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Crystal-by-Crystal Assembly in Two Types of Periodically Banded Aggregates of Poly(p-Dioxanone).

Kuan-Ying HuangYu-Zhe HuangLi-Ting LeeEamor M Woo
Published in: Polymers (2023)
The exterior and interior lamellar assemblies of poly(p-dioxanone) (PPDO) crystallized at 76 °C yield the most regular ones to interpret the 3D assembly mechanisms and potential for structural coloration iridescence, which are investigated using atomic-force microscopy (AFM), and scanning electron microscopy (SEM). PPDO displays two types of ring-banded spherulites within a range of T c with dual-type birefringent spherulites (positive and negative-type) only within a narrow range of T c s = 70-78 °C. At T c > 80 °C, the inter-band spacing decreases from a maximum and the crystal assembly becomes irregularly corrupted and loses the capacity for light interference. Periodic grating assemblies are probed by in-depth 3D dissection into periodically banded crystal aggregates of poly(p-dioxanone) (PPDO) to disclose such layered gratings possessing iridescence features similar to nature's structural coloration. This work amply demonstrates that grating assembly by orderly stacked crystal layers is feasible not only for accounting for the periodic birefringent ring bands with polarized light but also the distinct iridescence by interfering with white light.
Keyphrases
  • atomic force microscopy
  • electron microscopy
  • high speed
  • solid state
  • single molecule
  • molecular dynamics simulations
  • mass spectrometry
  • highly efficient