4.7 Article

Modulation of molecular hybridization and charge screening in a carbon nanotube network channel using the electrical pulse method

Journal

LAB ON A CHIP
Volume 13, Issue 18, Pages 3755-3763

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c3lc50524c

Keywords

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Funding

  1. Center for Integrated Smart Sensors
  2. Ministry of Science, ICT & Future Planning as Global Frontier Project [CISS-2012054186]
  3. R&D Program of MKE/KEIT [10033590]
  4. Development of Disposable Cancer Diagnosis Sensor of Home-care Type with High Sensitivity
  5. Pioneer Research Center Program through the National Research Foundation of Korea
  6. Ministry of Science, ICT & Future Planning [NRF-2012-0009555]
  7. Future-based Technology Development Program (Nano Fields) through the National Research Foundation of Korea (NRF) [2009-0082952]
  8. Ministry of Science, ICT & Future Planning

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In this paper, we investigate the effect of electrical pulse bias on DNA hybridization events in a biosensor platform, using a Carbon Nanotube Network (CNN) and Gold Nano Particles (GNP) as an electrical channel. The scheme provides both hybridization rate enhancement of bio molecules, and electrical measurement in a transient state to avoid the charge screening effect, thereby significantly improving the sensitivity. As an example, the probe DNA molecules oscillate with pulse trains, resulting in the enhancement of DNA hybridization efficiency, and accordingly of the sensor performances in Tris-EDTA (TE) buffer solution, by as much as over three times, compared to the non-biasing conditions. More importantly, a wide dynamic range of 10(6) (target-DNA concentration from 5 pM to 5 mu M) is achieved in human serum. In addition, the pulse biasing method enables one to obtain the conductance change, before the ions within the Electrical Double Layer (EDL) are redistributed, to avoid the charge screening effect, leading to an additional sensitivity enhancement.

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