the gel phase.

通过扫描电镜(ScanningElectron Microscopy,SEM)、透射电镜(Transmission Electron Microscopy,TEM)、圆二色谱(Circular Dichroism,CD)和小角X—射线衍射仪(Small-angle X-rayDiffraction,SAXRD)考察CSG分子自组装行为结果表明,CSG形成的聚集体具有多级结构:首先CSG通过手性堆叠自组装形成直径在9—10nm的细纳米纤维,这些细的纳米纤维再以不规则的六方堆积的方式进行排列,构成直径在40—100nm的粗纳米纤维(即细纳米纤维的&捆束&),最后粗纳米纤维互相粘连形成三维网络状结构,使有机溶剂&固定&,从而形成凝胶;以CSG有机凝胶为模板,四乙氧基硅烷为前体,通过溶胶—凝胶聚合的方法制备了直径大约为100nm的二氧化硅纳米管。3。

Since there is no interference by DS anions in the AL-M system, most of the ethoxy groups of APS seem to form oxane bonds with hydroxyl groups.

由于没有干涉德尚阴离子在Al - M系统,大多数乙氧基组黄芪多糖似乎形式oxane债券羟基。

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