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Application of nanomaterials in photodynamic therapy
Olayemi J. Fakayode
, Ncediwe Tsolekile
, Sandile P. Songca
,
Oluwatobi Samuel Oluwafemi
Chemical Sciences
University of Johannesburg
University of Zululand
Research output
:
Chapter in Book/Report/Conference proceeding
›
Chapter
›
peer-review
2
Citations (Scopus)
Overview
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Keyphrases
Photodynamic Therapy
100%
Molecular Oxygen
100%
Nanomaterial Applications
100%
Reactive Oxygen Species
75%
Photosensitizer
50%
Cancer Treatment
25%
Biomolecules
25%
Apoptosis
25%
Cancer Cells
25%
Cell Death
25%
Near-infrared
25%
Singlet Oxygen
25%
Necrosis
25%
Hydrogen Peroxide
25%
Triplet Excited State
25%
Photon Energy
25%
Electron Transfer
25%
Type 2 Reaction
25%
Outburst
25%
Superoxide Ion
25%
Photochemical Generation
25%
OH Radical
25%
Malaise
25%
Direct Transfer
25%
Non-invasive Method
25%
Reactive Oxygen Species Generation
25%
Hydroxyl Radical ([rad]OH)
25%
Type I Reactive Oxygen Species
25%
Chemistry
Nanomaterial
100%
Reactive Oxygen Metabolite
100%
Dioxygen
80%
Hydrogen Peroxide
40%
Excited Triplet State
20%
Hydroxyl Radical
20%
Light Red
20%
Electron Transfer
20%
Superoxide
20%
Cell Death
20%
Hydrogen
20%
Singlet Oxygen
20%
Physics
Nanomaterial
100%
Hydrogen
100%
Optical Bursts
50%
Near Infrared
50%
Atomic Energy Levels
50%