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Integration of Amorphous Silicon Photosensors with Thin Film Interferential Filter for Biomolecule Detection

机译:用薄膜干涉滤波器的无定形硅光电传感器的集成生物分子检测

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This work presents a thin film device, combining, on the same glass substrate, photosensors and long-pass interferential filter to achieve a compact and efficient sensor for biomolecule detection. The photosensors are amorphous silicon stacked structures, while the interferential filter is fabricated alternating layers of silicon dioxide and titanium dioxide, directly grown over the photosensors. The system has been optimized to effectively detect the natural fluorescence of Ochratoxin A, a highly toxic mycotoxin present in different food commodities. In particular, the long-pass interferential filter has been designed to reject the wavelengths arising from the excitation source (centered at 330 nm) thus transmitting the OTA emission spectrum (centered at 470 nm). Experimental results show that the filter strongly reduces the photosensors quantum efficiency below 420 nm, while keeps it nearly constant at higher wavelength.
机译:该工作呈现薄膜装置,在相同的玻璃基板,光电图料和长通干滤器上组合,以实现用于生物分子检测的紧凑且有效的传感器。光电传感器是非晶硅堆叠结构,而干扰滤波器是制造的二氧化硅和二氧化钛的交替层,直接在光电传感器上生长。该系统已被优化,以有效地检测Ochratoxin A的天然荧光,其具有不同食品商品中存在的一种高度毒性的霉菌毒素。特别地,长通干燥过滤器已经设计成拒绝由激发源(以330nm为中心)产生的波长,从而传输OTA发射光谱(以470nm为中心)。实验结果表明,过滤器强烈降低了光电传感器量子效率低于420nm,同时保持在较高波长下几乎恒定。

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