Titanium dioxide in the service of the biomedical revolution.
about
Accurate quantification of TiO2 nanoparticles collected on air filters using a microwave-assisted acid digestion methodA Close Look at the Structure of the TiO2-APTES Interface in Hybrid Nanomaterials and Its Degradation Pathway: An Experimental and Theoretical Study"RaMassays": Synergistic Enhancement of Plasmon-Free Raman Scattering and Mass Spectrometry for Multimodal Analysis of Small Molecules.Nanocomposite-Based Photodynamic Therapy Strategies for Deep Tumor Treatment.Water Multilayers on TiO2 (101) Anatase Surface: Assessment of a DFTB-Based MethodInvestigating the Origins of Toxic Response in TiO₂ Nanoparticle-Treated CellsMultifunctional Gadolinium-Doped Mesoporous TiO2 Nanobeads: Photoluminescence, Enhanced Spin Relaxation, and Reactive Oxygen Species Photogeneration, Beneficial for Cancer Diagnosis and Treatment.Functional nanomaterials for near-infrared-triggered cancer therapy.Drosophila melanogaster as a suitable in vivo model to determine potential side effects of nanomaterials: A review.Two-Dimensional Nanomaterials for Biomedical Applications: Emerging Trends and Future Prospects.From 1D chain to 3D network: A theoretical study on TiO2 low dimensional structures.Ab Initio Investigation of Polyethylene Glycol Coating of TiO2 Surfaces.A method to identify trace sulfated IgG N-glycans as biomarkers for rheumatoid arthritis.Functionalized TiO2 nanoparticles by single-step hydrothermal synthesis: the role of the silane coupling agents.Water on Graphene-Coated TiO2: Role of Atomic Vacancies.Review: the potential impact of surface crystalline states of titanium for biomedical applications.Water-Assisted Hole Trapping at the Highly Curved Surface of Nano-TiO2 Photocatalyst.Recyclable (Fe3O4-NaYF4:Yb,Tm)@TiO2 nanocomposites with near-infrared enhanced photocatalytic activity.Mesostructured TiO2 Gated Periodic Mesoporous Organosilica-Based Nanotablets for Multistimuli-responsive Drug Release.Micro/Nanoparticle-Augmented Sonodynamic Therapy (SDT): Breaking the Depth Shallow of Photoactivation.Modelling realistic TiO2 nanospheres: A benchmark study of SCC-DFTB against hybrid DFT.A phase transformable ultrastable titanium-carboxylate framework for photoconduction.Effectiveness of Sensors Contact Metallization (Ti, Au, and Ru) and Biofunctionalization for DetectionInfluence of sol counter-ions on the anatase-to-rutile phase transformation and microstructure of nanocrystalline TiO2
P2860
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P2860
Titanium dioxide in the service of the biomedical revolution.
description
2014 nî lūn-bûn
@nan
2014年の論文
@ja
2014年学术文章
@wuu
2014年学术文章
@zh-cn
2014年学术文章
@zh-hans
2014年学术文章
@zh-my
2014年学术文章
@zh-sg
2014年學術文章
@yue
2014年學術文章
@zh
2014年學術文章
@zh-hant
name
Titanium dioxide in the service of the biomedical revolution.
@en
type
label
Titanium dioxide in the service of the biomedical revolution.
@en
prefLabel
Titanium dioxide in the service of the biomedical revolution.
@en
P2093
P356
P1433
P1476
Titanium dioxide in the service of the biomedical revolution.
@en
P2093
Marc Bissonnette
Nada M Dimitrijevic
Tamara Koritarov
Tijana Rajh
Vani Konda
P304
10177-10216
P356
10.1021/CR500029G
P577
2014-08-29T00:00:00Z