Cazacu Maria, Racles Carmen, Zaltariov Mirela-Fernanda, Dascalu Mihaela, Bele Adrian, Tugui Codrin, Bargan Alexandra, Stiubianu George
Department of Inorganic Polymers, "Petru Poni" Institute of Macromolecular Chemistry, Aleea Gr. Ghica, Voda 41A, 700487 Iasi, Romania.
Polymers (Basel). 2021 May 16;13(10):1605. doi: 10.3390/polym13101605.
Polydimethylsiloxane (PDMS), in spite of its well-defined helical structure, is an amorphous fluid even at extremely high molecular weights. The cause of this behavior is the high flexibility of the siloxane backbone and the lack of intermolecular interactions attributed to the presence of methyl groups. These make PDMS incompatible with almost any organic or inorganic component leading to phase separation in siloxane-siloxane copolymers containing blocks with polar organic groups and in siloxane-organic copolymers, where dimethylsiloxane segments co-exist with organic ones. Self-assembly at the micro- or nanometric scale is common in certain mixed structures, including micelles, vesicles, et cetera, manifesting reversibly in response to an external stimulus. Polymers with a very high degree of ordering in the form of high-quality crystals were obtained when siloxane/silane segments co-exist with coordinated metal blocks in the polymer chain. While in the case of coordination of secondary building units (SBUs) with siloxane ligands 1D chains are formed; when coordination is achieved in the presence of a mixture of ligands, siloxane and organic, 2D structures are formed in most cases. The Romanian research group's results regarding these aspects are reviewed: from the synthesis of classic, amorphous silicone products, to their adaptation for use in emerging fields and to new self-assembled or highly ordered structures with properties that create perspectives for the use of silicones in hitherto unexpected areas.
聚二甲基硅氧烷(PDMS)尽管具有明确的螺旋结构,但即使在极高分子量下也是一种无定形流体。这种行为的原因是硅氧烷主链的高柔韧性以及由于甲基的存在而缺乏分子间相互作用。这些使得PDMS与几乎任何有机或无机成分都不相容,导致在含有极性有机基团嵌段的硅氧烷 - 硅氧烷共聚物以及硅氧烷 - 有机共聚物(其中二甲基硅氧烷链段与有机链段共存)中发生相分离。在某些混合结构中,包括胶束、囊泡等,微尺度或纳米尺度的自组装很常见,并且会根据外部刺激可逆地表现出来。当硅氧烷/硅烷链段与聚合物链中的配位金属嵌段共存时,可以得到具有高质量晶体形式的高度有序聚合物。而在二级结构单元(SBU)与硅氧烷配体配位的情况下会形成一维链;当在硅氧烷和有机配体混合物存在下实现配位时,在大多数情况下会形成二维结构。本文综述了罗马尼亚研究小组在这些方面的成果:从经典无定形有机硅产品的合成,到它们在新兴领域的应用适应性,再到具有新性能的自组装或高度有序结构,这些结构为有机硅在迄今意想不到的领域的应用创造了前景。