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10.1038/srep18082

http://scihub22266oqcxt.onion/10.1038/srep18082
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C4676022!4676022!26656113
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suck abstract from ncbi


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pmid26656113      Sci+Rep 2015 ; 5 (ä): ä
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  • Flexible Sensory Platform Based on Oxide-based Neuromorphic Transistors #MMPMID26656113
  • Liu N; Zhu LQ; Feng P; Wan CJ; Liu YH; Shi Y; Wan Q
  • Sci Rep 2015[]; 5 (ä): ä PMID26656113show ga
  • Inspired by the dendritic integration and spiking operation of a biological neuron, flexible oxide-based neuromorphic transistors with multiple input gates are fabricated on flexible plastic substrates for pH sensor applications. When such device is operated in a quasi-static dual-gate synergic sensing mode, it shows a high pH sensitivity of ~105?mV/pH. Our results also demonstrate that single-spike dynamic mode can remarkably improve pH sensitivity and reduce response/recover time and power consumption. Moreover, we find that an appropriate negative bias applied on the sensing gate electrode can further enhance the pH sensitivity and reduce the power consumption. Our flexible neuromorphic transistors provide a new-concept sensory platform for biochemical detection with high sensitivity, rapid response and ultralow power consumption.
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