Manikanta Makala
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View article: Charge Transport in Ternary Charge‐Transfer Solid Solution Single Crystals
Charge Transport in Ternary Charge‐Transfer Solid Solution Single Crystals Open
The electronic effects of structural defects introduced through chemical doping are challenging to characterize in organic semiconductors, especially when measured in thin film devices where the performance is sensitive to structural heter…
View article: Non-Covalent Interactions and Helical Packing in Thiophene-Phenylene Copolymers: Tuning Solid-State Ordering and Charge Transport for Organic Field-Effect Transistors
Non-Covalent Interactions and Helical Packing in Thiophene-Phenylene Copolymers: Tuning Solid-State Ordering and Charge Transport for Organic Field-Effect Transistors Open
In this study, we introduce two thiophene-phenylene-thiophene (TPT) polymers designed to leverage noncovalent intramolecular interactions to regulate main-chain conformation and enhance solid-state ordering. By incorporating unsubstituted …
View article: 1,2,5,6-Tetrathiocin as a scaffold for improved charge transport in double-cable oligothiophene systems
1,2,5,6-Tetrathiocin as a scaffold for improved charge transport in double-cable oligothiophene systems Open
Four small molecules featuring central 1,2,5,6-tetrathiocin (TTC) units fusing two oligothiophene chains have been prepared, their structures elucidated through X-ray crystallography and their charge transport properties studied in OFETs.
View article: From symmetric to asymmetric: tuning photophysical and rectifying properties in [2.2]paracyclophanes
From symmetric to asymmetric: tuning photophysical and rectifying properties in [2.2]paracyclophanes Open
Five pseudo- para [2.2]paracyclophane derivatives were prepared bearing different electron donating and withdrawing groups. Their optical properties in solution and upon aggregation were studied, and their rectification in the solid state …
View article: High-performance n-type polymer field-effect transistors with exceptional stability
High-performance n-type polymer field-effect transistors with exceptional stability Open
High-mobility n-type organic transistors that maintain performance for over 1000 minutes under bias stress pave the way for complementary organic circuits, overcoming a key obstacle in the field.