TY - BOOK
T1 - Biocompatible Hybrid Oxide Nanoparticles for Human Health: From Synthesis to Applications
A2 - Melnyk, Inna V.
A2 - Vaclavikova, Miroslava
A2 - Seisenbaeva, Gulaim
A2 - Kessler, Vadim
PY - 2019
Y1 - 2019
N2 - Biocompatible Hybrid Oxide Nanoparticles for Human Health: From Synthesis to Applications explores the synthesis, structure, properties and applications of functionalized oxide nanoparticles. The books shows the applications of materials depending on their composition and structure, with a focus on silicon, titanium and iron oxides, each of which was chosen because of their unique features, including silica because it is chemically resistant to most organic solvents, harmless to living organisms, can thicken flowable formulations, and increase the strength of materials, titania for its unique chemical, optical, electrophysical and bactericidal properties, and iron-containing materials because they possess important magnetic properties.
AB - Biocompatible Hybrid Oxide Nanoparticles for Human Health: From Synthesis to Applications explores the synthesis, structure, properties and applications of functionalized oxide nanoparticles. The books shows the applications of materials depending on their composition and structure, with a focus on silicon, titanium and iron oxides, each of which was chosen because of their unique features, including silica because it is chemically resistant to most organic solvents, harmless to living organisms, can thicken flowable formulations, and increase the strength of materials, titania for its unique chemical, optical, electrophysical and bactericidal properties, and iron-containing materials because they possess important magnetic properties.
UR - https://res.slu.se/id/publ/129926
U2 - 10.1016/C2017-0-02516-8
DO - 10.1016/C2017-0-02516-8
M3 - Anthology (editor)
SN - 978-0-12-815875-3
BT - Biocompatible Hybrid Oxide Nanoparticles for Human Health: From Synthesis to Applications
PB - Elsevier
ER -