
Study the performance of pentacene based organic field effect transistor by using monolayer, bilayer and trilayer with different gate insulators
Author(s) -
Bushra H. Mohammed,
Estabraq T. Abdullah
Publication year - 2020
Publication title -
iraqi journal of physics
Language(s) - English
Resource type - Journals
eISSN - 2664-5548
pISSN - 2070-4003
DOI - 10.30723/ijp.v18i44.512
Subject(s) - pentacene , materials science , organic field effect transistor , transconductance , field effect transistor , optoelectronics , monolayer , bilayer , gate dielectric , transistor , dielectric , voltage , nanotechnology , electrical engineering , layer (electronics) , thin film transistor , membrane , chemistry , biochemistry , engineering
In this paper, Pentacene based-organic field effect transistors (OFETs) by using monolayer , bilayer and three layers of three different gate insulators (ZrO2, PVA and CYEPL) , two layers of different gate insulators (ZrO2/PVA and ZrO2/CYEPL ) and three layers of different gate insulators (ZrO2/PVA/CYEPL) were studied its electrical performance (output (Id-Vd)and transfer(Id-Vg) characteristics)by using the gradual-channel approximation model. The device exhibits a typical output curve of a field-effect transistor (FET). Furthermore, analysis of electrical characterization was done to investigate the source-drain voltage (Vd) dependent current and note The effects of gate dielectric on electrical performance for OFET. As this work take account of effect capacitance semiconductor in performance OFETs. The values of current which calculated using MATLAB simulation exhibited a value of current increase with increasing source-drain voltage. Also the Organic Transistor modeling software was used to evaluate the transconductance calculated.