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1)  oxalyldiaectone
草酰双丙酮
2)  bis(β-diketonatoe)
双乙酰丙酮
1.
The novel schiff base ligand(Ⅱ)and its Binuclear Cu(Ⅱ)complexe(Ⅱ)were synthesized by condensation of bis(β-diketonatoe)with half Schiff base(H2L0),and were characterized by elemental analysis,1H NMRand IR spectroscop.
用双乙酰丙酮和席夫碱半体(H2L0)合成得到双席夫碱配体(I)及其双核Cu(II)配合物(II),通过元素分析、1HNMR、IR、UV-vis和MS等对其进行了表征,并采用邻苯三酚自氧化法测定了它们模拟超氧化物歧化酶(SOD)活性。
3)  DAAM
双丙酮丙烯酰胺
1.
Diacetoneacrylamide(DAAM) was used to modify the bindings for the first time.
利用互穿聚合物网络技术(IPN),将双丙酮丙烯酰胺(DAAM)用于PU胶粘剂的改性。
2.
The Crosslinkable polyurethane/styrene-acrylic polymer composite emulsion was obtained by mixing the styrene-acrylic polymer emulsion incorporating DAAM with the polyurethane dispersion containing hydrazine group.
将双丙酮丙烯酰胺 (DAAM)参与共聚的苯丙乳液与含有肼基的聚氨酯水分散体混合后 ,得到了交联型聚氨酯 /苯丙树脂复合乳液。
3.
The orthoganal experimental method was used in optimizing the technical parameters involved in the synthesis of diacetone acrylamide (DAAM), the optimum reaction conditions were as following: n(acetone)∶n(acrylonitrile)∶n(sulfuricacid)=2.
用正交实验设计法对双丙酮丙烯酰胺合成过程的工艺条件进行了优化 ,较优条件为 :n (丙酮 )∶ n (丙烯腈 )∶ n (浓硫酸 ) =2 。
4)  diacetone acrylamide
双丙酮丙烯酰胺
1.
Synthesis of diacetone acrylamide and its process optimalization;
双丙酮丙烯酰胺的合成及工艺优化
2.
Recent advances in research and development of synthesis of diacetone acrylamide
双丙酮丙烯酰胺的合成研究进展
3.
Synthetic process of diacetone acrylamide was studied with acrylamide and diacetone alcohol as raw material and H3PW12O40/SiO2 as catalyst.
研究了以丙烯酰胺和二丙酮醇为原料,以SiO2负载的磷钨杂多酸做催化剂合成双丙酮丙烯酰胺工艺。
5)  Diacetone-acrylamide
双丙酮丙烯酰胺
1.
Preparation of diacetone-acrylamide and its application in acrylate polymer;
双丙酮丙烯酰胺的制备及在丙烯酸聚合物中的应用
2.
The acrylic polymer emulsion incorporated with keto groups was prepared by conventional method using DAAM(diacetone-acrylamide) as a functional monomer.
以双丙酮丙烯酰胺作为官能单体 ,与其它乙烯基单体共聚合成了含有酮羰基的聚丙烯酸酯乳液 。
6)  2-Aminoisobutyl methyl ketone hydrogen oxalate
双丙酮胺草酸盐
补充资料:草酰双丙酮
分子式:
CAS号:

性质:晶体(由乙醇重结晶)。熔点120~121℃。能溶于乙醇、氯仿、乙醚,难溶于水、石油醚。遇三氯化铁呈暗褐色。与苯肼及醋酸共热,即生成二甲基二苯基二吡唑。在乙醇钠存在下,以草酸酯与丙酮缩合制得。

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