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1)  allyl-starch acetate
烯丙基淀粉乙酸酯
2)  starch graft acrylate
淀粉接枝丙烯酸酯
1.
In this paper,the starch graft methacrylate paper the advantages and disadvantages of is used as dry-agent,found it as dry-good application of the conditions and factors,and further optimize the starch graft acrylate in practice Production of.
研究了淀粉接枝丙烯酸甲酯用作纸张增干强剂,找到其用作增干强剂的较好的应用条件及其影响因素,进一步优化淀粉接枝丙烯酸酯在实际生产中的应用。
3)  propionylated starch
丙酸酯淀粉
1.
In order to reveal the inherent relation between the sizing properties and modification extent,a series of propionylated starch with different degree of substitution(DS)were prepared using propionic anhydride as esterifying agent through varying the feed ratio of the agent to starch.
采用丙酸酐作为酯化剂,通过改变丙酸酐对玉米淀粉的投料比,制备一系列具有不同取代度(DS)的丙酸酯淀粉,以研究淀粉丙酸酯化变性程度与浆液黏附性能和浆膜性能的关系,并通过与醋酸酯化变性的对比,来评价淀粉丙酸酯化淀粉的上浆性能。
4)  ethyl methacrylate
甲基丙烯酸乙酯
1.
It is showed that polymerization of ethyl methacrylate at-5 ℃ using DPHLi as an initiator in the presence of LiClO4 leads to living anionic polymerization and the polymer with relatively narrow molecular weight distribution(1.
05的单分散聚甲基丙烯酸乙酯(PEMA)。
2.
The geometrical forms,dipole moments,atomic charges,IR spectra and energy of reactant and transition state of ethyl methacrylate(EMA) are calculated with the density functional B3LYP method at the 6311G* level.
运用密度泛函理论方法DFT-B3LYP,在6-311G*基组上全优化计算了甲基丙烯酸乙酯(EMA)及过渡态的几何构型、偶极矩、电荷和能量;通过自洽反应场(SCRF)B3LYP/6-311G*计算、振动分析和绝对速率常数理论,计算了正丁基锂作为引发剂引发甲基丙烯酸乙酯的引发速率常数;理论计算数据与实验结果基本吻合。
3.
Polystyrene-block-poly(ethyl methacrylate)(PS-b-PEA)was synthesized using living free radical homo-and co-polymerization in the presence of 4-hydroxyl-2,2,6,6-tetramethylpiperridine-oxyl-1(HTEMPO~·)and azobisisobutyronitrile(AIBN).
采用“活性”自由基聚合的方法合成了不同分子量的苯乙烯和甲基丙烯酸乙酯[polystyrene-block-poly(ethyl methacrylate),PS-b-PEA]嵌段共聚物。
5)  ethyl cyanoacylate
氰基丙烯酸乙酯
6)  hydroxylethyl acrylate
丙烯酸羟基乙酯
1.
A process for synthesis of hydroxylethyl acrylate from acrylic acid and epoxy ethane is described.
介绍了由丙烯酸和环氧乙烷合成丙烯酸羟基乙酯的工艺过程。
补充资料:乙酸 3-苯基烯丙酯
分子式:C11H12O2
分子量:176.21
CAS号:103-54-8

性质:密度1.054。沸点262-265°C。折射率1.54-1.543。闪点118°C。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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