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1)  Doped anion
掺杂阴离子
2)  anion-doped
阴离子掺杂
1.
Mechanisms of anion-doped c -ZrO_2 was calculated by PW91PW91 method of Density-Functional Theory (DFT).
利用密度泛函 (DFT)中的PW91PW91方法计算了碳和氮阴离子掺杂稳定c ZrO2 的机制。
3)  anion-cation compound substitution
阴阳离子复合掺杂
1.
Study of the reaction mechanism of anion-cation compound substitution Li_(1+x)Mn_(2-x)O_(4-y)F_y;
阴阳离子复合掺杂型Li_(1+x)Mn_(2-x)O_(4-y)F_y的合成机理研究
4)  anion-cation compound substitution
阴、阳离子复合掺杂
5)  ion doping
离子掺杂
1.
From the perspectives of dye photosensitization,positive ion doping,negative ion doping,and new type composite photocatalyst,it investigates the preparation,photocatalysis mechanism,effects and shortcomings of the concerned material.
从染料光敏化、阳离子掺杂、阴离子掺杂及新型复合光催化剂四个方面详细探讨该类复合TiO2的制备方法、催化机理、实际效果和缺点;较系统地介绍可见光化光催化剂的研究现状、成果及前景。
2.
The methods to enhance hydrogen production are reviewed,including addition of sacrificial reagent,addition of sodium carbonate,noble metal loading,metal ion doping,anion doping,dye sensitization,semiconductor composition and ion implantation.
综述了加入牺牲剂、碳酸钠、贵金属负载化、金属离子掺杂、阴离子掺杂、染料光敏化、半导体复合以及离子注入等提高二氧化钛光催化制氢的方法,讨论了这几种改性技术的机理以及对提高二氧化钛在可见光下的制氢效率的作用。
3.
To improve electronic conductivity of LiFePO4 by conductive carbon coating and metal particle or ion doping has b.
通过导电碳包覆及金属或金属离子掺杂等改性方法提高这种材料的电子导电率已成为锂离子电池材料领域的研究热点之一。
6)  Doping ion
掺杂离子
1.
Through analysing the making process of the heating type thick film sensors by mixing the ion doping into WO 3 and combining TPD and semiconductor analysis,the effect of the doping ion on the properties of O 3 sensors is studied.
在WO3 中掺入杂质离子 ,制成傍热式厚膜元件 ,结合升温脱附 (TPD)和半导体分析 ,研究了掺杂离子对元件性能的影
补充资料:阴到
1.方言。偷偷地。
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