首页> 外文期刊>Macromolecules >Behavior of poly(ε-caprolactone)s (PCLs) coalesced from their stoichiometric urea inclusion compounds and their use as nucleants for crystallizing PCL melts: Dependence on PCL molecular weights
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Behavior of poly(ε-caprolactone)s (PCLs) coalesced from their stoichiometric urea inclusion compounds and their use as nucleants for crystallizing PCL melts: Dependence on PCL molecular weights

机译:聚(ε-己内酯)(PCL)从其化学计量的尿素夹杂物聚结的行为及其在结晶PCL熔体中用作成核剂:取决于PCL分子量

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We have formed noncovalent inclusion compounds (ICs) between guest poly(ε-caprolactone) (PCL) chains, with molecular weights ranging from ~2000 to 80 000 g/mol, and host urea (U). Upon careful removal of the U host, each of the guest PCL chains were coalesced from their U-IC crystals to produce coalesced samples (c-PCLs). As previously observed for PCL and other polymer guests when coalesced from their ICs formed with host cyclodextrins (CDs), upon cooling from their melts, PCLs coalesced from their U-ICs also show enhanced abilities to crystallize, regardless of their molecular weight. Also consistent with polymer guests, including PCL, that were coalesced from their CD-ICs, c-PCLs obtained from their U-ICs retain their enhanced abilities to crystallize even after spending long times (weeks or more) in the melt. Because, unlike CD hosts, U does not thread over guest polymer chains in their ICs, we conclude that the enhanced ability of c-PCLs to crystallize from their melts upon removal of either host from their ICs is solely a consequence of their coalesced conformations/structures/morphologies, which are stable to prolonged melt-annealing. Furthermore, because c-PCLs with chain lengths well below and well above those corresponding to the entanglement molecular weight of PCL behave similarly, we conclude that their enhanced ability to crystallize from the melt is likely an exclusive consequence of the extended and unentangled arrangement of their coalesced chains. In addition, c-PCLs obtained from their U-ICs are observed to effectively act as self-nucleants, when added in small amounts to as-received PCLs, to produce nuc-PCLs, which like neat c-PCLs exhibit an enhanced ability to melt-crystallize.
机译:我们在客体聚(ε-己内酯)(PCL)链之间形成了非共价包合物(ICs),其分子量介于〜2000至80 000 g / mol之间,并且与宿主尿素(U)结合。小心移除U宿主后,将每个来宾PCL链从其U-IC晶体中合并,以生成合并的样本(c-PCL)。正如先前对PCL和其他聚合物来宾观察到的,当它们与主体环糊精(CD)形成的IC聚结时,从它们的熔体冷却后,无论其分子量如何,从U-IC聚结的PCL都显示出增强的结晶能力。与从其CD-IC结合的聚合物客体(包括PCL)相一致,从其U-IC获得的c-PCL即使在熔体中花费了长时间(数周或更长时间)后仍具有增强的结晶能力。因为与CD宿主不同,U不会在其IC上穿插客体聚合物链,所以我们得出结论,从任一IC上除去任何宿主后,c-PCL从其熔体中结晶的增强能力完全是由于它们结合的构象/对长时间的熔融退火稳定的结构/形态。此外,由于链长远低于和长于对应于PCL纠缠分子量的c-PCL的行为相似,因此我们得出结论,它们从熔体中结晶的增强能力可能是其延伸和无纠缠排列的排他性结果。合并的链。此外,观察到从其U-ICs获得的c-PCLs有效地作为自成核剂,当少量添加到接收到的PCLs中时,可以产生nuc-PCLs,就像纯净的c-PCLs展示出增强的熔融结晶。

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