David Thompson Source Confirmed
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Researcher
University of Arkansas at Fayetteville
faculty
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Biography and Research Information
OverviewAI-generated summary
David Thompson's research focuses on the synthesis and application of nanomaterials, particularly in the context of catalysis and electrochemical systems. He has investigated the properties and degradation mechanisms of perovskite oxides, such as La<sub>1−x</sub>Sr<sub>x</sub>FeO<sub>3−δ</sub>, in oxygen evolution reactions. Thompson has also explored the synthesis of nickel phosphide nanoparticles using pathways mediated by trioctylphosphine, aiming to create materials with uniform sizes and specific phase compositions. His work includes the development of versatile electrochemical cells for operando X-ray absorption spectroscopy, enabling the study of catalytic processes in real-time. Thompson has also contributed to understanding surface oxygen roles in material recycling and has co-authored publications on multiplexed integrin detection for cancer cell classification using gold nanorods and machine learning.
His scholarship metrics include an h-index of 13, with 44 total publications and 630 total citations. Thompson has collaborated with several faculty members at the University of Arkansas at Fayetteville, including S. M. York, Lauren F. Greenlee, Geletu Qing, and Feng Wang, on multiple shared publications.
Metrics
- h-index: 13
- Publications: 44
- Citations: 630
Selected Publications
- Multiplexed Integrin Detection and Cancer Cell Classification Using Multicolor Gap-Enhanced Gold Nanorods and Machine Learning Algorithm (2025) DOI
- Best practices for in-situ and operando techniques within electrocatalytic systems (2025) DOI
- Synthesis of Amorphous and Various Phase-Pure Nanoparticles of Nickel Phosphide with Uniform Sizes via a Trioctylphosphine-Mediated Pathway (2024) DOI
- Probing Mixed Phase Metallic Ni/Amorphous Nickel Phosphide Nanocatalysts during Oxygen Evolution Reaction Using Operando X-Ray Absorption Spectroscopy (2024) DOI
- A Versatile Electrochemical Cell for <i>Operando</i> XAS (2024) DOI
- Understanding the Degradation of La<sub>1−<i>x</i> </sub>Sr<sub> <i>x</i> </sub>FeO<sub>3−<i>δ</i> </sub> (0 ≤ x ≤ 1) Perovskite Oxides during the Oxygen Evolution Reaction in Alkaline Solution (2023) DOI
- Ambient-pressure ozone treatment enables tuning of oxygen vacancy concentration in the La<sub>1−<i>x</i></sub>Sr<sub><i>x</i></sub>FeO<sub>3−<i>δ</i></sub> (0 ≤ <i>x</i> ≤ 1) perovskite oxides (2022) DOI
- Array of Graphene Variable Capacitors on 100 mm Silicon Wafers for Vibration-Based Applications (2022) DOI
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