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Bioengineered Silicon Diatoms: Adding Photonic Features to a Nanostructured Semiconductive Material for Biomolecular Sensing

机译:生物工程硅硅藻:为用于生物分子传感的纳米结构半导体材料增加光子特性

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摘要

Native diatoms made of amorphous silica are first converted into silicon structures via magnesiothermic process, preserving the original shape: electron force microscopy analysis performed on silicon-converted diatoms demonstrates their semiconductor behavior. Wet surface chemical treatments are then performed in order to enhance the photoluminescence emission from the resulting silicon diatoms and, at the same time, to allow the immobilization of biological probes, namely proteins and antibodies, via silanization. We demonstrate that light emission from semiconductive silicon diatoms can be used for antibody-antigen recognition, endorsing this material as optoelectronic transducer.
机译:首先,由无定形二氧化硅制成的天然硅藻通过磁热过程转化为硅结构,并保持原始形状:对硅转化的硅藻进行的电子力显微镜分析证明了其半导体性能。然后进行湿表面化学处理,以增强所得硅硅藻的光致发光发射,同时允许通过硅烷化固定生物探针,即蛋白质和抗体。我们证明了从半导体硅藻发出的光可用于抗体-抗原识别,认可这种材料作为光电换能器。

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