ISSN 2639-9431
Vol. 5, Issue 4, 2022November 28, 2022 EDT
Size-dependent Lattice Contraction and Oxidation State Ratio in Nano-MnO: Potential Tunable Biomedical Applications
Size-dependent Lattice Contraction and Oxidation State Ratio in Nano-MnO: Potential Tunable Biomedical Applications
Articles in Vol. 5, Issue 4, 2022
Vol. 5, Issue 4, 2022
- Nanoliposomes as Drug Delivery Systems for Antifungal TherapyShathar AlobeidatTamara Athamneh
- Harnessing Monocytes for a Liposomal Rosiglitazone-Mediated Anti-Inflammatory EffectOsnat ShvindelmanMirjam M. Nordling-DavidEtty GradGershon Golomb
- Size-dependent Lattice Contraction and Oxidation State Ratio in Nano-MnO: Potential Tunable Biomedical ApplicationsMichael M. RamsdellJenna M. PikeSyed KhalidSiu-Wai Chan
- Global Health Technologies Transforming Intellectual Property Law and World TradeIlise L. Feitshans
Ramsdell, Michael M., Jenna M. Pike, Syed Khalid, and Siu-Wai Chan. 2022. “Size-Dependent Lattice Contraction and Oxidation State Ratio in Nano-MnO: Potential Tunable Biomedical Applications.” Precision Nanomedicine 5 (4): 963–76. https://doi.org/10.33218/001c.56898.
