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[HTML][HTML] Nanotoxicology and nanosafety: Safety-by-design and testing at a glance
This review offers a systematic discussion about nanotoxicology and nanosafety associated
with nanomaterials during manufacture and further biomedical applications. A detailed …
with nanomaterials during manufacture and further biomedical applications. A detailed …
[HTML][HTML] External field-assisted laser ablation in liquid: An efficient strategy for nanocrystal synthesis and nanostructure assembly
J **ao, P Liu, CX Wang, GW Yang - Progress in Materials Science, 2017 - Elsevier
Laser ablation in liquid (LAL) has received considerable attention over the last decade, and
is gradually becoming an irreplaceable technique to synthesize nanocrystals and fabricate …
is gradually becoming an irreplaceable technique to synthesize nanocrystals and fabricate …
Morphology-dependent nanocatalysts: Rod-shaped oxides
Y Li, W Shen - Chemical Society Reviews, 2014 - pubs.rsc.org
Nanocatalysts are characterised by the unique nanoscale properties that originate from their
highly reduced dimensions. Extensive studies over the past few decades have …
highly reduced dimensions. Extensive studies over the past few decades have …
Shape-controlled synthesis and catalytic application of ceria nanomaterials
D Zhang, X Du, L Shi, R Gao - Dalton transactions, 2012 - pubs.rsc.org
Because of their excellent properties and extensive applications, ceria nanomaterials have
attracted much attention in recent years. This perspective provides a comprehensive review …
attracted much attention in recent years. This perspective provides a comprehensive review …
Ceria stabilized by titanium carbide as a sustainable filler in the nafion matrix improves the mechanical integrity, electrochemical durability, and hydrogen …
Cerium oxide-anchored titanium carbide (CeO2-TiC) is realized as a potential inorganic filler
when modifying the Nafion matrix of a proton-exchange membrane fuel cell (PEMFC). A …
when modifying the Nafion matrix of a proton-exchange membrane fuel cell (PEMFC). A …
Oriented attachment of particles: 100 years of investigations of non-classical crystal growth
VK Ivanov, PP Fedorov, AY Baranchikov… - Russian Chemical …, 2014 - iopscience.iop.org
Crystallization is one of the most important physicochemical processes. Crystal structure
determines most of properties of substances in the condensed state; this is why the modern …
determines most of properties of substances in the condensed state; this is why the modern …
Peroxidase-like Activity of CeO2 Nanozymes: Particle Size and Chemical Environment Matter
AD Filippova, MM Sozarukova, AE Baranchikov… - Molecules, 2023 - mdpi.com
The enzyme-like activity of metal oxide nanoparticles is governed by a number of factors,
including their size, shape, surface chemistry and substrate affinity. For CeO2 nanoparticles …
including their size, shape, surface chemistry and substrate affinity. For CeO2 nanoparticles …
A review on biomedical and dental applications of cerium oxide nanoparticles―Unearthing the potential of this rare earth metal
Nanotechnology deals with particles ranging from 1 to 100 nm in size called as
nanoparticles. These nano particles exhibit unique properties which find an application in …
nanoparticles. These nano particles exhibit unique properties which find an application in …
Enhancing energy storage capabilities of MoS2 nanoflowers through designing nanoarchitecture by controlling synthesis growth parameters
Among transition metal dichalcogenides, molybdenum disulfide (MoS 2) is considered as
the most cost-effective electrode material for energy storage applications such as …
the most cost-effective electrode material for energy storage applications such as …
Structure, Bonding, and Catalytic Activity of Monodisperse, Transition-Metal-Substituted CeO2 Nanoparticles
We present a simple and generalizable synthetic route toward phase-pure, monodisperse
transition-metal-substituted ceria nanoparticles (M0. 1Ce0. 9O2–x, M= Mn, Fe, Co, Ni, Cu) …
transition-metal-substituted ceria nanoparticles (M0. 1Ce0. 9O2–x, M= Mn, Fe, Co, Ni, Cu) …