1) blend doping
共混掺杂
1.
The modified polystyrene materials containing terbium were prepared by the method of blend doping and the in-situ polymerization.
采用原位聚合法和共混掺杂法制备稀土铽配合物改性聚苯乙烯(PS)材料,利用紫外光谱、荧光光谱、环境扫描电镜等手段对其进行表征。
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) 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) co-dope
共掺杂
1.
Preparation,characterization and photo-catalysis of TiO_2 nanoparticles co-doped with nitrogen and plumbum;
Pb-N共掺杂TiO_2纳米晶的制备、表征及光催化性能的研究
2.
Pure titania and nanoparticle titania co-doped with transition metal and rare earth metal were prepared by sol-gel method.
采用溶胶-凝胶法制备了纯TiO2、Fe-Ho共掺杂TiO2及V-La共掺杂TiO2,对样品进行了TG-DTA、XRD、TEM、DRS、XPS分析,以染料废水甲基橙为目标降解物,考察了样品的光催化性能。
3.
The purpose of this paper is improving photocatalytic activity of TiO_2 and the efficiency of visible light use by the co-doped TiO_2, and using co-doped TiO_2 photocatalysis films to treat with formaldehyde of indoor air.
因此本论文通过共掺杂改性来提高它的光催化活性和对可见光利用率,并将其应用于室内空气中甲醛气体的治理,主要研究内容如下。
补充资料:苯乙烯-丙烯腈共聚物/聚碳酸酯共混物
分子式:
CAS号:
性质:系由丙烯腈-苯乙烯共聚物与聚碳酸酯组成的共混物,可改善丙烯腈-苯乙烯共聚物的拉伸强度、热变形温度及冲击强度,并有较好的加工性能,耐溶剂性及耐候性,丙烯腈含量为25%的共聚物与聚碳酸酯共混可获得最好的综合性能,丙烯腈含量小于10%的共聚物与聚碳酸酯共混可得到透明材料,透光率可保持90%以上,机械共混法制取,可用于汽车仪表盘、挡泥板、其他外饰件及商用机器、电器制件等。
CAS号:
性质:系由丙烯腈-苯乙烯共聚物与聚碳酸酯组成的共混物,可改善丙烯腈-苯乙烯共聚物的拉伸强度、热变形温度及冲击强度,并有较好的加工性能,耐溶剂性及耐候性,丙烯腈含量为25%的共聚物与聚碳酸酯共混可获得最好的综合性能,丙烯腈含量小于10%的共聚物与聚碳酸酯共混可得到透明材料,透光率可保持90%以上,机械共混法制取,可用于汽车仪表盘、挡泥板、其他外饰件及商用机器、电器制件等。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条