1. Charge carrier modulation in dual-gated graphene field effect transistor using honey as polar organic gate dielectric
- Author
-
Sana Khan, N. M. A. Hadia, Meshal Alzaid, W. S. Mohamed, Fai Alsalh, Sana Zakar, Muhammad Zahir Iqbal, C. Bilel, and Syed Shabhi Haider
- Subjects
010302 applied physics ,Materials science ,Fabrication ,Graphene ,business.industry ,Gate dielectric ,02 engineering and technology ,General Chemistry ,Dielectric ,021001 nanoscience & nanotechnology ,01 natural sciences ,law.invention ,law ,Modulation ,0103 physical sciences ,Optoelectronics ,General Materials Science ,Field-effect transistor ,Charge carrier ,0210 nano-technology ,business ,Voltage - Abstract
Charge carrier modulation of graphene-based field effect transistors (GFETs) is the key factor to utilize and enhance its fascinating properties for technological applicability. Here, we have demonstrated the gate-dependent tweaking of electrical properties of graphene devices by application of honey as a top gate dielectric. Electrical characterization of dual-gated GFET is elucidated at different top and back-gate voltages. A charge neutrality point is fine-tuned by varying the top gate voltage (Vtg) from + 3 to − 4 V. The change in carrier density is clearly observed from 3.66 × 1012 to 2.15 × 1011 cm−2 at + 3 to − 4 Vtg. The charge carrier mobility of gel-gated GFET is increased significantly to 5376 cm2/V ⋅ sec by increasing top-gate voltages up to − 4 V. Result demonstrates a cost-effective, facile and rapid fabrication of top-gated devices and suggest natural dielectric materials as good candidate to replace conventionally available gate dielectrics in FET technology.
- Published
- 2021
- Full Text
- View/download PDF