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Integrated luminescent chemical microsensors based on GaN LEDs for security applications using smartphones

机译:基于GaN LED的集成发光化学微传感器,用于使用智能手机的安全应用

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Development of PCB-integrateable microsensors for monitoring chemical species is a goal in areas such as lab-on-a-chip analytical devices, diagnostics medicine and electronics for hand-held instruments where the device size is a major issue. Cellular phones have pervaded the world inhabitants and their usefulness has dramatically increased with the introduction of smartphones due to a combination of amazing processing power in a confined space, geolocalization and manifold telecommunication features. Therefore, a number of physical and chemical sensors that add value to the terminal for health monitoring, personal safety (at home, at work) and, eventually, national security have started to be developed, capitalizing also on the huge number of circulating cell phones. The chemical sensor-enabled "super" smartphone provides a unique (bio)sensing platform for monitoring airborne or waterborne hazardous chemicals or microorganisms for both single user and crowdsourcing security applications. Some of the latest ones are illustrated by a few examples. Moreover, we have recently achieved for the first time (covalent) functionalization of p- and n-GaN semiconductor surfaces with tuneable luminescent indicator dyes of the Ru-polypyridyl family, as a key step in the development of innovative microsensors for smartphone applications. Chemical "sensoring" of GaN-based blue LED chips with those indicators has also been achieved by plasma treatment of their surface, and the micrometer-sized devices have been tested to monitor O_2 in the gas phase to show their full functionality. Novel strategies to enhance the sensor sensitivity such as changing the length and nature of the siloxane buffer layer are discussed in this paper.
机译:在诸如芯片级实验室分析设备,诊断医学和用于手持式仪器的电子设备等领域,设备尺寸是一个主要问题,因此开发用于监测化学物质的可与PCB集成的微传感器是一个目标。蜂窝电话已普及到世界各地,由于在密闭空间中惊人的处理能力,地理定位和多种电信功能的结合,蜂窝电话的用途大大增加。因此,许多物理和化学传感器可为终端增加价值,以进行健康监控,人身安全(在家中,工作中),并最终开发国家安全,同时也利用大量的流通手机。 。具有化学传感器功能的“超级”智能手机提供了一个独特的(生物)传感平台,用于监视单用户和众包安全应用程序中的空中或水性危险化学物质或微生物。一些示例说明了一些最新的示例。此外,我们最近首次使用Ru-polypyridyl系列可调节的发光指示剂染料将p-和n-GaN半导体表面(共价)官能化,这是开发用于智能手机应用的创新微传感器的关键一步。带有这些指示剂的GaN基蓝色LED芯片的化学“感测”也已经通过对其表面进行等离子体处理来实现,并且微米级的器件已经过测试,可以监测气相中的O_2以显示其全部功能。本文讨论了提高传感器灵敏度的新策略,例如更改了硅氧烷缓冲层的长度和性质。

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