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◆ ACS Materials Letters2026-06-08· Materials science

Record-High Mobility in Polycrystalline Phthalocyanine Transistors via Iodine-Mediated Trap Passivation

Nicolas Ledos, Kannan Udaya Mohanan, Adam Richard, Sofia Gallardo Pascual, Joseph G. Manion, Chang-Hyun Kim, Jaclyn L. Brusso, Benoît H. Lessard

原始摘要(英文原文)· Original abstract
We report a simple iodine solution treatment that sets a new performance benchmark for polycrystalline phthalocyanine-based organic thin-film transistors (OTFTs). Applied to iso (Si 3 O) 2 SiPc, the treatment triggers an increase in average hole mobility to a record high value of 4.08 cm 2 V −1 s −1 . Additionally, this enhancement occurs without any structural modification and exhibits exceptional air stability, retaining 70% of the initial mobility after 50 days, a significant improvement over previous reports. Finite-element simulations and morphological studies reveal that iodine primarily passivates donor-like traps near the highest-occupied molecular orbital edge, with efficacy correlated to film roughness. Furthermore, we demonstrate the practical utility of treated devices in digital logic inverters. This work establishes iso (Si 3 O) 2 SiPc as a highly accessible, high-performance semiconductor and presents a facile chemical treatment strategy to overcome its trap-limited transport in OTFTs.
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Record-High Mobility in Polycrystalline Phthalocyanine Transistors via Iodine-Mediated Trap Passivation — 科研速览 Science Skim