| Literature DB >> 23493124 |
Zubair Ahmad1, Qayyum Zafar, Khaulah Sulaiman, Rizwan Akram, Khasan S Karimov.
Abstract
In this paper, we present the effect of varying humidity levels on the electrical parameters and the multi frequency response of the electrical parameters of an organic-inorganic composite (Entities:
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Year: 2013 PMID: 23493124 PMCID: PMC3658764 DOI: 10.3390/s130303615
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.576
Figure 1.(a) Molecular structure of nickel phthalocyanine (NiPc); (b) molecular structure of poly-N-epoxypropylcarbazole (PEPC).
Figure 2.(a) and (b) represent SEM micrographs of Cu2O-PEPC-NiPC thin film at 1K and 3K magnification, respectively.
Figure 3.EDX compositional analysis of organic-inorganic composite film.
Figure 4.Schematic view of Ag/Cu2O-PEPC-NiPC/Ag humidity sensor.
Figure 5.Characterization setup for electrical characterization of the humidity sensor.
Figure 6.3D AFM micrograph of organic-inorganic composite film.
Figure 7.Capacitance-relative humidity relationship of the Ag/Cu2O-PEPC-NiPC/Ag sensor at 100 Hz, 1 kHz and 10 kHz.
Figure 8.Response and recovery time (40% RH-97% RH level) of the Ag/Cu2O-PEPC-NiPC/Ag humidity sensors at 100 Hz.
Figure 9.Hysteresis-relative humidity relationship for Ag/Cu2O-PEPC-NiPC/Ag.
Comparison of sensitivity and bandwidth.
| PEPC+Cu2O [ | 0.83 pF/%RH | 36–86%RH |
| NiPC [ | 8.93 pF/%RH | 35–90%RH |
| PEPC+NiPc+ZnO [ | 12.2 pF/%RH | 50–95%RH |
| PEPC+NiPC+ Cu2O [present work] | 31.6 pF/%RH | 40–100%RH |