1) cytosine-barbituric acid complex
胞嘧啶-巴比妥酸复合物
2) cytosine-BH3 complex
胞嘧啶-BH3复合物
1.
The geometries and combination energies are predicated at the B3LYP/6-31G and MP2/6-31G levels for the cytosine-BH3 complexes and 5 geometries have been obtained.
对胞嘧啶-BH3复合物分别用B3LYP/6-31G和MP2/6-31G进行理论计算以预测该复合物的构型及稳定化能, 得到了5种构型。
3) Pyridine-barbituric acid
吡啶-巴比妥酸
1.
Methods Pyridine-barbituric acid spectrophotometry was employed and some parameters including the pH value of the phosphate buffer, the time of color reaction, temperature, the concentration of chloramine T, the proportion of the phosphate buffer, the proportion of color agent and the maximum absorption wavelength were optimized.
方法采用吡啶-巴比妥酸光度法测定饮用水中氯化氰,对溶液的pH值、显色剂的配比、样品稳定性、氯胺T的加入量、显色反应时间和最大吸收波长等进行优化。
5) barbituric acid
巴比妥酸
1.
Ionie liquids used as microwave absorbent to promote the konoevenagel condensation reaction of benzaldehyde and barbituric acid;
离子液体作为微波吸收剂促进苯甲醛与巴比妥酸的缩合反应
2.
Theoretical studies on tautomerism of barbituric acid;
巴比妥酸互变异构的理论计算
3.
Synthesis of 5-alkylene barbituric acid derivatives in ionic liquid 1-butyl-3-methyl imidazolum hexafluorophosphoric acid;
1-丁基-3-甲基咪唑六氟磷酸盐中合成5-亚烃基巴比妥酸衍生物
6) babituric acid
巴比妥酸
1.
Grinding a mixture of benzaldehydes, babituric acid and ZnCl 2 at room temperature (without any solvents) gave 5-arylidene babituric acid in high yields, providing a simple and efficient route to these compounds.
将巴比妥酸、芳香醛与无水ZnCl2 于研钵中 ,室温研磨 5min后放置 ,得到缩合产物 5 芳叉巴比妥酸 ,收率90 %~ 97%。
2.
Synthesis of 5-[(4-dimethylaminophenyl) methylene]-babituric acid in water is reported in this paper.
研究了 5 - [(4 -二甲氨基 )苯亚甲基 ]巴比妥酸的合成方法 ,选择了反应的最佳条件。
3.
The synthesis of 5-alkylidene babituric acid by condensation of aromatic aldehydes and babituric acid is described.
报道了巴比妥酸与芳香醛发生Knoevenagel类型缩合反应制备 5 -亚烃基巴比妥酸衍生物的方法 ,同时 ,给出了产物的部分物理常数和结构分析的有关数
补充资料:胞嘧啶
分子式:C4H5N3O
分子量:111.103
CAS号:71-30-7
性质:暂无
制备方法:暂无
用途:药物中间体。
分子量:111.103
CAS号:71-30-7
性质:暂无
制备方法:暂无
用途:药物中间体。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条