Department of Chemical Engineering, National Cheng Kung University, Tainan, 701, Taiwan.
Macromol Rapid Commun. 2021 Aug;42(15):e2100202. doi: 10.1002/marc.202100202. Epub 2021 Jun 13.
Poly(butylene adipate) (PBA) self-aggregation into unique periodicity correlating to its interfacial photonic properties is probed in detail. Investigations on the unique periodic morphology and top-surface and interior architectures in specifically crystallized PBA are focused on its novel photonic patterns with periodic gratings. Detailed analysis of the interior lamellae from ringless to periodically ordered aggregates (crystallized at 33-35 °C vs. T = 30 °C) serves as ideal comparisons. Each interior arc-shape shell is composed of tangential and radial lamellae mutually intersecting at 90 angle. The interior layer thickness in SEM-revealed arc-shape shish-kebab shell is exactly equal to the optical inter-band spacing (≈6 µm). A 3D assembly mechanism of periodically banded PBA crystals is proposed, where the orderly arrays on top surfaces as well as the interior microstructures of strut-rib alternate-layered assembly resemble nature's photonic crystals and collectively account for the interfacial photonic properties in the ring-banded PBA crystal that is novel and has potential applications in future.
聚己二酸丁二酯(PBA)自组装成独特的周期性,与界面光子特性相关,这一点得到了详细的研究。本文重点研究了特定结晶 PBA 的独特周期性形态和顶表面及内部结构,以探索其具有周期性光栅的新型光子图案。详细分析了从无环到周期性有序聚集体(在 33-35°C 下结晶,而 T = 30°C)的内部层片,这为理想的比较提供了依据。每个内部弧形壳由相互成 90 度角的切向和径向层片组成。SEM 显示的弧形 shish-kebab 壳的内部层厚度恰好等于光学带隙间距(≈6 µm)。提出了周期性带状 PBA 晶体的 3D 组装机制,其中顶部表面的有序排列以及支柱肋交替层状组装的内部微观结构类似于天然光子晶体,共同解释了新型具有潜在应用前景的环状 PBA 晶体的界面光子特性。