Studying the synthesis of heterocyclic compounds and the biologic activity is one of the most spirited items in organic chemistry. 探索杂环化合物的合成及生物活性是有机化学中最具生命力的研究课题之一。
Application of Aromatic Group and Heterocyclic Ring Substituent Thioureas in Analytical Chemistry 芳基和杂环取代基硫脲类试剂在分析化学中的应用
In recent years, heterocyclic compounds containing phosphorus have been paid attentions due to their applications in molecular recognition, supermolecular chemistry, chiral catalyst and life science. 近年来,由于磷杂环化合物在分子识别,超分子化学,不对称催化和生命科学方面的应用而受到重视。
Metallic complex formed by heterocyclic compounds or heterocyclic compounds as ligands have attracted extensive attentions in the fields of coordination chemistry, biochemistry, design of medicines and material science, due to their novel structures and unique functions. 杂环化合物和以杂环化合物为配体合成的金属配合物以其新颖的结构及独特的功能在配位化学、生物化学、医药科学以及材料科学领域引起了广泛的重视,得到了深入的研究。
Heterocyclic complexes are an useful and general reagents in analytical chemistry. 杂环化合物是有机试剂中的一类试剂,也是分析化学中常用的试剂之一。
Heterocyclic compounds and their coordination complexes have received much attention for their application in biological engineering, food perfume chemistry, organic synthesis and dyestuff chemistry. 杂环化合物及其金属配合物因在生物工程、食品香料化学、有机合成和染料化学等领域内的应用而成为研究的热点。
In recent years, there has been increasing interest in synthesis of heterocyclic compounds that have biological and commercial importance. 1,2,4-triazol are biological interesting molecules and their chemistry is receiving considerable attention due to antihypertensive, antifungal, antibacterial, properties, anticonvulsant and plant growth regulate. 含1H-1,2,4-三唑的杂环化合物最近倍受关注,因为分子结构中含有1H-1,2,4-三唑环的许多化合物被发现具有广泛的生物活性,比如:抗高血压、杀菌、抗真菌、抗痉挛以及植物生长调节等。
Suzuki cross-coupling is one of important methods to form C-C bond. It has become an important tool for the modern organic synthesis and has been extensively utilized in the preparation of organic optoelectronics, intermediates, heterocyclic chemistry. Suzuki偶联反应是合成碳碳键的一种重要方法,广泛应用于有机光电材料、医药中间体、杂环化学等产品的合成中,已成为现代有机合成中不可缺少的工具。
So a simple and effective synthesis method of heterocyclic compounds through constituting aryl C-C and C-X ( N, O, S, P) bond will become one of the significant researches in field of organic chemistry. 因此简单有效的构建芳基碳碳键、碳杂键,并合成杂环类化合物的方法,必将成为有机化学研究的重要领域。
The development of efficient methods for synthesis of heterocyclic compounds is an important subject in organic and medicinal chemistry. Because heterocyclic compounds are often associated with interesting biological activities. Among these heterocycles evodiamine quinazolone are of special interests in drug discovery. 开发一种快速有效合成杂环化合物的方法是有机化学和药物化学的一个重要课题,因为杂环化合物常具有潜在的生物活性,吴茱萸碱类化合物成为药物研发者们极为有兴趣的对象。
Heterocyclic compounds hold a special place in organic chemistry. Their role in drug design can not be overstated and the appearance of heterocyclic motifs in natural products is astronomically frequent. 杂环化合物在有机化学领域占有十分重要的地位,它们在药物设计中扮演了不容忽视的角色,同时频繁的出现在天然产物的结构中。
Traditionally, heterocyclic chemistry is the largest branch in organic chemistry. 传统上讲,杂环化学是有机化学中最大的分支。
Therefore, the development of new reactions, new methods and new strategies for the synthesis of nitrogen-containing heterocyclic compounds has been a research hotspot in the field of organic chemistry. 因此,发展含氮杂环化合物合成的新反应、新方法和新策略一直是有机化学研究的热点。