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In Situ Electroluminescence Color Tuning by Thermal Deprotonation Suitable for Thermal Sensors and Anti-fraud Labels

机译:原位电致发光色调通过热去质子化适用于热传感器和防欺诈标签

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摘要

A novel and versatile approach to tune photoluminescence and electroluminescence by in situ controlled thermal deprotonation is presented. This methodology, based on a single organic pi-conjugated material (pyrene derivative), allows the manufacturing of organic light-emitting diode (OLED) prototypes by solution methods with controlled tunable emission ranging from the orange (protonated form of the dye) to the blue (pristine or deprotonated form). While several protonation/deprotonation cycles can be performed on thin films, for the devices only one cycle is possible so that their use as anti-fraud labels can be envisaged. OLEDs exhibit daylight visible brightness of 150cd m(-2) and device lifetime exceeding 30 hours of continuous operation. Thanks to the simplicity of both material design and device fabrication our approach opens new perspectives in the wide field of thermal sensors for customer care or risk perception.
机译:提出了一种新颖的和多功能的曲调光致发光和电致发光方法,通过原位控制的热反质子进行。 该方法基于单个有机PI缀合材料(芘衍生物),通过溶液方法制造有机发光二极管(OLED)原型,该方法具有受控可调谐发射的范围从橙色(质子化的染料)到 蓝色(原始或去质子化形式)。 虽然可以在薄膜上进行几个质子化/去质子化循环,但对于器件,仅可以设想它们作为防欺诈标签的使用。 OLEDS表现出日光可见光亮度为150cd m(-2),并且设备寿命超过30小时的连续操作。 由于材料设计和设备制造的简单性,我们的方法在热传感器宽领域开辟了新的视角,以实现客户关注或风险感知。

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