نتایج جستجو برای: sno

تعداد نتایج: 1766  

2013
Michele Salanova Gudrun Schiffl Martina Gutsmann Dieter Felsenberg Sandra Furlan Pompeo Volpe Andrew Clarke Dieter Blottner

Activity-induced nitric oxide (NO) imbalance and "nitrosative stress" are proposed mechanisms of disrupted Ca(2+) homeostasis in atrophic skeletal muscle. We thus mapped S-nitrosylated (SNO) functional muscle proteins in healthy male subjects in a long-term bed rest study (BBR2-2 Study) without and with exercise as countermeasure in order to assess (i) the negative effects of chronic muscle dis...

Journal: :Dalton transactions 2012
Dipak V Shinde Rajaram S Mane In-Hwan Oh Joong Kee Lee Sung-Hwan Han

A novel architecture of SnO(2) nanowall-arrays coated with rutile-TiO(2) nanoneedles is fabricated for the first time and envisaged in dye-sensitized solar cells. Devices constructed using these architectures showed a power conversion efficiency of 4.12%, which is the highest among the SnO(2) nanostructures grown on conducting substrates by wet chemical methods.

Journal: :Journal of the American Chemical Society 2003
Wei-Qiang Han Alex Zettl

BN nanotubes are coated with SnO(2) by a simple chemical reaction in solution. BN nanotubes are stirred inside a SnCl(2) solution at room temperature for 1 h. The coating is uniform with complete coverage. The coating thickness is typically 1-5 nm. The coating layer contains SnO(2) nanoparticles with sizes ranging from 1 to 5 nm.

Journal: :International Journal of Thin Films Science and Technology (Online) 2023

Biphasic nanocomposites consisting of tin oxide (SnO) are great interest to the research community due their potential use in various optoelectronic devices. In this paper, SnO and SnO/Zn nanostructures were explored using spray pyrolysis techniques. Diffractometric spectrometric methods employed examine optical characteristics elemental composition deposited thin films. The XRD data showed tha...

Journal: :Nuclear Physics B - Proceedings Supplements 2001

Journal: :The Journal of biological chemistry 2007
Michael T Forrester Matthew W Foster Jonathan S Stamler

Protein S-nitrosylation has emerged as a principal mechanism by which nitric oxide exerts biological effects. Among methods for studying protein S-nitrosylation, the biotin switch technique (BST) has rapidly gained popularity because of the ease with which it can detect individual S-nitrosylated (SNO) proteins in biological samples. The identification of SNO sites by the BST relies on the abili...

Journal: :Chemical communications 2011
Seung-Hoon Choi In-Sung Hwang Jong-Heun Lee Seong-Geun Oh Il-Doo Kim

Microstructural evolution of spinel Zn(2)SnO(4) nanofibers was manipulated via an in situ phase separation process of inorganic precursors and a matrix polymer during electrospinning and calcination. Chemiresistive gas sensors using porous Zn(2)SnO(4) fibers exhibited superior C(2)H(5)OH sensing response.

Journal: :Chemical communications 2011
Jiaxin Li Yi Zhao Ning Wang Lunhui Guan

Ferrocene-encapsulated single-walled carbon nanotubes (Fc@SWNTs) are developed as carriers for attaching SnO(2). When Fc@SWNTs coated with SnO(2) nanoparticles were used as anode material in lithium ion batteries, the reversible capacity remained over 900 mA h g(-1) after 40 cycles, much higher than other carbon nanomaterials.

Journal: :Chemical communications 2011
Shujiang Ding Deyan Luan Freddy Yin Chiang Boey Jun Song Chen Xiong Wen David Lou

We demonstrate a new hydrothermal method to directly grow SnO(2) nanosheets on a graphene oxide support that is subsequently reduced to graphene. This unique SnO(2)/graphene hybrid structure exhibits enhanced lithium storage properties with high reversible capacities and good cycling performance.

Journal: :Chemical communications 2012
Peining Zhu M V Reddy Yongzhi Wu Shengjie Peng Shengyuan Yang A Sreekumaran Nair K P Loh B V R Chowdari S Ramakrishna

Mesoporous SnO(2) agglomerates with hierarchical structures and a high surface area were fabricated through a molten salt method. The SnO(2) demonstrated high photoelectric conversion efficiencies of 3.05% and 6.23% (with TiCl(4) treatment) in dye-sensitized solar cells, which are attributed to its dual functionality of providing high dye-loading and efficient light scattering.

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