Enrique-Jimenez Patricia, Vega Juan F, Martínez-Salazar Javier, Ania Fernando, Flores Araceli
Department of Macromolecular Physics, Institute for the Structure of Matter (IEM-CSIC), Serrano 119 and 113bis, 28006 Madrid, Spain.
Polymers (Basel). 2016 Oct 12;8(10):358. doi: 10.3390/polym8100358.
Nanoindentation provides clear evidence that spherulite banding can be associated with a continuous modulation of mechanical properties from the more compliant peaks to the stiffer valleys. The structural arrangement in polymer-banded spherulites has intrigued scientists for many decades, and the debate has been recently intensified with the advent of new experimental evidence. The present paper approaches this issue by exploring the local mechanical properties of poly(3-hydroxybutyrate-co-3-hydroxyvalerate)-ringed spherulites via nanoindentation and discussing the confidence of the results. It was found that storage modulus and hardness across the banding morphology can be described as a sequence of regular oscillations with a periodicity that exactly matches the one observed using optical and atomic force microscopy. Results are consistent with the model of regular twisting of the lamellae, with flat-on arrangement in the low regions and edge-on lamellae in the crests.
纳米压痕提供了明确的证据,表明球晶带状结构可能与机械性能从较柔顺的峰到较硬的谷的连续调制有关。聚合物带状球晶中的结构排列几十年来一直吸引着科学家,随着新实验证据的出现,最近这场争论愈演愈烈。本文通过纳米压痕探索聚(3-羟基丁酸酯-co-3-羟基戊酸酯)环状球晶的局部力学性能并讨论结果的可信度来探讨这个问题。研究发现,整个带状形态的储能模量和硬度可描述为一系列规则振荡,其周期性与使用光学和原子力显微镜观察到的周期性完全匹配。结果与片晶规则扭曲模型一致,在低区域为平躺排列,在顶部为边缘排列的片晶。