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1)  codoping
共掺
1.
The p-type conductivity was realized easily by codoping with N and Al i.
计算结果表明:原胞体积随着掺杂比例的提高而逐渐减小;将氮铝按照2∶1的原子比例共掺可以使氮的掺杂浓度比只掺杂氮时明显提高,且随着铝在锌靶中掺入比例的增加,载流子迁移率提高,浓度增大,使得p型ZnO电导率提高,传导特性增强。
2)  co-doped
共掺杂
1.
Preparation of lanthanum and carbon co-doped TiO_2 and photocatalysis under visible irradiation;
镧、碳共掺杂TiO_2的制备及其可见光催化性能
2.
Preparation of La~(3+)/Fe~(3+) co-doped TiO_2 pumice and photocatalytic mineralization of secondary effluents
La~(3+)和Fe~(3+)共掺杂TiO_2/浮石的制备及光催化矿化二级出水的效果
3.
Polyaniline/attapulgite conductive nanocomposites co-doped with HCl and TSA
HCl和TSA共掺杂聚苯胺/凹土纳米导电复合材料
3)  co-doping
共掺杂
1.
Structural characterization and properties of co-doping n-type CVD diamond films;
共掺杂n型CVD金刚石薄膜的结构和性能
2.
Recent progress on co-doping of nano-sized titanium dioxide photocatalysts;
纳米TiO_2光催化剂共掺杂的研究进展
3.
Synthesis of Li-Mn-O spinel as cathode of lithium-ion cell by co-doping of cation and anion;
阴、阳离子共掺杂合成Li-Mn-O尖晶石锂离子电池正极材料
4)  holmium/ytterbium-codoped
钬/镱共掺
5)  codoping
共掺杂
1.
After summarizing in detail the research on p-type doping with group- V elements including N, P and As, this article describes the technology of codoping and presents some areas where more work is needed.
概述了ZnO薄膜V族元素氮、磷、砷(N、P、As)p型掺杂的研究进展,分析对比了3种元素的掺杂和p型转变特性,简单介绍了共掺杂技术,提出了有待进一步研究的问题。
2.
Codoping of nitrogen and appropriate amount of iron in TiO2 enhances photoresponse and utilizing efficiency in visible light region,and then improves the performances of Fe-TiO2-xNx photocatalyst.
用溶胶-凝胶法制备铁、氮共掺杂纳米TiO2凝胶,浸渍-提拉法将其镀膜于载玻片表面,经干燥、煅烧,制得Fe-TiO2-xNx复合膜;用XRD,SEM,XPS及UV-Vis对镀膜样品进行了表征。
3.
The effects of the amount of codoping with Eu3+ and Gd3+ on the photocatalytic activity for photocatalytic degradation of methylene blue in solution and phase structure are investigated.
利用溶胶-凝胶法在煅烧温度540℃制备了纯的和低量Eu3+和Gd3+共掺杂的TiO2粉体,并用XRD技术对样品进行了表征。
6)  Fe co-doping
Fe共掺杂
补充资料:掺掺
1.女手纤美貌。
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