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Real-time detection of chlorine gas using Ni/Si shell/core nanowires.


ABSTRACT: We demonstrate the selective adsorption of Ni/Si shell/core nanowires (Ni-Si NWs) with a Ni outer shell and a Si inner core on molecularly patterned substrates and their application to sensors for the detection of chlorine gas, a toxic halogen gas. The molecularly patterned substrates consisted of polar SiO2 regions and nonpolar regions of self-assembled monolayers of octadecyltrichlorosilane (OTS). The NWs showed selective adsorption on the polar SiO2 regions, avoiding assembly on the nonpolar OTS regions. Utilizing these assembled Ni-Si NWs, we demonstrate a sensor for the detection of chlorine gas. The utilization of Ni-Si NWs resulted in a much larger sensor response of approximately 23% to 5 ppm of chlorine gas compared to bare Ni NWs, due to the increased surface-to-volume ratio of the Ni-Si shell/core structure. We expect that our sensor will be utilized in the future for the real-time detection of halogen gases including chlorine with high sensitivity and fast response.

SUBMITTER: Lee DJ 

PROVIDER: S-EPMC4314467 | biostudies-literature | 2015

REPOSITORIES: biostudies-literature

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Real-time detection of chlorine gas using Ni/Si shell/core nanowires.

Lee Dong-Jin DJ   Heo Kwang K   Lee Hyungwoo H   Jin Joon-Hyung JH   Chang Hochan H   Park Minjun M   Lee Han-Bo-Ram HB   Kim Hyungjun H   Lee Byung Yang BY  

Nanoscale research letters 20150128


We demonstrate the selective adsorption of Ni/Si shell/core nanowires (Ni-Si NWs) with a Ni outer shell and a Si inner core on molecularly patterned substrates and their application to sensors for the detection of chlorine gas, a toxic halogen gas. The molecularly patterned substrates consisted of polar SiO2 regions and nonpolar regions of self-assembled monolayers of octadecyltrichlorosilane (OTS). The NWs showed selective adsorption on the polar SiO2 regions, avoiding assembly on the nonpolar  ...[more]

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