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首页> 外文期刊>Research journal of pharmacy and technology >Opto chemical Transducers of GalnN Quantum glowing structure of Biosensor and Chemical Sensors for Health Care System
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Opto chemical Transducers of GalnN Quantum glowing structure of Biosensor and Chemical Sensors for Health Care System

机译:医疗保健系统生物传感器和化学传感器Galnn量子发光结构的光学化学传感器

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A sensor for in vivo biomechanical characterization of buttock soft tissue has been developed and evaluated. The sensor measures interface pressure, applied force, tilt, and rotation angle of the sensor head, and the thicknesses of multiple soft tissue layers. In this work, examinations on gallium indium nitride (GalnN) quantum well structures as op to chemical transducers in (bio) concoction detecting are displayed. As opposed to the regular electrical read-out of Ill-nitride-based sensors, an absolutely optical photoluminescence (PL) read-out is performed. A noteworthy otherworldly move of the quantum well photoluminescence is seen with shifting surface change. The ghostly photoluminescence move can be credited to a remotely initiated quantum restricted Stark impact (QRSI) brought about by the adsorbed species stored on the quantum well surface. Keeping in mind the end goal to enhance the affectability of the transducer components, distinctive compound surface medications are contemplated. Specifically, optical detecting explores different avenues regarding decreasing and oxidizing gasses are performed with a specific end goal to examine the quantum well photoluminescence reaction. Furthermore, optical examinations of the iron-storage atom ferritin with shifting iron load are introduced. The iron heap of this particle is by and large considered as an unrivaled biomarker for extreme ailments, for example, Alzheimer's ailment. As opposed to traditional fluorescent names, GalnN quantum wells give an a great deal more steady iridescence sensor, and thus, are promising contender for cutting edge bio analytical sensor structures.
机译:开发和评估了用于臀部软组织的体内生物力学表征的传感器。传感器测量传感器头的接口压力,施加的力,倾斜和旋转角度,以及多个软组织层的厚度。在这项工作中,显示氮化镓铟氮化镓(Galnn)量子阱结构作为(Bio)混合物检测中的化学传感器的氮化镓(Galnn)量子阱结构。与常规电气读出的基于氮化物的传感器相反,执行绝对光学光致发光(PL)读出。通过移位表面变化,可以看到量子阱光致发光的值得注意的其他移动。幽灵光致发光的移动可以归功于储存在量子阱表面上的吸附物种所带来的远程引发的量子限制的抗冲击撞击(QRSI)。考虑到最终目标,以提高换能器组分的可变形性,考虑了独特的复合表面药物。具体地,光学检测探讨了关于减少和氧化气体的不同途径,以特定的最终目标来检查量子阱光致发光反应。此外,引入了具有换锡铁载荷的铁储存原子铁蛋白的光学检查。这种颗粒的铁堆由并且大型被认为是一个无与伦比的生物标志物,用于极端疾病,例如阿尔茨海默氏症的疾病。与传统的荧光名称相反,Galnn量子阱给出了一个很大的透明度传感器,因此是用于切割边缘生物分析传感器结构的承诺竞争者。

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