نتایج جستجو برای: silicon dioxide nanoparticle

تعداد نتایج: 188643  

2016
Jingjie Wu Sichao Ma Jing Sun Jake I Gold ChandraSekhar Tiwary Byoungsu Kim Lingyang Zhu Nitin Chopra Ihab N Odeh Robert Vajtai Aaron Z Yu Raymond Luo Jun Lou Guqiao Ding Paul J A Kenis Pulickel M Ajayan

Electroreduction of carbon dioxide into higher-energy liquid fuels and chemicals is a promising but challenging renewable energy conversion technology. Among the electrocatalysts screened so far for carbon dioxide reduction, which includes metals, alloys, organometallics, layered materials and carbon nanostructures, only copper exhibits selectivity towards formation of hydrocarbons and multi-ca...

Journal: :physica status solidi (RRL) - Rapid Research Letters 2014

2007
W. N. Sharpe D. S. Gianola C. Eberl R. G. Polcawich R. J. Thompson

Silicon dioxide thin film is a common component in electronic devices and in MEMS, but its mechanical properties have rarely been studied. Techniques have been adapted and developed to conduct tensile tests on 1.0 μm thick silicon dioxide specimens that are 100, 150, and 200 μm wide and either 1 or 2 mm long. One end of the specimen remains fastened to the substrate, and the other is glued to a...

2012
Dave Maharaj Bharat Bhushan

Nano-object additives are used in tribological applications as well as in various applications in liquids requiring controlled manipulation and targeting. On the macroscale, nanoparticles in solids and liquids have been shown to reduce friction and wear. On the nanoscale, atomic force microscopy (AFM) studies have been performed in single- and multiple-nanoparticle contact, in dry environments,...

Journal: :Journal of the Royal Society, Interface 2014
Jason T Rashkow Sunny C Patel Ryan Tappero Balaji Sitharaman

Quantification of nanoparticle uptake into cells is necessary for numerous applications in cellular imaging and therapy. Herein, synchrotron X-ray fluorescence (SXRF) microscopy, a promising tool to quantify elements in plant and animal cells, was employed to quantify and characterize the distribution of titanium dioxide (TiO2) nanosphere uptake in a population of single cells. These results we...

2015
Chun-Ting Lin Yu-Wei Chen James Su Chien-Ting Wu Chien-Nan Hsiao Ming-Hua Shiao Mao-Nan Chang

In this study, we propose an ultra-facile approach to prepare a platinum silicide nanoparticle-modified tip apex (PSM tip) used for scanning Kelvin probe microscopy (SKPM). We combined a localized fluoride-assisted galvanic replacement reaction (LFAGRR) and atmospheric microwave annealing (AMA) to deposit a single platinum silicide nanoparticle with a diameter of 32 nm on the apex of a bare sil...

Journal: :Optics express 2013
Qing Li Ali A Eftekhar Majid Sodagar Zhixuan Xia Amir H Atabaki Ali Adibi

We demonstrate a vertical integration of high-Q silicon nitride microresonators into the silicon-on-insulator platform for applications at the telecommunication wavelengths. Low-loss silicon nitride films with a thickness of 400 nm are successfully grown, enabling compact silicon nitride microresonators with ultra-high intrinsic Qs (~ 6 × 10(6) for 60 μm radius and ~ 2 × 10(7) for 240 μm radius...

2016
Andrzej Borkowski Tomasz Cłapa Mateusz Szala Arkadiusz Gąsiński Marek Selwet

We describe the synthesis of nanocomposites, based on nanofibers of silicon carbide, silver nanoparticles, and cellulose. Silver nanoparticle synthesis was achieved with chemical reduction using hydrazine by adding two different surfactants to obtain a nanocomposite with silver nanoparticles of different diameters. Determination of antibacterial activity was based on respiration tests. Enzymati...

Journal: :Coatings 2021

The design and optimization of a nanostructured antireflective coatings for Si solar cells were performed by using response surface methodology (RSM). RSM was employed to investigate the effect on overall optical performance silicon coated with three different nanoparticle materials titanium dioxide, aluminum oxide, zinc oxide nanostructures. Central composite used reflectance process study mai...

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