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1)  thiothiamine
硫代硫胺
1.
The reaction mechanism of the oxidation of thiothiamine was studied, and two kinetic equations that well describe the changing concentration of reactants were also gained in this paper.
探讨了双氧水氧化硫代硫胺反应的机理 ,建立了描述氢离子浓度和双氧水浓度变化的氧化动力学方程 ,与实验结果吻合良好。
2)  2(3H)-Thiazolethione, 3-[(4-amino-2-methyl-5-pyrimidinyl)methyl]-5-(2-hydroxyethyl)-4-methyl-
硫代硫胺素
3)  thioamide [,θaiəu'æmaid]
硫代酰胺
1.
6 were obtained from thioamides and α-bromoketones by a four-step reaction.
以硫代酰胺和α-溴代酮为原料,经4步反应合成了N,N′-二酰基肼(6),6在POCl3作用下脱水环化,合成了7个未见文献报道的2-芳基-5-[(4-芳基噻唑-2-基)甲基]-1,3,4-噁二唑类化合物,其结构经1H NMR,IR,MS和元素分析表征。
2.
Three kinds of thioamide-group chelating fiber were synthesized by cross-linking of initial polyacrylonitrile(PAN) fiber with anhydrous hydrazine, ethylenediamine, diethylenetriamine respectively and following chemical modification with sodium sulfide.
以腈纶为起始原料,分别经水合肼、乙二胺、二乙烯三胺预交联后,以N,N-二甲基甲酰胺作溶剂与硫化钠反应,合成了三种携硫代酰胺功能基可达6。
3.
A new chelating fiber containing thioamide group is synthesized by cross-linking of polyacrylonitrile(PAN) fiber with ethylene-dimine and following with chemical modification with sodium sulfide using DMF as solvent.
以腈纶纤维为起始原料,经乙二胺预交联后,以DMF作溶剂与硫化钠反应,合成了一种硫代酰胺功能基可达6。
4)  carbothioamide
硫代酰胺
1.
Synthesis of 5-(2-Hydroxy-6-methoxylphenyl)-3-methyl-4,5-dihydropyrazole-1-carbothioamide Derivatives;
新型吡唑硫代酰胺衍生物的合成
2.
Synthesis and Bactericidal Activities of Novel Pyrazole-1-carbothioamide Derivatives;
新型吡唑N-硫代酰胺类衍生物的合成与杀菌活性
5)  thioamides
硫代酰胺
1.
The dethiolative coupling of thioamides promoted by the samarium and titanium tetrachloride mixed reagent;
钐/四氯化钛试剂促进下硫代酰胺的脱硫偶联反应的研究
2.
Amine catalysts are used for preparation of thioamides by the addition reaction of nitriles with hydrogen sulfide.
在胺催化下,硫化氢和腈加成反应生成硫代酰胺,其原子经济性为100%,是一个绿色化学合成方法。
6)  thiodianiline
硫代苯胺
1.
The latest developmet of polymer electrode is summarized, and the theoretical work on the most promising polymer electrode, thiodianiline and amino-naphtho(anthra)quinone polymer electrode, is also outlined.
综述了聚合物电极材料的最新发展情况,对目前最受关注的硫代苯胺及氨基萘(蒽)醌类聚合物电极材料的研究情况和理论探讨作了较为具体的介绍。
补充资料:硫胺
(NH4)2S04   分子量132.14
    性质  白色无臭而带有咸味的菱形晶系结晶体,由于含有不同程度的杂质颜色吴灰色甚至黄褐色。密度1.769g/cm3。分解235℃。易溶于水,溶解时同时吸收热量,水溶液呈酸性反应。不溶于乙醇、丙酮和氨。有吸湿性,吸湿后固结成块。加热到513℃以上完全分解成气体氨和硫酸。与碱类作用则放出氨气。
    应用  品一种优良的氮肥,适用于一般土壤和作物,能使枝叶生长旺盛,提高果实品质和产量,增强作物对灾害的抵抗能力,可作基肥、追肥和种肥。能与食盐进行复分解反应制造氯化铵,与硫酸铝作用生成铵明矾,与硼酸等一起制造耐火材料。加入电镀液中能增加导电性。也是食品酱色的催化剂,鲜酵母生产中培养酵母菌的氮源,酸性染料染色助染剂,皮革脱灰剂。此外,还用于啤酒酿造,化学试剂和蓄电池生产等。
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