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In this work, we focus our effort on the studying of the sol-thermal and chemical metathesis synthesis of nanomaterials powder.

本论文针对无机纳米粉体的两种合成方法,溶剂热合成和化学交换法,对纳米粉体合成技术进行了探索。

Reaction of 5'-O-p-methoxytrityl-thymidine with 1, 1'-carbonyl-diimidazole gave the 3'-O-carbonylimidazolide, which was condensed in high yield with 3'-O-protected thymidine to give a dithymidine carbonate. In the same way, we obtained the protected trithymidine dicarbonate. After deprotection, we obtained quantatively the trithymidine dicarbonate.By the same stratagy, we completed the synthesis of dithymidine sulfite.It was shown that allyl can be used as a good protection group for hydroxyl of ribose in the synthesis of oligonucleotides consisting in some unstable nucleotide analogues.

我们在第一部分工作的基础上,以烯丙基作为3'-OH的保护基合成了保护的三胸苷碳酸酯以及二胸苷亚硫酸酯,用我们所得的脱保护条件进行了脱保护研究,得到了三胸苷碳酸酯以及二胸苷亚硫酸酯,并研究了它们合成中的一些化学问题,结果表明:烯丙基能很好地运用于这两类寡核苷酸类似物的合成中,其脱保护条件为中性,不会影响碳酸酯键及亚硫酸酯键。

This article also demonstrate the importance and the latest application domain of electrosynthesis technique in the course of realizing "green chemical industry" according to some industrial applications in China.

并结合近些年来国内外的工业化实例论述了有机电合成技术在实施&绿色化工&战略过程中的重要作用,同时对有机电合成的最新发展方向和应用领域作了探讨,指出有机电化合成将成为 2 1世纪各化学基础学科和应用技术研究的热点。

Three new fulvene polymeric compounds, namely 1[Ag (L3]CH2C12 , 2[Ag2(L25(H2O)(S03CF3)2]0.5C6H6 and 3 Mn(L42(C2H5OH)2 , were synthesized, respectively. Compounds 1 and 2 reported herein represent the organometallic polymers based on both Ag-N and Ag-C coordination interactions. In the solid state, compound 3 are bound together by strong intermolecular N H-O hydrogen bonding system into a supramolecular one-dimensional H-bonded chain.B.

一、富烯有机配体的合成及与金属离子的反应化学利用富烯负离子的芳酰化反应和Heck-偶联反应合成了富烯配体L1-L18,并合成了三个基于富烯配体的金属有机配位聚合物1[Ag(L3]·CH_2Cl_2、2[Ag_2(L25(H_2O)(SO_3CF_3)_2]·0.5C_6H_6和氢键驱动的超分子聚集体3Mn(L4_2(C_2H_5OH)_2。

The juvenile hormones structure, synthesis site and physiological functions of Haemaphysalis longicornis were investigated using tissue culture, biochemistry, RCA, LSS, GC and GC/MS.

运用组织培养、生物化学、放射化学分析、液闪和气相色谱/质谱技术对长角血蜱保幼激素化学结构、合成位点和生理功能进行了研究。

Therefore, the design and synthesis of heterocyclic compounds having some bioactivities attract more and more chemists and pharmacologists for doing research in this field.

因此,设计与合成具有生理活性的杂环化合物引起了合成化学家和药物学家的重视。杂环化学已成为有机合成领域的研究热点之一。

The oversaturation of cholesterol in bile results in the formation of cholesterol stones. The liver is the organ which synthesizes cholesterol and secretes bile. Liver lipid metabolism research helps to explain the mechanism of cholelithiasis. Utilizing biochemical and biomolecular technology, we have done experimental work as follows: Analyse the ingredient changes of blood and bile samples from patients.

肝脏是合成胆固醇、分泌胆汁酸的器官,对肝脏胆固醇代谢的研究有助于阐明胆石症形成的原因,本文用生物化学和分子生物学的方法,分析了病人血液、胆汁中各种脂类成份的变化,以及肝脏胆固醇合成限速酶3-羟-3-甲戊二酸辅酶A还原酶(HMG-CoA Reductase)、胆汁酸合成限速酶7α-羟化酶(7α-hydrolase)的基因表达。

Considerable attention has really been focused on ionic liquids as "green" alternatives to classical environmentally damaging organic solvents in many fields such as in organosynthesis, material, catalysis, electrochemistry, biochemistry, physicochemistry, separation and so on. However, there have been only a few examples of chiral ILs have been reported so far, and ILs possessing chirality are having been synthesized aimed at application in asymmetric catalytic reaction.

离子液体在许多领域如电化学、有机合成、催化、生物化学、物理化学、材料及分离等的绿色替代溶剂技术引起了人们的重视,然而,有关手性离子液体的合成与应用的报道比较少,含有手性片段的离子液体不断被合成出来并期望在不对称催化反应中得到应用,但是成功的例子不多,使用手性离子液体在不对称催化反应中还在初始的探索阶段。

First, the geometry optimization for 1-phenyldibenzophosphole and triphenylphosphine were carried out using quantum chemical AM1 method.

用量子化学AM1方法优化了1-苯基二苯并膦和三苯基膦的几何构型,比较了两种化合物的电子结构和空间结构,发现PDBP作为羰基合成铑膦催化剂的配体要优于三苯基膦;系统研究了PDBP的合成方法,其最佳合成条件为:在无水无氧的条件下,采用二乙胺锂与溴化四苯基膦摩尔比为3,反应温度为22 ℃,反应5 h,反应后酸化, pH值为1~2,产物收率可达到85%~88%。

Room temperature ionic liquids are the hot points of the current research fields of chemistry, chemical engineering and functional materials. Since 1998, the preparation and application of ionic liquids as environmentally benign reaction media and functional material have been carried out in Lanzhou Institute of Chemical Physics. The detailed research work, including the design and preparation of novel ionic liquids, ionic liquid as catalyst and reaction medium in sulfuric acid free Beckmann rearrangement,...

离子液体介质与材料研究是当前化学化工、功能材料的热点领域之一。1998年底以来,我们以发展离子液体清洁反应介质和软功能材料为研究内容,以实现新离子液体的设计与合成,离子液体中无硫酸Beckmann重排反应、非光气异氰酸酯合成、二氧化碳吸收与活化、反应-升华分离一体化,微孔硅胶限制纳米尺度离子液体材料的设计合成和应用及离子液体-电化学技术集成等为目标开展了一系列研究工作并取得良好进展。

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This paper discusses design and realizable methods of remote test output interface from logical design angle.

本文从逻辑设计的角度讨论遥测输出接口的设计及实现方法。

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这也适用于建筑物和地质特征。

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我们都希望好的生活。