Ambar B. RanguMagar
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Assistant Professor of Chemistry
Faculty Researcher
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Ambar B. RanguMagar's research focuses on the development and application of novel materials and catalysts for chemical processes and biomedical applications. Her work has explored guar-based hydrogels for drug delivery and bone cell growth, and functionalized nanocellulose to promote neural stem cell differentiation. RanguMagar has also investigated amination of sp³ carbon using nickel pincer catalysts and iron(III) catalysts derived from natural amino acids for oxidation chemistry. Her scholarship metrics include an h-index of 10 with 261 total citations across 14 publications. She has collaborated with researchers from Arkansas State University and the University of Arkansas at Little Rock, including Malathi Srivatsan, Anindya Ghosh, Charlette M. Parnell, and Hunter A. Wayland.
Metrics
- h-index: 10
- Publications: 14
- Citations: 278
Selected Publications
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Natural Amino Acid-Derived Iron(III) Catalysts for Green Oxidation Chemistry Applications (2025)
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Guar-Based Injectable Hydrogel for Drug Delivery and In Vitro Bone Cell Growth (2023)
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Functionalized Nanocellulose Drives Neural Stem Cells toward Neuronal Differentiation (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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Predominant differentiation of rat fetal neural stem cells into functional oligodendrocytes in vitro (2020)
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Glioma-derived exosomes drive the differentiation of neural stem cells to astrocytes (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)
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Plasmonic nano surface for neuronal differentiation and manipulation (2019)
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Simultaneous Electrochemical Deposition of Cobalt Complex and Poly(pyrrole) Thin Films for Supercapacitor Electrodes (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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Nicotine is neuroprotective to neonatal neurons of sympathetic ganglion in rat (2018)
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Nanocrystalline Cellulose-Derived Doped Carbonaceous Material for Rapid Mineralization of Nitrophenols under Visible Light (2018)
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Fabrication and characterization of hydroxypropyl guar-poly (vinyl alcohol)-nano hydroxyapatite composite hydrogels for bone tissue engineering (2018)
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Removal of nitrophenols from water using cellulose derived nitrogen doped graphitic carbon material containing titanium dioxide (2018)
Collaboration Network
Top Collaborators
- 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
- 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
- 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
- Functionalized Nanocellulose Drives Neural Stem Cells toward Neuronal Differentiation
- Functionalized Nanocellulose Drives Neural Stem Cells toward Neuronal Differentiation
- Functionalized Nanocellulose Drives Neural Stem Cells toward Neuronal Differentiation
- Functionalized Nanocellulose Drives Neural Stem Cells toward Neuronal Differentiation
- Functionalized Nanocellulose Drives Neural Stem Cells toward Neuronal Differentiation
- 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
- 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
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