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Gary P. Wiederrecht

Affiliations: 
1992- Center for Nanoscale Materials and Chemical Sciences and Engineering Argonne National Laboratory, Lemont, IL, United States 
Area:
nanophotonics
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"Gary P. Wiederrecht"
Mean distance: 8.55
 
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Parents

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Keith A. Nelson grad student 1992 MIT
 (Femtosecond Time-Resolved Spectroscopy of Phonon Dynamics in Organic Molecular and Ferroelectric Crystallization)
Michael R. Wasielewski post-doc 1992-1995 Argonne National Laboratory
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Publications

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Hurley JJM, Meisner QJ, Guo P, et al. (2022) Triple Emission of 5'-(-R-Phenylene)vinylene-2-(2'-hydroxyphenyl)benzoxazole (). Part II: Emission from Anions. The Journal of Physical Chemistry. A
Meisner QJ, Hurley JJM, Guo P, et al. (2022) Triple Emission of 5'-(-R-Phenylene)vinylene-2-(2'-hydroxyphenyl)benzoxazole (PVHBO). Part I: Dual Emission from the Neutral Species. The Journal of Physical Chemistry. A
Liang J, Fang Q, Wang H, et al. (2020) Perovskite-Derivative Valleytronics. Advanced Materials (Deerfield Beach, Fla.). e2004111
Yadav RK, Otten M, Wang W, et al. (2020) Strongly coupled exciton - surface lattice resonances engineer long-range energy propagation. Nano Letters
Peng L, Otten M, Hazarika A, et al. (2020) Bright trion emission from semiconductor nanoplatelets Physical Review Materials. 4: 56006
Wen X, Adhikari S, Cortes CL, et al. (2020) Ghost imaging second harmonic generation microscopy Applied Physics Letters. 116: 191101
Yun YJ, Kamatham N, Manna MK, et al. (2020) Interplay between Energy and Charge Transfers in a Polyaromatic Triplet Donor–Acceptor Dyad Journal of Physical Chemistry C. 124: 12205-12212
Sykes ME, Kim M, Wu X, et al. (2019) Ultrafast Exciton Trapping at sp3 Quantum Defects in Carbon Nanotubes. Acs Nano
Cao DH, Guo P, Mannodi-Kanakkithodi A, et al. (2019) Charge Transfer Dynamics of Phase-Segregated Halide Perovskites: CHNHPbCl and CHNHPbI or (CHNH)(CHNH) Pb I Mixtures. Acs Applied Materials & Interfaces
Guo P, Mannodi-Kanakkithodi A, Gong J, et al. (2019) Infrared-pump electronic-probe of methylammonium lead iodide reveals electronically decoupled organic and inorganic sublattices. Nature Communications. 10: 482
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