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维尔纳开创的络合物化学(又称配位化学),由于受到五十年代元素分离技术、六十年代络合催化以及七十年代生物科学的推动,获得迅猛发展。尤其最近二十年来,络合物化学渗入有机合成、高分子化学、物理化学和生物化学,形成了许多崭新的、富有生命力的边缘领域,成为当代化学学科中最活跃的领域之一、是无机化学发展的主要方向。它的应用涉及国民经济的许多重要部门。例如:在核反应堆材料、半导体材料、激光材料的分离提纯;石油化工及有机高分子合成中新反应和高效高选择性络合催化剂的设计及其催化机理的阐明;生物体内酶的催化反应及其化学模拟以及有关
Werner’s complex chemistry (also known as coordination chemistry), due to the fifties elemental separation technology, the sixties complex catalyst and seventies biology science, to obtain rapid development. Especially in the last two decades, complex chemistry has infiltrated into organic synthesis, polymer chemistry, physicochemistry and biochemistry, forming many new and vital edge fields. It has become one of the most active fields in contemporary chemistry and is characterized by inorganic The main direction of chemical development. Its application involves many important sectors of the national economy. For example: in nuclear reactor materials, semiconductor materials, laser materials, separation and purification; petrochemical and organic polymer synthesis of new reactions and high efficiency and high selectivity complex catalyst design and its catalytic mechanism of clarification; biological enzyme reaction and its Chemical simulation and related