论文标题

桥接pico-to-nanonewtons具有比值计量探针,用于监测纳米级聚合物物理学之前

Bridging Pico-to-Nanonewtons with a Ratiometric Force Probe for Monitoring Nanoscale Polymer Physics Before Damage

论文作者

Kotani, Ryota, Yokoyama, Soichi, Nobusue, Shunpei, Yamaguchi, Shigehiro, Osuka, Atsuhiro, Yabu, Hiroshi, Saito, Shohei

论文摘要

了解纳米级力量在Pico-to-Nanonewton范围内的传播在聚合物物理学中很重要。尽管物理方法在分析凝结环境中的局部力分布方面存在局限性,但使用力探针的化学分析有望。但是,在结构损坏之前探测了局部力量的严格要求。这些力的幅度对应于低于共价键支球的范围(从200 pn到几个NN)和高于热波动的范围(几个PN)。在这里,我们报告了一个构型柔性双荧光探针,理论上估计的阈值约为100 pn。该探针可以对拉伸聚合物链网络中局部力的分布进行比例分析。无需更改聚合物的固有特性,就可以实时可逆地监测力分布。探针位置的化学控制表明,在交联链链链中局部应力浓度是主要链中的两倍,尤其是在压力硬化区域。由于敏感性高,估计应力探针的百分比比常规机械学的激活率高1000倍。

Understanding the transmission of nanoscale forces in the pico-to-nanonewton range is important in polymer physics. While physical approaches have limitations in analyzing the local force distribution in condensed environments, chemical analysis using force probes is promising. However, there are stringent requirements for probing the local forces generated before structural damage. The magnitude of those forces corresponds to the range below covalent bond scission (from 200 pN to several nN) and above thermal fluctuation (several pN). Here, we report a conformationally flexible dual-fluorescence force probe with a theoretically estimated threshold of approximately 100 pN. This probe enables ratiometric analysis of the distribution of local forces in a stretched polymer chain network. Without changing the intrinsic properties of the polymer, the force distribution was reversibly monitored in real time. Chemical control of the probe location demonstrated that the local stress concentration is twice as biased at crosslinkers than at main chains, particularly in a strain-hardening region. Due to the high sensitivity, the percentage of stressed force probes was estimated to be more than 1000 times higher than the activation rate of a conventional mechanophore.

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