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1)  Tricyclic carboxylates
三环羧酸酯
1.
Tricyclic carboxylates (Ⅱ) were enolated by hindered base lithium diisopropylamide(LDA),peroxide bond was introduced into α-position of carbonyl group by the oxidation with molecularoxygen.
三环羧酸酯(Ⅱ)在强碱LDA作用下经过烯醇中间体,由空气氧对其进行氧化,在羰基α-位引入一个过氧键,尔后用亚硫酸钠还原得到三环羟基羧酸酯(Ⅲ)。
2)  Tricyclic hydroxycarboxylates
三环羟基羧酸酯
3)  tri-n-octyl phosphate
羧酸三辛酯
4)  cyclohexyl carboxylate
羧酸环己酯
1.
Catalytic synthesis of cyclohexyl carboxylate with ammonium ferric sulfate;
硫酸铁铵催化合成羧酸环己酯
5)  heteroaromatic carboxylate
杂环羧酸酯
1.
Eight new chlorodibutyltin heteroaromatic carboxylates were synthesized and characterized by elemental analysis,IR and 1HNMR spectra.
合成了 8个新的二丁基一氯化锡杂环羧酸酯。
2.
Ten trialkyltin heteroaromatic carboxylates R3SnO2CR2(R1 = PhCH2 - , n - C4H9; R2 = furanyl,pyridinyl,indolylalkyl) have been prepared and characterized by IR.
合成了十种三烃基锡杂环羧酸酯R_3~1SnO_2C-R~2(R~1=n-C_4H_9,Ph-CH_2;R~2=呋喃,吡啶,吲哚烷基),利用IR,~1H NMR及元素分析确定了这些化合物的组成和结构。
6)  TCA cycle
三羧酸循环
1.
For obtaining maximal yield of hydrogen how to make glycolysis to produce large amount of NADH at TCA cycle and also to reoxidize FADH2 through electron transport chain by oxygen or other electron acceptors were chief introduced .
文中着重介绍了如何通过 TCA cycle(三羧酸循环 )使葡萄糖酵解产生大量的 NADH(还原型二磷酸吡啶核苷酸 ) ,抑制 NADH脱氢酶络合物的电子迁移链而得到最高氢气产量。
2.
In order to explore the reason,we added lactate,acetate(by-products),succinate, citrate,and malate(intermediates in TCA cycle)to the medium respectively in shake flask fermentation.
上述结果初步表明,琥珀酸强化了三羧酸循环产生更多的能量,促进了甘油脱水酶的复活,引起1,3-丙二醇产量的增加。
补充资料:2,6,6-三甲基-1,3-环己二烯-1-羧酸乙酯
CAS: 35044-59-8
分子式: C12H18O2
中文名称: 2,6,6-三甲基-1,3-环己二烯-1-羧酸乙酯

英文名称: 1,3-Cyclohexadiene-1-carboxylic acid, 2,6,6-trimethyl-, ethyl ester
3-cyclohexadiene-1-carboxylic acid, 2,6,6-trimethyl- ethyl ester
3-cyclohexadiene-1-carboxylic acid,2,6,6-trimethyl- ethyl ester
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