Nabeel Alwan Data-verified
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Researcher
unknown
Research Areas
Biography and Research Information
OverviewAI-generated summary
Nabeel Alwan's research focuses on the development and application of nanomaterials for therapeutic purposes, particularly in cancer treatment. His work investigates the enhanced photothermal heating and combination therapy capabilities of near-infrared (NIR) dyes when converted into self-assembled ionic nanomaterials. Alwan also explores improvements in the photophysical properties of ionic material-based nanomedicines designed for combination chemo/photodynamic therapy. His scholarly output includes two publications with a total of 40 citations and an h-index of 2. Alwan collaborates with researchers at the University of Arkansas at Little Rock, including Noureen Siraj and Nawab Ali, as well as Robert J. Griffin at the University of Arkansas for Medical Sciences.
Metrics
- h-index: 2
- Publications: 2
- Citations: 40
Selected Publications
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Enhanced photothermal heating and combination therapy of NIR dye <i>via</i> conversion to self-assembled ionic nanomaterials (2022)
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Improved Photophysical Properties of Ionic Material-Based Combination Chemo/PDT Nanomedicine (2021)
Collaboration Network
Top Collaborators
- Enhanced photothermal heating and combination therapy of NIR dye <i>via</i> conversion to self-assembled ionic nanomaterials
- Improved Photophysical Properties of Ionic Material-Based Combination Chemo/PDT Nanomedicine
- Enhanced photothermal heating and combination therapy of NIR dye <i>via</i> conversion to self-assembled ionic nanomaterials
- Improved Photophysical Properties of Ionic Material-Based Combination Chemo/PDT Nanomedicine
- Enhanced photothermal heating and combination therapy of NIR dye <i>via</i> conversion to self-assembled ionic nanomaterials
- Improved Photophysical Properties of Ionic Material-Based Combination Chemo/PDT Nanomedicine
- Enhanced photothermal heating and combination therapy of NIR dye <i>via</i> conversion to self-assembled ionic nanomaterials
- Improved Photophysical Properties of Ionic Material-Based Combination Chemo/PDT Nanomedicine
- Improved Photophysical Properties of Ionic Material-Based Combination Chemo/PDT Nanomedicine
- Improved Photophysical Properties of Ionic Material-Based Combination Chemo/PDT Nanomedicine
- Improved Photophysical Properties of Ionic Material-Based Combination Chemo/PDT Nanomedicine
- Improved Photophysical Properties of Ionic Material-Based Combination Chemo/PDT Nanomedicine
- Enhanced photothermal heating and combination therapy of NIR dye <i>via</i> conversion to self-assembled ionic nanomaterials
- Enhanced photothermal heating and combination therapy of NIR dye <i>via</i> conversion to self-assembled ionic nanomaterials
- Enhanced photothermal heating and combination therapy of NIR dye <i>via</i> conversion to self-assembled ionic nanomaterials
- Enhanced photothermal heating and combination therapy of NIR dye <i>via</i> conversion to self-assembled ionic nanomaterials
- Enhanced photothermal heating and combination therapy of NIR dye <i>via</i> conversion to self-assembled ionic nanomaterials
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