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10.1021/acssensors.7b00180

http://scihub22266oqcxt.onion/10.1021/acssensors.7b00180
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C5485373!5485373!28670622
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suck abstract from ncbi


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pmid28670622      ACS+Sens 2017 ; 2 (6): 724-8
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  • Electrochemical Amplification in Side-by-Side Attoliter Nanogap Transducers #MMPMID28670622
  • Zafarani HR; Mathwig K; Sudhölter EJR; Rassaei L
  • ACS Sens 2017[Jun]; 2 (6): 724-8 PMID28670622show ga
  • We report a strategy for the fabrication of a new type of electrochemical nanogap transducer. These nanogap devices are based on signal amplification by redox cycling. Using two steps of electron-beam lithography, vertical gold electrodes are fabricated side by side at a 70 nm distance encompassing a 20 attoliter open nanogap volume. We demonstrate a current amplification factor of 2.5 as well as the possibility to detect the signal of only 60 analyte molecules occupying the detection volume. Experimental voltammetry results are compared to calculations from finite element analysis.
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