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Selective Functionalization of High-Resolution Cu?O Nanopatterns via Galvanic Replacement for Highly Enhanced Gas Sensing Performance.


ABSTRACT: Recently, high-resolution patterned metal oxide semiconductors (MOS) have gained considerable attention for enhanced gas sensing performance due to their polycrystalline nature, ultrasmall grain size (~5 nm), patternable properties, and high surface-to-volume ratio. Herein, we significantly enhanced the sensing performance of that patterned MOS by galvanic replacement, which allows for selective functionalization on ultrathin Cu?O nanopatterns. Based on the reduction potential energy difference between the base channel material (Cu?O) and the decorated metal ion (Pt2+), Pt could be selectively and precisely decorated onto the desired area of the Cu?O nanochannel array. Overall, the Pt-decorated Cu?O exhibited 11-fold higher NO? (100 ppm) sensing sensitivity as compared to the non-decorated sensing channel, the while the channel device with excessive Pt doping showed complete loss of sensing properties.

SUBMITTER: Kim JY 

PROVIDER: S-EPMC6308504 | biostudies-literature | 2018 Dec

REPOSITORIES: biostudies-literature

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Selective Functionalization of High-Resolution Cu₂O Nanopatterns via Galvanic Replacement for Highly Enhanced Gas Sensing Performance.

Kim Ju Ye JY   Cho Soo-Yeon SY   Jung Hee-Tae HT  

Sensors (Basel, Switzerland) 20181215 12


Recently, high-resolution patterned metal oxide semiconductors (MOS) have gained considerable attention for enhanced gas sensing performance due to their polycrystalline nature, ultrasmall grain size (~5 nm), patternable properties, and high surface-to-volume ratio. Herein, we significantly enhanced the sensing performance of that patterned MOS by galvanic replacement, which allows for selective functionalization on ultrathin Cu₂O nanopatterns. Based on the reduction potential energy difference  ...[more]

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