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Highly Selective Detection of Large-Sized Chemical Warfare Agents via Interface-Controlled Diffusion Channels of Graphene Oxide Frameworks AITranslate

Sungkyunkwan University (SKKU); Sungkyunkwan University (SKKU); Sungkyunkwan University (SKKU); Sungkyunkwan University (SKKU); Sungkyunkwan University (SKKU); Myongji University; Sungkyunkwan University (SKKU)
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Publisher: ACS
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Abstract AITranslate

Chemical warfare agents (CWAs), which contain organophosphonate groups, are highly toxic compounds designed to inflict harm and death. They have been utilized in both wartime conflicts and acts of terrorism. In response to the persistent threat of CWAs, various organic receptors and high-surface-area matrix materials have been extensively researched. This study investigates how the interlayer spacing of the graphene oxide framework (GOF) with receptors affects its ability to detect a large-sized simulant of CWAs, dimethyl methylphosphonate (DMMP). The interlayer spacing was controlled by the concentration and length of diamine spacers, varying from 7.8 to 10.5 Å. Quartz-crystal microbalance (QCM) and surface acoustic wave (SAW) were employed to conduct a cross-investigation into the sensitivity and selectivity of GOF. The enlarged diffusion channel width of the optimized GOF allows for easy accessibility of DMMP, resulting in over 99% selectivity compared to interfering volatile organic compounds (VOCs), and an 8.7-fold increase in adsorption sensitivity.

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DOI:https://doi.org/10.1021/acsmaterialslett.3c01229

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Citation Information:

Chemical warfare agents (CWAs), which contain organophosphonate groups, are highly toxic compounds designed to inflict harm and death. They have been utilized in both wartime conflicts and acts of terrorism. In response to the persistent threat of CWAs, various organic receptors and high-surface-area matrix materials have been extensively researched. This study investigates how the interlayer spacing of the graphene oxide framework (GOF) with receptors affects its ability to detect a large-sized simulant of CWAs, dimethyl methylphosphonate (DMMP). The interlayer spacing was controlled by the concentration and length of diamine spacers, varying from 7.8 to 10.5 Å. Quartz-crystal microbalance (QCM) and surface acoustic wave (SAW) were employed to conduct a cross-investigation into the sensitivity and selectivity of GOF. The enlarged diffusion channel width of the optimized GOF allows for easy accessibility of DMMP, resulting in over 99% selectivity compared to interfering volatile organic compounds (VOCs), and an 8.7-fold increase in adsorption sensitivity.

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GB/T 7714-2015 [1] G. Hwan Park, Meeree Kim, Hyunjung Kim, et al. ACS Materials Letters, 2024(6). DOI:10.1021/acsmaterialslett.3c01229.
MLA [1] G. Hwan Park, et al., ACS Materials Letters, no. 6, 2024, https://doi.org/10.1021/acsmaterialslett.3c01229.
APA [1] G. Hwan Park, Meeree Kim, Hyunjung Kim, Yeonsu Han, Hyun Ko, Hanleem Lee, & Hyoyoung Lee. (2024). ACS Materials Letters(6). https://doi.org/10.1021/acsmaterialslett.3c01229
IEEE [1] G. Hwan Park, Meeree Kim, Hyunjung Kim, Yeonsu Han, Hyun Ko, Hanleem Lee, and Hyoyoung Lee, ACS Materials Letters, no. 6, 2024, doi: 10.1021/acsmaterialslett.3c01229.