Enhanced vapour sensing using silicon nanowire devices coated with Pt nanoparticle functionalized porous organic frameworks
Author(s) -
Anping Cao,
Meixia Shan,
Laura Paltrinieri,
Wiel H. Evers,
Liangyong Chu,
Łukasz Półtorak,
J.H. Klootwijk,
Beatriz Seoane,
Jorge Gascón,
Ernst J. R. Sudhölter,
Louis C. P. M. de Smet
Publication year - 2018
Publication title -
nanoscale
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.038
H-Index - 224
eISSN - 2040-3372
pISSN - 2040-3364
DOI - 10.1039/c7nr07745a
Subject(s) - materials science , porous silicon , nanowire , nanotechnology , nanoparticle , porosity , silicon nanowires , silicon , chemical engineering , optoelectronics , composite material , engineering
Recently various porous organic frameworks (POFs, crystalline or amorphous materials) have been discovered, and used for a wide range of applications, including molecular separations and catalysis. Silicon nanowires (SiNWs) have been extensively studied for diverse applications, including as transistors, solar cells, lithium ion batteries and sensors. Here we demonstrate the functionalization of SiNW surfaces with POFs and explore its effect on the electrical sensing properties of SiNW-based devices. The surface modification by POFs was easily achieved by polycondensation on amine-modified SiNWs. Platinum nanoparticles were formed in these POFs by impregnation with chloroplatinic acid followed by chemical reduction. The final hybrid system showed highly enhanced sensitivity for methanol vapour detection. We envisage that the integration of SiNWs with POF selector layers, loaded with different metal nanoparticles will open up new avenues, not only in chemical and biosensing, but also in separations and catalysis.
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