期刊论文详细信息
Micro & nano letters
Preparation of silver/chemically reduced graphene composite for flexible printed circuits
article
Bin Feng1  Junjie Ma1  Xiaolong Gu1  Xinbing Zhao2  Yu Zhang1 
[1] Zhejiang Province Key Laboratory of Soldering & Brazing Materials and Technology, Zhejiang Metallurgical Research Institute Co., Ltd.;State Key Laboratory of Silicon Materials and Department of Materials Science and Engineering, Zhejiang University
关键词: silver;    graphene;    nanocomposites;    nanofabrication;    printed circuits;    flexible electronics;    graphene devices;    reduction (chemical);    X-ray diffraction;    Raman spectra;    Fourier transform infrared spectra;    X-ray photoelectron spectra;    scanning electron microscopy;    particle reinforced composites;    electrical resistivity;    bending;    electrical conductivity;    thermal stability;    silver-chemically reduced graphene composite;    flexible printed circuits;    chemical reduction;    X-ray diffraction;    Raman spectra;    Fourier transform infrared spectroscopy;    X-ray photoelectron spectroscopy;    graphite oxide;    scanning electron microscopy;    bending;    electrical conductivity;    electrical stability;    mechanical deformations;    thermal stability;    Ag-C;   
DOI  :  10.1049/mnl.2017.0621
学科分类:计算机科学(综合)
来源: Wiley
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【 摘 要 】

Through strict adherence to continuous quality improvement (CQI) methodology, over a 3 year period our teleradiology practice was able to achieve ongoing 100% compliance with our turn-around-time (TAT) goal for interpretation of stroke protocol head CTs. During the 3 years prior to implementing CQI, our efforts to reduce TAT through traditional less systematic methods had been ineffective, while through the iterative CQI method of defining metrics, measuring, planning, implementation, and re-evaluation, we progressively achieved our goal of interpreting all stroke head CTs in less than 15 minutes.

【 授权许可】

CC BY|CC BY-ND|CC BY-NC|CC BY-NC-ND   

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