Anindya Ghosh
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Researcher
Also affiliated: University of Notre Dame (2012); Applied Nanotech (United States) (2019); South University (2012); Carnegie Mellon University (2002–2012)
Faculty Researcher
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Anindya Ghosh's research program investigates the synthesis and application of nanostructured materials, with a particular focus on their use in drug delivery and catalysis. He has explored the potential of cellulose nanocrystals derived from wood feedstocks, examining how variability in the source material impacts their physicochemical properties. Ghosh has also studied nanocellulose functionalized for neural stem cell differentiation and its role in enhancing electrocatalytic reactions for oxygen reduction, in collaboration with researchers from Arkansas State University, Philander Smith College, and within the University of Arkansas at Little Rock.
His work extends to the development of biomaterials for tissue engineering and drug delivery. This includes investigating guar-based injectable hydrogels for bone cell growth and exploring synthetic matrices for intestinal organoid culture. Ghosh is also engaged in research related to artificial intelligence in cancer drug development. His federal grant funding includes an NSF I-Corps award for developing novel coatings for industrial applications.
Ghosh has published 78 papers, accumulating over 2,052 citations, and holds an h-index of 26. He is recognized as a highly cited researcher and maintains an active laboratory website.
Metrics
- h-index: 26
- Publications: 79
- Citations: 2,068
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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Natural Amino Acid-Derived Iron(III) Catalysts for Green Oxidation Chemistry Applications (2025)
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Encapsulation of Inositol Hexakisphosphate with Chitosan via Gelation to Facilitate Cellular Delivery and Programmed Cell Death in Human Breast Cancer Cells (2024)
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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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Guar-Based Injectable Hydrogel for Drug Delivery and In Vitro Bone Cell Growth (2023)
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Impact of species-based wood feedstock variability on physicochemical properties of cellulose nanocrystals (2022)
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Synthetic Matrices for Intestinal Organoid Culture: Implications for Better Performance (2021)
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Functionalized Nanocellulose Drives Neural Stem Cells toward Neuronal Differentiation (2021)
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Artificial Intelligence and Cancer Drug Development (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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Nanoscale Particles and Multifunctional Hybrid Soft Nanomaterials in Bio/Nanomedicine (2020)
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Optimizing Lignosulfonic Acid-Grafted Polyaniline as a Hole-Transport Layer for Inverted CH<sub>3</sub>NH<sub>3</sub>PbI<sub>3</sub>Perovskite Solar Cells (2020)
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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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Nanostructured surfaces promote differentiation of rat neural stem cells into oligodendrocytes (2019)
Federal Grants 1 $50,000 total
Collaboration Network
Top Collaborators
- Synthetic Matrices for Intestinal Organoid Culture: Implications for Better Performance
- Exploring Enhanced Oxygen Reduction Reactions: A Study on Nanocellulose, Dopamine, and Cobalt Complex-Derived Non-Precious Electrocatalyst
- Highly economical and direct amination of sp<sup>3</sup> carbon using low-cost nickel pincer catalyst
- Dehydrogenative Conversions of Aldehydes and Amines to Amides Catalyzed by a Nickel(II) Pincer Complex
- Pincer Nickel(II) Catalyzed Oxidative Carbonylation of Amines: A Phosgene-Free Synthesis for Isocyanates and Ureas
- Guar-Based Injectable Hydrogel for Drug Delivery and In Vitro Bone Cell Growth
- Functionalized Nanocellulose Drives Neural Stem Cells toward Neuronal Differentiation
- Highly economical and direct amination of sp<sup>3</sup> carbon using low-cost nickel pincer catalyst
- Natural Amino Acid-Derived Iron(III) Catalysts for Green Oxidation Chemistry Applications
- Highly economical and direct amination of sp<sup>3</sup> carbon using low-cost nickel pincer catalyst
- Dehydrogenative Conversions of Aldehydes and Amines to Amides Catalyzed by a Nickel(II) Pincer Complex
- 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
- Natural Amino Acid-Derived Iron(III) Catalysts for Green Oxidation Chemistry Applications
- Functionalized Nanocellulose Drives Neural Stem Cells toward Neuronal Differentiation
- Highly economical and direct amination of sp<sup>3</sup> carbon using low-cost nickel pincer catalyst
- Functionalized Nanocellulose Drives Neural Stem Cells toward Neuronal Differentiation
- Encapsulation of Inositol Hexakisphosphate with Chitosan via Gelation to Facilitate Cellular Delivery and Programmed Cell Death in Human Breast Cancer Cells
- Synthetic Matrices for Intestinal Organoid Culture: Implications for Better Performance
- Guar-Based Injectable Hydrogel for Drug Delivery and In Vitro Bone Cell Growth
- Guar-Based Injectable Hydrogel for Drug Delivery and In Vitro Bone Cell Growth
- Impact of species-based wood feedstock variability on physicochemical properties of cellulose nanocrystals
- Guar-Based Injectable Hydrogel for Drug Delivery and In Vitro Bone Cell Growth
- Impact of species-based wood feedstock variability on physicochemical properties of cellulose nanocrystals
- Guar-Based Injectable Hydrogel for Drug Delivery and In Vitro Bone Cell Growth
- Encapsulation of Inositol Hexakisphosphate with Chitosan via Gelation to Facilitate Cellular Delivery and Programmed Cell Death in Human Breast Cancer Cells
- Guar-Based Injectable Hydrogel for Drug Delivery and In Vitro Bone Cell Growth
- Encapsulation of Inositol Hexakisphosphate with Chitosan via Gelation to Facilitate Cellular Delivery and Programmed Cell Death in Human Breast Cancer Cells
- Guar-Based Injectable Hydrogel for Drug Delivery and In Vitro Bone Cell Growth
- Exploring Enhanced Oxygen Reduction Reactions: A Study on Nanocellulose, Dopamine, and Cobalt Complex-Derived Non-Precious Electrocatalyst
- Exploring Enhanced Oxygen Reduction Reactions: A Study on Nanocellulose, Dopamine, and Cobalt Complex-Derived Non-Precious Electrocatalyst
- Natural Amino Acid-Derived Iron(III) Catalysts for Green Oxidation Chemistry Applications
- Pincer Nickel(II) Catalyzed Oxidative Carbonylation of Amines: A Phosgene-Free Synthesis for Isocyanates and Ureas
- Natural Amino Acid-Derived Iron(III) Catalysts for Green Oxidation Chemistry Applications
- Highly economical and direct amination of sp<sup>3</sup> carbon using low-cost nickel pincer catalyst
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