期刊论文详细信息
Micro & nano letters
Fine YAG:Ce 3+ nanoparticles synthesised by supercritical hydrothermal reaction
article
Shibing Qian1  Yongqing Ma1  Fenlian Zan1  Dan Zou1  Zhenxiang Dai1  Ganhong Zheng1  Guang Li1 
[1] Anhui Key Laboratory of Information Materials and Devices, School of Physics and Materials Science, Anhui University
关键词: aluminium compounds;    cerium;    crystal growth from solution;    fluorescence;    nanofabrication;    nanoparticles;    phosphors;    scanning electron microscopy;    transmission electron microscopy;    X-ray diffraction;    yttrium compounds;    yttrium aluminium garnetCe3+ nanoparticles;    X-ray diffraction;    scanning electron microscope;    high resolution transmission electron microscopy;    fluorescence properties;    single-phase YAGCe3+;    conventional solid-state method;    wet-chemical methods;    YAGCe3+ phosphors;    uniform size distribution;    water supercritical point;    reaction time;    luminescent properties;    supercritical hydrothermal reaction;    temperature 390 degC;    time 2 h to 12 h;    YAGCe3+;    aluminium compounds;    cerium;    crystal growth from solution;    fluorescence;    nanofabrication;    nanoparticles;    phosphors;    scanning electron microscopy;    transmission electron microscopy;    X-ray diffraction;    yttrium compounds;    yttrium aluminium garnetCe3+ nanoparticles;    X-ray diffraction;    scanning electron microscope;    high resolution transmission electron microscopy;    fluorescence properties;    single-phase YAGCe3+;    conventional solid-state method;    wet-chemical methods;    YAGCe3+ phosphors;    uniform size distribution;    water supercritical point;    reaction time;    luminescent properties;    supercritical hydrothermal reaction;    temperature 390 degC;    time 2 h to 12 h;    YAGCe3+;   
DOI  :  10.1049/mnl.2012.0923
学科分类:计算机科学(综合)
来源: Wiley
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【 摘 要 】

Abstract ¾ Many students are uncomfortable with real world engineering problems where needs and requirements must be concretely defined and the selection of design solutions is not black and white. This paper describes a two semester, multi-disciplinary senior capstone project for students from three Engineering and Technology Department programs (electrical engineering, electrical and computer engineering technology, and engineering technology) that brings together the tools of project management and the creative product development process into industry sponsored projects.   The projects are fully integrated with the Center for Rapid Product Realization with its dual goals of economic development and enhanced learning.   The stage/gate development process is used with six formal reviews covering the development of the proposal through to the fabrication and testing of the project’s output.   Over the past four years thirty five (35) projects have been undertaken with students getting an exciting authentic life experience and introducing them to the real world of engineering.

【 授权许可】

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

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