نتایج جستجو برای: metal oxide nanoparticle

تعداد نتایج: 381674  

2014
Kuang-Hung Tseng Po-Yu Lin

The purpose of this study was to investigate the difference between tungsten inert gas (TIG) welding of austenitic stainless steel assisted by microparticle oxides and that assisted by nanoparticle oxides. SiO₂ and Al₂O₃ were used to investigate the effects of the thermal stability and the particle size of the activated compounds on the surface appearance, geometric shape, angular distortion, d...

Journal: :Nanotechnology 2005
Kevin C Krogman Thad Druffel Mahendra K Sunkara

This paper presents a simple approach for forming anti-reflective film stacks on plastic substrates employing aqueous colloidal dispersions of metal oxide nanoparticles. Results demonstrate that it is possible to fabricate a polymeric thin film of continuously tunable refractive index over a wide range by loading the film with varying concentrations of metal oxide nanoparticles. Specifically, t...

Journal: :Journal of Photopolymer Science and Technology 2014

Journal: :Journal of the American Chemical Society 2015
Megan E Strayer Thomas P Senftle Jonathan P Winterstein Nella M Vargas-Barbosa Renu Sharma Robert M Rioux Michael J Janik Thomas E Mallouk

Interfacial interactions between late transition metal/metal oxide nanoparticles and oxide supports impact catalytic activity and stability. Here, we report the use of isothermal titration calorimetry (ITC), electron microscopy and density functional theory (DFT) to explore periodic trends in the heats of nanoparticle-support interactions for late transition metal and metal oxide nanoparticles ...

2017
J Fester M García-Melchor A S Walton M Bajdich Z Li L Lammich A Vojvodic J V Lauritsen

Transition metal oxides show great promise as Earth-abundant catalysts for the oxygen evolution reaction in electrochemical water splitting. However, progress in the development of highly active oxide nanostructures is hampered by a lack of knowledge of the location and nature of the active sites. Here we show, through atom-resolved scanning tunnelling microscopy, X-ray spectroscopy and computa...

Journal: :Chemical communications 2012
Neema A Mashayekhi Yi Y Wu Mayfair C Kung Harold H Kung

Au nanoparticles decorated with mononuclear Ti-oxo units dispersed in silica clusters were formed by activating Au nanoparticles (~2 nm) stabilized with Ti- and amine-functionalized siloxane oligomers. These Au nanoparticles were active catalysts for selective oxidation of propane to acetone, and the activity increased with increasing Ti density.

Journal: :Nanotechnology 2013
Wonjin Jo Marten Darmawan Jihoon Kim Chi Won Ahn Doyoung Byun Seung Hyun Baik Min Jun Kim

We present an improvement in the electrical properties of silica nanotubes by coating metal nanoparticles on their surfaces. The silica nanotubes are formed from bacterial flagella bio-templates having a tubular structure. Successive depositions of metal nanoparticles on the silica nanotubes are performed through easily functionalized silica surfaces. The results show uniform metal nanoparticle...

2015
Maria Pilar Vinardell Montserrat Mitjans

Nanoparticles have received much attention recently due to their use in cancer therapy. Studies have shown that different metal oxide nanoparticles induce cytotoxicity in cancer cells, but not in normal cells. In some cases, such anticancer activity has been demonstrated to hold for the nanoparticle alone or in combination with different therapies, such as photocatalytic therapy or some antican...

2016
Xinyong Tao Jianguo Wang Chong Liu Haotian Wang Hongbin Yao Guangyuan Zheng Zhi Wei Seh Qiuxia Cai Weiyang Li Guangmin Zhou Chenxi Zu Yi Cui

Lithium-sulfur batteries have attracted attention due to their six-fold specific energy compared with conventional lithium-ion batteries. Dissolution of lithium polysulfides, volume expansion of sulfur and uncontrollable deposition of lithium sulfide are three of the main challenges for this technology. State-of-the-art sulfur cathodes based on metal-oxide nanostructures can suppress the shuttl...

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