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Dive into the research topics where Liam P. Spencer is active.

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Featured researches published by Liam P. Spencer.


ACS Applied Materials & Interfaces | 2017

Degradation of Hole Transport Materials via Exciton-Driven Cyclization

Bruce M. Bell; Michael Clark; David D. Devore; Timothy S. De Vries; Robert D. J. Froese; Kaitlyn Gray; David H. K. Jackson; T. F. Kuech; Hong-Yeop Na; Kenneth L. Kearns; Kyung-Joo Lee; Sukrit Mukhopadhyay; Aaron A. Rachford; Liam P. Spencer; W. H. Hunter Woodward

Organic light-emitting diode (OLED) displays have been an active and intense area of research for well over a decade and have now reached commercial success for displays from cell phones to large format televisions. A more thorough understanding of the many different potential degradation modes which cause OLED device failure will be necessary to develop the next generation of OLED materials, improve device lifetime, and to ultimately improve the cost vs performance ratio. Each of the different organic layers in an OLED device can be susceptible to unique decomposition pathways, however stability toward excitons is critical for emissive layer (EML) materials as well as any layer near the recombination zone. This study will specifically focus on degradation modes within the hole transport layer (HTL) with the goal being to identify the general decomposition paths occurring in an operating device and use this information to design new derivatives which can block these pathways. Through post-mortem analyses of several aged OLED devices, an apparently common intramolecular cyclization pathway has been identified that was not previously reported for arylamine-containing HTL materials and that operates parallel to but faster than the previously described fragmentation pathways.


Archive | 2017

Polymeric charge transfer layer and organic electronic device containing same

Liam P. Spencer; Chun Liu; Minrong Zhu; Nolan T. Mcdougal; Shaoguang Feng; Iii Peter Trefonas; David D. Devore; Zhengming Tang; Jichang Feng; Anatoliy Sokolov


Archive | 2015

Oxygen substituted benzoclobutenes derived compositions for electronic devices

Liam P. Spencer; Nolan T. Mcdougal; Iii Peter Trefonas; David D. Devore


Archive | 2017

Compositions comprising oxygen substituted benzocyclobutenes and dienophiles, and electronic devices containing same

Liam P. Spencer; Liang Hong; Chun Liu; Minrong Zhu; Jichang Feng; Jing Jing Yan; Zhengming Tang; Shaoguang Feng; Peter Trefonas Iii; David D. Devore; Nolan T. Mcdougal


Macromolecules | 2017

Thermally Induced Cross-Linking and Degradation Reactions of Benzocyclobutene-Based Polymers

Anthony P. Gies; Liam P. Spencer; Nathan J. Rau; Praveenkumar Boopalachandran; Mark A. Rickard; Kenneth L. Kearns; Nolan T. Mcdougal


Archive | 2018

PROCESS FOR MAKING AN ORGANIC CHARGE TRANSPORTING FILM

Chun Liu; Peter Trefonas; Sukrit Mukhopadhyay; Liam P. Spencer; David D. Devore; Ashley Inman


Archive | 2018

PROCÉDÉ DE FABRICATION D'UN FILM ORGANIQUE DE TRANSPORT DE CHARGES

Chun Liu; David Grigg; Sukrit Mukhopadhyay; Matthew S. Remy; Liam P. Spencer; Minrong Zhu; Yang Li; Shaoguang Feng; Kenneth L. Kearns; Bruce M. Bell; Anthony P. Gies; Peter Trefonas; David D. Devore; Emad Aqad; Ashley Inman


Progress in Solid State Chemistry | 2017

Mass spectrometry drives stoichiometric GaAs formation from single-source precursors

Anatoliy Sokolov; Bruce B. Gerhart; Robert J. Wright; Anna M. Zink; George L. Athens; Steve Rozeveld; Arkady L. Krasovskiy; Liam P. Spencer; Robert D. J. Froese; Peter N. Nickias; James C. Stevens


Archive | 2017

Compositions with 2,3-Disubstituted Indoles as Charge Transport Materials, and Display Devices Fabricated Therefrom

Kaitlyn Gray; Robert J. Wright; Liam P. Spencer; David D. Devore; David Pearson; Ji Chang Feng; Jing Jing Yan; Shao Guang Feng


Archive | 2017

BENZOCYCLOBUTENES DERIVED COMPOSITIONS, AND ELECTRONIC DEVICES CONTAINING THE SAME

Minrong Zhu; Jichang Feng; Shaoguang Feng; Chun Liu; Nolan T. Mcdougal; David D. Devore; Peter Trefonas Iii; Liam P. Spencer

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Anthony P. Gies

University of Alabama at Birmingham

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