Nanocatalysts in Olefins and Dienes Polymerization Processes

F. Nasirov
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Abstract

Sustainable development, the design of green and economically feasible processes to produce synthetic polymers is one of the major needs and biggest challenges. Catalysis of polymerization processes is among the most important applications within the field of nanoscience. Intensive research is being conducted and considerable success has been achieved in the heterogenization of various homogeneous catalysts on nano supports for polymerization of olefins and dienes. The large surface area of various nanomaterials qualifies them quite naturally to act either as a heterogeneous promoter for catalytic reactions or as a support for the heterogenization of homogeneous catalysts. To the polymerization of olefins and dienes by using nanocatalysts are devoted significant numbers of published papers, but to elucidate the possible effect of both the type and properties of nano supports and their sizes and amounts on the activity and stereoselectivity of heterogenized catalysts and the properties of the obtained polymers are needed more detailed studies. This review attempted to collect some published research materials in the field of the nanocatalysis of olefins and dienes polymerization processes and our main aim is to assess the critical points and to indicate the future perspectives and possible strategies in this area of research. We are confident that this review will be a helpful companion and deliver key hints to those, in academia and in the industry, who decide to move their research interest in this direction
纳米催化剂在烯烃和二烯聚合过程中的应用
可持续发展,设计绿色和经济可行的工艺来生产合成聚合物是主要需求和最大挑战之一。催化聚合过程是纳米科学领域中最重要的应用之一。在烯烃和二烯聚合的纳米载体上,各种均相催化剂的异质化已经取得了相当大的成功。各种纳米材料的大表面积使它们很自然地成为催化反应的非均相促进剂或均相催化剂的非均相化支持剂。对于利用纳米催化剂聚合烯烃和二烯烃的研究已经发表了大量的论文,但为了阐明纳米载体的类型和性质及其大小和数量对多相催化剂的活性和立体选择性以及所得聚合物的性质可能产生的影响,还需要进行更详细的研究。本文收集了近年来烯烃和二烯烃纳米催化聚合过程的研究成果,并对其关键点进行了评述,提出了未来的研究方向和可能的研究策略。我们相信,这篇综述将是一个有用的伙伴,并为那些决定将研究兴趣转向这一方向的学术界和工业界的人提供关键提示
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