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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Polyolefins based crystalline block copolymers: Ordered nanostructures from control of crystallization
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Polyolefins based crystalline block copolymers: Ordered nanostructures from control of crystallization

机译:基于聚烯烃的结晶嵌段共聚物:从结晶的控制中有序纳米结构

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In this paper the morphologies and crystallization properties of crystalline block copolymers are reviewed. The equilibrium morphologies expected in crystalline-amorphous diblock copolymers and the different modes of crystallization, such as, breakout, templated crystallization, confined crystallization and pass through crystallization are described. The effects of confinement on crystallization mode and crystallization kinetics are also analyzed in detail. The paper is focused on the morphologies and nanostructures produced in crystalline block copolymers based on polyolefins. Early studies performed on block copolymers containing highly defective polyethylene block, synthesized by hydrogenation of block copolymers containing 1,4-polybutadiene blocks prepared by classic anionic living polymerization, are described in the first part of the paper. Then, the paper features recent advances in the synthesis and characterization of crystalline block copolymers containing stereoregular polyolefins, such as stereoregular polypropylene and linear polyethylene prepared using novel organometallic catalysts able to promote the living and stereoselective polymerization of alpha-olefins. Strategies for creating nanoscale patters exploiting the ability to induce desired orientations of the crystalline phase through epitaxial crystallization of the crystallizable blocks on crystalline substrates are described. According to this strategy, the desired orientations of the crystalline phase may be suitably designed and act as templates to create the desired final ordered nanostructure.
机译:本文回顾了结晶嵌段共聚物的形态和结晶性能。描述了在结晶 - 无定形二嵌段共聚物中预期的平衡形态和不同的结晶模式,例如分布,模板化结晶,局限性结晶和通过结晶。详细分析了禁闭对结晶模式和结晶动力学的影响。本文的重点是基于聚烯烃在结晶嵌段共聚物中产生的形态和纳米结构。在含有经典阴离子生物聚合制备的含有1,4-聚丁二烯嵌段的嵌段共聚物的含嵌段共聚物的含水化合成的含嵌段共聚物对含有高缺陷的聚乙烯嵌段进行的早期研究。然后,该纸具有近期含有立体细烯烃的结晶嵌段共聚物的合成和表征的最新进展,例如使用新型有机金属催化剂制备的立体基聚丙烯和线性聚乙烯,能够促进α-烯烃的活性和立体选择性聚合。描述了利用晶体基板上的结晶块的外延结晶来制造纳米级图案的纳米级图案的策略。根据该策略,可以适当地设计结晶相的所需取向,并充当模板以产生所需的最终有序纳米结构。

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