4.6 Article

Ultrasensitive Flexible Olfactory Receptor-Derived Peptide Sensor for Trimethylamine Detection by the Bending Connection Method

Journal

ACS SENSORS
Volume 7, Issue 11, Pages 3513-3520

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acssensors.2c01893

Keywords

olfactory receptor-derived peptide; flexible gas sensor; bending; trimethylamine; single-walled carbon nanotube

Funding

  1. National Natural Science Foundation of China
  2. Open Project Program of the State Key Laboratory of Proteomics
  3. [61871285]
  4. [21974094]
  5. [SKLP-O202004]

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In this study, a novel bending connection method was developed to prepare flexible ORP sensors for ultrasensitive TMA detection. The sensors, based on SWCNTs and ORPs, showed significantly improved detection limit and excellent sensitivity to TMA under different bending conditions.
Trimethylamine (TMA) is a harmful gas that exists ubiquitously in the environment; therefore, the sensitive and specific monitoring of TMA is necessary. In this work, we prepared ultrasensitive flexible sensors for TMA detection based on single walled carbon nanotubes (SWCNTs) and olfactory receptor derived peptides (ORPs) on low-cost plastic substrates. A novel bending connection method was developed by intentionally bending the interdigitated electrodes with SWCNTs to form a three-dimensional structure during the ORP-connection process, leading to the exposure of more modification sites. The method showed similar to 4.7-fold more effective connection amount of the ORPs to SWCNTs compared to the conventional flat-condition connection method. The flexible ORP-SWCNT sensors could significantly improve the limit of detection for gaseous TMA from the reported lowest limit of 10 parts per quadrillion (ppq) to 0.1 ppq. The flexible ORP sensors also exhibited excellent sensitivity to vaporized TMA standards and TMA generated by different kinds of foods under different bending conditions. The results showed that the bending connection method in this work was effective for ultrasensitive flexible ORP sensors and their associated applications.

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