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Color-Based Optical Detection of Glass Transitions on Microsecond Timescales Enabled by Exciplex Dynamics

机译:复杂动力学实现的基于微秒时间尺度的玻璃化转变的基于颜色的光学检测

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摘要

Every measurement technique operates on a given timescale and measurements using emissive small molecule sensors are no exception. A family of luminescent sensors providing first optical characterization of dynamic phenomena in polymers at a timescale of several microseconds is described. This performance originates from the dynamics manifested in the excited state of the sensor molecules where diffusioncontrolled events select the emission color while radiative phenomena define the global operation timescale. Since the mechanism responsible for signal generation is confined to the short lived excited state of emissive probe, it is possible observe an unprecedented link between the timescale of sensory action and that of photoluminescence. An application of this new methodology is demonstrated by performing general, short timescale detection of glass transitions in a temperature ranges precluding the informative range of conventional techniques by tens of degrees.
机译:每种测量技术都在给定的时间尺度上运行,并且使用发射小分子传感器进行测量也不例外。描述了在几微秒的时间尺度上提供聚合物中动态现象的第一光学表征的发光传感器家族。此性能源于在传感器分子的激发态中表现出的动力学,其中扩散控制的事件选择了发射颜色,而辐射现象则定义了整体操作时间尺度。由于负责信号生成的机制被限制在发射探针的短暂激发状态下,因此有可能在感觉行为的时间尺度和光致发光的时间尺度之间观察到前所未有的联系。通过在比传统技术的信息范围宽几十度的温度范围内对玻璃化转变进行常规的短时标检测,证明了这种新方法的应用。

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