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1)  N-trimethyl chitosan chloride
氯化N-三甲基壳聚糖
1.
The synthesis,physico-chemical properties,absorption enhancing properties,cytotoxic evaluation and solid oral dosage forms of N-trimethyl chitosan chloride were summarized.
氯化N-三甲基壳聚糖的制备、理化性质、促吸收机制、细胞毒性评价及制剂等方面作一综述。
2)  N-trimethyl chitosan
N-三甲基壳聚糖
1.
Study on the transdermal permeation enhancing effect of N-trimethyl chitosan on the halcinonide ointment in vitro;
N-三甲基壳聚糖对哈西奈德软膏体外促透作用考察
2.
Study on the penetration effect of N-trimethyl chitosan on Cyclosporin;
N-三甲基壳聚糖对环孢素经皮渗透作用的试验研究
3.
OBJECTIVE To study the effect of degree of quaternization and concentration of N-trimethyl chitosan on the rectal absorption of insulin liquid suppositories.
目的研究不同季铵化程度及其不同浓度的N-三甲基壳聚糖(-Ntrimethyl chitosan,TMC)对胰岛素液体栓剂药物直肠吸收的影响。
3)  graft copolymer of trimethylallyl ammonium chloride onto chitosan
壳聚糖与三甲基-烯基氯化铵共聚物
4)  grafting copolymer of trimethylallyl ammonium chloride onto chitosan
壳聚糖与三甲基一烯氯化铵共聚物
1.
A positively charged composite nanofiltration(NF)membrane was prepared using aqeous grafting copolymer of trimethylallyl ammonium chloride onto chitosan(GCTACC)as casting solution,poly(acrylonitrile)(PAN)UF membrane as support,and mixed anhydride of acetic anhydride and hexane diacid as cross-linking reagent.
以壳聚糖与三甲基一烯氯化铵共聚物(GCTACC)的水溶液为铸膜液,采用流延的方式,与聚丙烯腈(PAN)超滤膜复合,与己二酸和乙酸酐混合酸酐的丙酮溶液进行交联,从而制备了壳聚糖与三甲基一烯基氯化铵共聚物复合阳离子型纳滤膜。
5)  2-hydroxypropyltrimethyl ammonium chloride chitosan
2-羟丙基三甲基氯化铵壳聚糖
1.
A novel positively charged composite nanofiltration membrane was prepared by coating the casting solution of 2-hydroxypropyltrimethyl ammonium chloride chitosan(HACC) on polysulfone ultrafiltration membrane and cross-linking with epichlorohydrin.
将2-羟丙基三甲基氯化铵壳聚糖(HACC)的铸膜液与聚砜超滤膜进行复合,用环氧氯丙烷(ECH)交联,制备了一种新型荷正电复合纳滤膜。
6)  2-Hydroxypropyltrimethyl ammonium chloride chitosan(HACC)
羟丙基三甲基氯化铵壳聚糖(HACC)
补充资料:三氯化铼
分子式:ReCl3
CAS号:

性质:暗红色或紫色晶体。熔点727℃。沸点800~850℃。500℃真空升华,蒸气为绿色。溶于水、酸、碱、液氨及乙醇,稍溶于乙醚。水溶液呈红色,不能使硝酸银溶液迅速沉淀出氯化银。可被乙醚萃取。缓慢水解而析出水合氧化铼Re2O3·xH2O,但在盐酸水溶液中却很稳定。在常温下不被高锰酸钾或氯水所氧化。经升华制得的为三聚体(ReCl3)3,是簇状化合物。在250~300℃条件下被氢气还原为金属铼。在氧气中加热生成四氯一氧化铼及一氯三氧化铼。由氮气中热分解五氯化铼制得。为制取铼无机和有机化合物的重要原料。

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