With high-performance, the biomimetic synthesis technology has been the focus and gained frontier position in material chemistry preparation field. 仿生合成具有的诸多优点,使无机材料的仿生合成技术成为无机材料化学的研究前沿和热点。
In this paper, a detail review is given on the recent progress in chiral crown ether biomimetic chemistry. 综述了部分开链配体的络合行为,对手性冠醚的合成、分子识别及仿生功能的研究进行了评述。
Biomimetic chemistry could supply the best designing principle for developing modern medical technologies. 仿生化学可以为现代医药技术提供最佳的设计原理。
The Recent Progress of Podands and Chiral Crown Ether Biomimetic Chemistry 开链配体及手性冠醚仿生化学研究现状
The synthesis process of peracetic acid and its industrial application in environment, energy engineering, polymer/ resin industry and biomimetic chemistry are introduced. 介绍了过氧乙酸合成工艺及在环境、能源、聚合物/树脂和仿生化学领域的最新应用研究进展。
This paper reviews briefly the progress on biomimetic chemistry of tetrahydrofolate coenzymes, including the biomimetic organic synthesis, the chemical models of enzymatic reaction and the reaction mechanism. 本文简要地介绍了四氢叶酸辅酶仿生化学研究的进展,包括仿生有机合成、酶促反应模型和反应机理等方面。
Progress on Biomimetic Chemistry of Tetrahydrofolate Coenzymes 四氢叶酸辅酶仿生化学的进展
From the viewpoint of biomimetic chemistry it could be a new growing point that to develop combined drugs acting synergistically on neural network. 从仿生化学的角度来看协同作用于神经网络的组合药物将会是开发新药的新生长点。
The design and synthesis of biomimetic receptor systems capable of binding a target molecule with similar affinity and specificity to antibodies has been a long-term goal in bioorganic chemistry. 合成一种能特异性结合目标分子的模拟生物受体是生物有机化学的一个长期目标。
The study on molecular recognition using the artificial receptors to construct the chemical models or biomimetic systems is one of the challenges in the frontiers of bioorganic chemistry and supramolecular chemistry. 利用人工受体建立化学模型或化学仿生体系来研究生物体内的分子识别现象已经成为生物有机化学和超分子化学前沿富于挑战性的课题之一。
In recent years, the biomimetic synthesis of nano-materials becomes more and more popular in Materials Chemistry field. Inspired by the biological concept, nano-materials were prepared by bio-template. 纳米材料的仿生合成,是近年来材料化学研究领域的前沿和热点之一,本论文在生物矿化思想的启发下,运用活体生物模板进行纳米材料的仿生合成。
This topic is a challengeable work in biomimetic chemistry area. 此课题的研究一直是仿生化学研究领域中一个具有挑战性的课题。
Metalloporphyrins biomimetic catalyst has been used to oxidate hydrocarbons with molecular oxygen; this is one of the most important domains of catalysis chemistry and organic chemistry at present. Especially, the heterogeneous catalyst is being paid more attention to. 将金属卟啉(MPs)仿生催化剂用于分子氧氧化烃类物质的氧化过程,这是当今催化剂化学与有机化学中极为重要的研究领域,尤其是非均相金属卟啉催化剂的催化氧化作用备受关注。
Biomimetic catalyst has characteristics of both enzymatic catalyst and chemical catalyst. Therefore, it is an efficient approach of green chemistry. 仿酶催化不仅兼具酶催化与化学催化两者的优点,而且是实现绿色化学目标的直接而有效的途径。
Enzymatic reaction and mimetic enzyme are the most important issues in the pop fields such as supramolecular chemistry and biomimetic chemistry. Enzymatic polymerization has extensive application in the synthesis of special functional polymer materials. 酶催化反应和模拟酶的研究是超分子化学、仿生化学等热门课题的重要研究内容,酶催化聚合反应在合成特殊功能高分子材料方面有广泛应用前景。