Peter Szwedo
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Researcher
Faculty Researcher
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Biography and Research Information
OverviewAI-generated summary
Peter Szwedo's research focuses on the synthesis and application of novel catalysts, particularly those involving nickel pincer complexes. His work has explored the dehydrogenative conversion of aldehydes and amines to amides, a crucial step in chemical synthesis. He has also investigated the direct amination of sp³ carbon centers using low-cost nickel pincer catalysts and developed phosgene-free methods for synthesizing isocyanates and ureas through oxidative carbonylation. Szwedo's research extends to electrocatalysis, with a study on non-precious electrocatalysts derived from nanocellulose, dopamine, and cobalt complexes for enhanced oxygen reduction reactions. Additionally, his work has touched upon the development of synthetic matrices for organoid culture, with implications for improved performance in biological research. Szwedo has published eight papers, accumulating 152 citations, and holds an h-index of 6. He has collaborated with researchers at the University of Arkansas at Little Rock and Arkansas State University.
Metrics
- h-index: 6
- Publications: 8
- Citations: 153
Selected Publications
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Pincer Nickel(II) Catalyzed Oxidative Carbonylation of Amines: A Phosgene-Free Synthesis for Isocyanates and Ureas (2026)
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Exploring Enhanced Oxygen Reduction Reactions: A Study on Nanocellulose, Dopamine, and Cobalt Complex-Derived Non-Precious Electrocatalyst (2024)
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Dehydrogenative Conversions of Aldehydes and Amines to Amides Catalyzed by a Nickel(II) Pincer Complex (2023)
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Synthetic Matrices for Intestinal Organoid Culture: Implications for Better Performance (2021)
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Highly economical and direct amination of sp <sup>3</sup> carbon using low-cost nickel pincer catalyst (2021)
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C–N Cross-coupling Reactions of Amines with Aryl Halides Using Amide-Based Pincer Nickel(II) Catalyst (2019)
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Guar-Based Injectable Thermoresponsive Hydrogel as a Scaffold for Bone Cell Growth and Controlled Drug Delivery (2018)
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Graphene-Enhanced Oxygen Reduction by MN<sub>4</sub>Type Cobalt(III) Catalyst (2014)
Collaboration Network
Top Collaborators
- Synthetic Matrices for Intestinal Organoid Culture: Implications for Better Performance
- Dehydrogenative Conversions of Aldehydes and Amines to Amides Catalyzed by a Nickel(II) Pincer Complex
- Highly economical and direct amination of sp <sup>3</sup> carbon using low-cost nickel pincer catalyst
- Pincer Nickel(II) Catalyzed Oxidative Carbonylation of Amines: A Phosgene-Free Synthesis for Isocyanates and Ureas
- Dehydrogenative Conversions of Aldehydes and Amines to Amides Catalyzed by a Nickel(II) Pincer Complex
- Highly economical and direct amination of sp <sup>3</sup> carbon using low-cost nickel pincer catalyst
- Pincer Nickel(II) Catalyzed Oxidative Carbonylation of Amines: A Phosgene-Free Synthesis for Isocyanates and Ureas
- Synthetic Matrices for Intestinal Organoid Culture: Implications for Better Performance
- Dehydrogenative Conversions of Aldehydes and Amines to Amides Catalyzed by a Nickel(II) Pincer Complex
- Exploring Enhanced Oxygen Reduction Reactions: A Study on Nanocellulose, Dopamine, and Cobalt Complex-Derived Non-Precious Electrocatalyst
- Pincer Nickel(II) Catalyzed Oxidative Carbonylation of Amines: A Phosgene-Free Synthesis for Isocyanates and Ureas
- Highly economical and direct amination of sp <sup>3</sup> carbon using low-cost nickel pincer catalyst
- Highly economical and direct amination of sp <sup>3</sup> carbon using low-cost nickel pincer catalyst
- Highly economical and direct amination of sp <sup>3</sup> carbon using low-cost nickel pincer catalyst
- Highly economical and direct amination of sp <sup>3</sup> carbon using low-cost nickel pincer catalyst
- Synthetic Matrices for Intestinal Organoid Culture: Implications for Better Performance
- Synthetic Matrices for Intestinal Organoid Culture: Implications for Better Performance
- Dehydrogenative Conversions of Aldehydes and Amines to Amides Catalyzed by a Nickel(II) Pincer Complex
- Dehydrogenative Conversions of Aldehydes and Amines to Amides Catalyzed by a Nickel(II) Pincer Complex
- Dehydrogenative Conversions of Aldehydes and Amines to Amides Catalyzed by a Nickel(II) Pincer Complex
- Dehydrogenative Conversions of Aldehydes and Amines to Amides Catalyzed by a Nickel(II) Pincer Complex
- Dehydrogenative Conversions of Aldehydes and Amines to Amides Catalyzed by a Nickel(II) Pincer Complex