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用于简易和可逆压力感应的动态磷光探针。

Dynamic Phosphorescent Probe for Facile and Reversible Stress Sensing.

机构信息

Coordination Chemistry and Catalysis Unit, Okinawa Institute of Science and Technology Graduate University, 1919-1 Tancha, Onna-son, Kunigami-gun, Okinawa, 904-0495, Japan.

出版信息

Adv Mater. 2017 Jun;29(22). doi: 10.1002/adma.201700563. Epub 2017 Mar 20.

Abstract

Dynamic phosphorescent copper complex incorporated into the main chain of polyurethanes produces a facile and reversible response to tensile stress. In contrast to common deformation sensors, the applied stress does not lead to bond scission, or alters the phosphor structure. The suppression of dynamics responsible for the nonradiative relaxation is found to be the major pathway governing stress response. As a result, the response of dynamic phosphor described in this work is stress specific. Compared to initial unloaded state, a nearly twofold increase of photoluminescence intensity occurs in response to a 5-35 MPa stress applied to pristine metalated polymers or their blends with various polyurethanes. Finally, the dynamic sensor proves useful for mapping stress distribution patterns and tracking dynamic phenomena in polyurethanes using simple optical imaging techniques.

摘要

动态磷光铜配合物掺入到聚氨酯的主链中,对拉伸应力产生了一种简单而可逆的响应。与常见的变形传感器不同,所施加的应力不会导致键的断裂,也不会改变磷光体的结构。研究发现,抑制动态过程是控制应力响应的主要途径,而动态过程负责非辐射弛豫。因此,本工作中描述的动态磷光体的响应是具有应力特异性的。与初始未加载状态相比,在施加 5-35 MPa 的应力于未负载的金属化聚合物或其与各种聚氨酯的混合物时,磷光强度几乎增加了一倍。最后,该动态传感器通过简单的光学成像技术,可用于在聚氨酯中绘制应力分布模式和跟踪动态现象。

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