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Two-photon fluorescent polysiloxane-based films with thermally responsive self switching properties achieved by a unique reversible spirocyclization mechanism

机译:通过独特的可逆螺环化机理获得具有热响应性自切换特性的基于双光子荧光聚硅氧烷的薄膜

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摘要

Responsiveness and reversibility are present in nature, and are ubiquitous in biological systems. The realization of reversibility and responsiveness is of great importance in the development of properties and the design of new materials. However, two-photon fluorescent thermal-responsive materials have not been reported to date. Herein, we engineered thermally responsive polysiloxane materials ( Dns-non ) that exhibited unique two-photon luminescence, and this is the first report about thermally responsive luminescent materials with two-photon fluorescence. The fluorescence of Dns-non could switch from the “on” to “off” state through a facile heating and cooling process, which could be observed by the naked eye. Monitoring the temperature of the CPU in situ was achieved by easily coating D1-non onto the CPU surface, which verified the potential application in devices of Dns-non . A unique alkaline tuned reversible transition mechanism of rhodamine-B from its spirocyclic to its ring-open state was proposed. Furthermore, Dns-non appeared to be a useful cell adhesive for the culture of cells on the surface. We believe that the constructed thermally responsive silicon films which have promising utilization as a new type of functional fluorescent material, may show broad applications in materials chemistry or bioscience.
机译:响应性和可逆性是自然界中存在的,并且在生物系统中无处不在。可逆性和响应性的实现在性能开发和新材料设计中非常重要。然而,迄今尚未报道双光子荧光热响应材料。本文中,我们设计了表现出独特的双光子发光的热响应性聚硅氧烷材料(Dns-non),这是关于具有双光子荧光的热响应性发光材料的首次报道。 Dns-non的荧光可以通过便捷的加热和冷却过程从“打开”状态切换到“关闭”状态,这可以通过肉眼观察到。通过将D1-non轻松地涂覆到CPU表面即可实现对CPU温度的现场监控,从而验证了Dns-non在设备中的潜在应用。提出了独特的碱调节若丹明-B从其螺环态到其开环状态的可逆转变机理。此外,Dns-non似乎是用于表面细胞培养的有用细胞粘合剂。我们相信所构建的热响应硅膜作为新型功能性荧光材料具有广阔的应用前景,可能会在材料化学或生物科学领域显示出广泛的应用。

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