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Any of a group of five chemically related nonmetallic elements including fluorine, chlorine, bromine, iodine, and astatine.

酰亚胺源自氨的一种化合物,含有与一个二价酸基或者二个一价的酸基结合的氨基

SYMWHITE, GIGAWHITE and glucosamine, potent tyrosinase inhibitors along with botanical brighteners, bearberry, mulberry, licorice and vitamin C help to even skin tone and help to reduce UV induced skin pigmentation.

SYMWHITE、GIGAWHITE和氨基葡萄糖、与植物的抛光剂一起的有力酥氨基酸抗化剂,熊果、桑树、欧亚甘草和维生素C帮助对甚而肤色并且帮助减少紫外导致的皮肤染色。

A new kind of copolyetherimide is synthesized, and effect of contents of this kind of COPEI resin on morphology of blends of COPEI/the diglycidyl ether of bisphenol A(the Epikote 828)/ 4,4'-diamino diphenyl sulphone and preparation of epoxy resin microspheres are researched .

采用共缩聚方法合成了一种新型聚醚酰亚胺,通过改变它在COPEI/双酚A二缩水甘油醚型环氧树脂(E828)/二氨基二苯基砜共混体系中的用量,考察了对共混体系的相结构以及对制备环氧树脂微球的影响。

Results: The proportion of Gram-negative bacilli rose obviously, so did the opportunistic pathogen's and Yeasts detected rate. Most drug sensitive tests showed the drug-fast rate turned to be high. Escherichia coli, Salmonella and Citrobacter resistant and so on to fluoroquinolones was 57%~97%. These bacteria to imipenem showed excellent activity. Meticillin-resistant-staphylococcus resistant to ciprofloxacin, norfloxacin, clindamycin, tetracycline, erythromycin, cefazolin and ampicillin were 40.9%, 42.4%, 63.6%, 72.2%, 85.9%, 100.0% and 100.0%, respectively Streptococcus and Enterococcus resistant to major β-lactams-penicillin, aminoglycosides, macrolides, tetracyclines and sulfonamides were between 36.0% to 100.0%.

结果:革兰阴性杆菌比例显著升高,条件致病菌和酵母样真菌检出机会显著增多;药敏结果显示多数临床细菌对常用抗生素的耐药趋势在不断上升;大肠埃希菌、沙门菌和枸橼酸杆菌等革兰阴性杆菌对喹诺酮类药物的耐药率达57%~97%,亚胺培南则对阴性杆菌有较高的敏感覆盖率;耐甲氧西林葡萄球菌对环丙沙星、诺氟沙星、氯洁霉素、四环素、红霉素、头孢唑啉和氨苄西林的耐药率分别为40.9%、42.4%、63.6%、70.2%、85.9%、100.0%和100.0%;链球菌和肠球菌对多数β内酰胺类青霉素、氨基糖苷类、大环内酯类、四环素类以及磺胺类药物均呈高度耐药,耐药率在36%~100%。

To Dec. 2003 years in Yuxi city People's Hospital. RESULTS: The proportion of G- bacilli were much. The opportunistic pathogen's and Yeasts detected rate rose obviously. Most drug sensitive tests showed the drug-fast rate turned to be high. Escherichia coli, Salmonella and Klebsiella and so on to fluoroquinolones was 50~97.7%. These bacteria to imipenem showed excellent activity. MRS resistant to ciprofloxacin, norfloxacin, clindamycin, tetracycline, erythromycin, gentamycin, trimeth/sulfa and cefazolin were above 50%. Streptococcus resistant to major β-lactams-penicillin, aminoglycosides, macrolides, tetracyclines and sulfonomides were highness.

结果:G-杆菌比例居多,条件致病菌和酵母样真菌检出机会显著增高;药敏结果显示多数临床细菌对常用抗生素的耐药趋势在不断上升;大肠埃希菌、沙门菌和克雷伯菌等G-杆菌对喹诺酮类药物的耐药率在50%~97.7%,亚胺培南则对阴性杆菌有较高的敏感覆盖率;耐甲氧西林葡萄球菌对环丙沙星、诺氟沙星、氯洁霉素、四环素、红霉素、庆大霉素、复方新诺明和头孢唑啉的耐药率均在50%以上,链球菌对多数β内酰胺类青霉素、氨基糖苷类、大环内酯类、四环素类以及磺胺类药物呈高度耐药。

The most commonly used method for the covalent binding of biomolecules onto 1-D nanostructures is through the diimide-activated amidation of carboxylic acid terminated nanostructures.

最常用的方法是通过端羧酸基纳米结构的二酰亚胺活化氨基化合物来进行生物分子与1-D纳米结构的共价结合。

The catalytic reaction rate constant for amidopyrine in different conditions are also determined, and the rate constants agreed closely with the mechanism presented by us.

讨论了影响其催化反应速度的因素及条件;并对不同条件下氨基比林对亚铁氰化钾的催化反应速率常数进行了测定,所得结果很好的符合提出的反应机理。

The selectivity of cyclization of carbodiimide 2 with primary amine was studied and the result showed that the anomalous product being cyclized from arylamino group was formed preferencially.

研究了碳二亚胺2与伯胺成环反应的选择性,结果表明优先生成反常的芳氨基成环产物,利用中间体可能的构型解释了实验结果。

Copolymerize methacrylic acid 3(4′-N,N-dimethylamino) ketone xanthate and acrylamide were copolymerized with N,N-methylene bisacrylamide,and then combined with silane ethylene group in the form of covalent bond on the quartz glass shee t to be made into a sensor,to determine ethanol.

将甲基丙烯酸3-(4′-N,N-二甲氨基)黄酮酯和丙烯酰胺、N,N′-亚甲基双丙烯酰胺共聚并共价键合在硅烷化的含乙烯基团的石英玻片上,制成了可测定乙醇的传感器。

Starting from chiral proline, pipecolinic acid, piperazine-2-carboxylic acid and 1,2-diphenyl amino alcohol, a series of structurally simple and easily prepared amides were developed as highly effective Lewis basic organocatalysts for the asymmetric reduction of imines with trichlorosilane as the reducing agent, which promoted the reduction of N-aryl imines with high yields and excellent enantioselectivities with an unprecedented substrate spectrum.

本文分别由手性脯氨酸、哌啶酸、哌嗪酸以及氨基醇出发,设计和合成了一系列结构新颖、合成简便、性能优良的酰胺类有机小分子路易斯碱催化剂,以廉价的三氯氢硅为氢源,用这些催化剂催化亚胺不对称还原,得到了非常优良的收率、对映选择性和前所未有的底物普适性。

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