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Dr. Panneerselvam Devibala
Dr. Panneerselvam Devibala
NPDF, National Institute of Technology, Tiruchirapalli
Verified email at students.cutn.ac.in - Homepage
Title
Cited by
Cited by
Year
Synthesis of Aroylbenzoate‐Based Push‐Pull Molecules for OFET Applications
P Devibala, R Dheepika, P Vadivelu, S Nagarajan
ChemistrySelect 4 (8), 2339-2346, 2019
272019
Improved Resistive Switching WORM Memory Behavior in D-π-A Architectures by Modifying the Terminal Donor Units
D Harshini, VM Angela, P Devibala, PM Imran, NSP Bhuvanesh, ...
ACS Applied Electronic Materials 4 (9), 4383-4395, 2022
152022
Hexaarylbenzene based high-performance p-channel molecules for electronic applications
P Devibala, B Balambiga, S Noureen, S Nagarajan
RSC advances 11 (19), 11672-11701, 2021
122021
Picene and PTCDI based solution processable ambipolar OFETs
B Balambiga, R Dheepika, P Devibala, PM Imran, S Nagarajan
Scientific Reports 10 (1), 22029, 2020
112020
Butterfly‐like triarylamines with high hole mobility and on/off ratio in bottom‐gated OFETs
P Devibala, B Balambiga, P Mohamed Imran, NSP Bhuvanesh, ...
Chemistry–A European Journal 27 (62), 15375-15381, 2021
102021
High mobility and ON/OFF ratio of solution‐processable p‐channel OFETs from arylacetylene end‐capped alkoxyphenanthrenes
B Balambiga, P Devibala, PM Imran, NSP Bhuvanesh, S Nagarajan
ChemPhysChem 23 (23), e202200350, 2022
82022
Tailoring the Resistive Switching WORM Memory Behavior of Functionalized Bis (triphenylamine)
R Gayathri, VM Angela, P Devibala, PM Imran, S Nagarajan
ACS Applied Materials & Interfaces 15 (19), 23546-23556, 2023
42023
Acetylene bridged alkoxyphenanthrene and triarylamine-based triads for low threshold voltage with high mobility OFETs
B Balambiga, P Devibala, D Harshini, PM Imran, S Nagarajan
Materials Chemistry Frontiers 7, 2225-2234, 2023
42023
Synthesis of Anthracene and Pyrene End‐Capped Triarylamines for pChannel High‐Performance OFETs
P Devibala, B Balambiga, PM Imran, NSP Bhuvanesh, S Nagarajan
European Journal of Organic Chemistry 2022 (44), e202200825, 2022
42022
Influence of Tetraphenylbenzene on the OFET Behavior of Triarylamines
P Devibala, PM Imran, NSP Bhuvanesh, S Nagarajan
Advanced Electronic Materials 8 (11), 2200484, 2022
42022
Approaches for Fabricating Tri‐and Tetraphenylethene‐Based Blue Organic Light‐Emitting Diodes Using Donor–Acceptor and Non‐Donor–Acceptor Molecular Architectures
D Harshini, P Devibala, VM Angela, S Nagarajan
physica status solidi (RRL)–Rapid Research Letters 16 (11), 2200206, 2022
22022
π-Extended indoloquinoxaline functionalized triarylamines with ethynyl and tetracyanobutadiene bridges for p-channel and ambipolar OFETs
P Devibala, B Balambiga, PKM Imran, S Nagarajan
New Journal of Chemistry, 2023
12023
Acetylene-extended triarylamines for solution-processable p-channel OFETs
S Noureen, P Devibala, PM Imran, S Nagarajan
Synthetic Metals 302, 117541, 2024
2024
Cover Feature: High Mobility and ON/OFF Ratio of Solution-Processable p-Channel OFETs from Arylacetylene End-Capped Alkoxyphenanthrenes (ChemPhysChem 23/2022)
SN B. Balambiga, P. Devibala,P. M. Imran, N. S. P. Bhuvanesh
ChemPhysChem 23 (23), e202200830, 2022
2022
Cover Picture: Approaches for Fabricating Tri- and Tetraphenylethene-Based Blue Organic Light-Emitting Diodes Using Donor–Acceptor and Non-Donor–Acceptor Molecular Architectures
SN D.Harshini, P. Devibala, M.V. Angela
physica status solidi (RRL)–Rapid Research Letters 16 (11), 841, 2022
2022
Design and Synthesis of Functionalized Triarylamines for Organic Field effect Transistors
P Devibala
Neelakudi, 0
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