TY - GEN
T1 - Phthalocyanine/graphene hybrid-materials for gas sensing in bio-medical applications
AU - Mensing, Johannes Ph
AU - Sriprachuabwong, Chakrit
AU - Wisitsoraat, Anurat
AU - Kerdcharoen, Teerakiat
AU - Tuantranont, Adisorn
PY - 2011
Y1 - 2011
N2 - In this work the fabrication of graphene/metal phthalocyanine (MePc) hybrid-materials was investigated. MePcs are biomimetic compounds modelled after the biologically important class of porphyrins (e.g. heme-group). They are widely used in sensing applications, since they exhibit easily detectable physicochemical changes when exposed to analytes frequently found in biology such as alcohols, aldehydes and other hydrocarbons, which makes them potential candidates for bio-medical devices such as breath-analyzers. Hence, it was attempted to enhance sensing performance by introducing graphene, which offers intriguing new possibilities for MePc-based sensing materials. Hybrid-material has been produced by mixing and sonicating graphene and MePc in solution. This method lead to immobilization of MePc on graphene sheets by π-π stacking. The material has been investigated by UV/Vis spectroscopy, optical-and electron scanning microscopy (SEM). Finally, gas sensing experiments have been performed to investigate the influence of the addition of graphene on the optical and electrical sensing behaviour of MePc films. It could be shown that the effect on optical sensing capabilities is rather slight. However, upon introduction of highly conductive graphene, MePc-based materials are more readily applicable as conductometric/potentiometric gas sensors.
AB - In this work the fabrication of graphene/metal phthalocyanine (MePc) hybrid-materials was investigated. MePcs are biomimetic compounds modelled after the biologically important class of porphyrins (e.g. heme-group). They are widely used in sensing applications, since they exhibit easily detectable physicochemical changes when exposed to analytes frequently found in biology such as alcohols, aldehydes and other hydrocarbons, which makes them potential candidates for bio-medical devices such as breath-analyzers. Hence, it was attempted to enhance sensing performance by introducing graphene, which offers intriguing new possibilities for MePc-based sensing materials. Hybrid-material has been produced by mixing and sonicating graphene and MePc in solution. This method lead to immobilization of MePc on graphene sheets by π-π stacking. The material has been investigated by UV/Vis spectroscopy, optical-and electron scanning microscopy (SEM). Finally, gas sensing experiments have been performed to investigate the influence of the addition of graphene on the optical and electrical sensing behaviour of MePc films. It could be shown that the effect on optical sensing capabilities is rather slight. However, upon introduction of highly conductive graphene, MePc-based materials are more readily applicable as conductometric/potentiometric gas sensors.
KW - gas sensing
KW - graphene
KW - metal phthalocyanine
UR - https://www.scopus.com/pages/publications/84860490174
U2 - 10.1109/BMEiCon.2012.6172049
DO - 10.1109/BMEiCon.2012.6172049
M3 - Conference contribution
AN - SCOPUS:84860490174
SN - 9781457721908
T3 - BMEiCON-2011 - 4th Biomedical Engineering International Conference
SP - 190
EP - 193
BT - BMEiCON-2011 - 4th Biomedical Engineering International Conference
T2 - 4th Biomedical Engineering International Conference, BMEiCON-2011
Y2 - 29 January 2012 through 31 January 2012
ER -