• Firstly, the significance of investigation on hydrogen storage in carbon nanotubes (CNTs) is indicated, and the hydrogen storage capacity of CNTs can be enhanced obviously by transition metal-doping.

    首先,揭示了研究纳米意义指出通过碳纳米管进行过渡金属掺杂能够有效地提高其储氢

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  • Both doping and quantum dot sensitization extend the visible light absorption of the metal oxide materials.

    掺杂量子敏化都增强金属氧化物材料可见光吸收

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  • Rechargeable lithium battery; Cathode material; Vanadium oxide; Metal doping; Nanostuctural material; Electrochemistry.

    二次电池正极材料氧化物金属掺杂纳米材料;电化学。

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  • This experimental method indicates that it is feasible to deposit functional gradient metal thin films by means of the interaction between pulsed laser and metal doping target.

    实验方法说明利用脉冲激光金属掺杂相互作用沉积梯度金属薄膜可行

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  • In the light of the research above, the conclusion that doping basic metal oxide can improve the sensitivity and selectivity to alcohol can be drew.

    因此,可以通过掺杂碱性金属氧化物提高乙醇气敏元件灵敏度选择性

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  • The methods of modification included the surface covering of graphite with a layer of disorganized carbon or a film of appropriate metal, surface oxidation, mechanical grinding and doping.

    修饰改性方法包括形成包敷金属层、表面氧化机械研磨以及掺杂等方法

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  • The modification methods, such as controlling nanoparticles granularity, coating carbon, and doping metal, have been reviewed, as well as the state of industry development.

    本文颗粒纳米化、表面包覆,本体掺杂方面综述了提高磷酸亚铁锂材料电子离子导电能力的的改性研究及产业化进展。

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  • This study adopted the citrate Sol-gel method to prepare the nanophase hexagonal ferrite with doping metal to get high performance microwave materials.

    为了获得高性能微波吸收材料,釆柠檬酸盐溶胶-凝胶制备掺杂金属离子纳米六角晶型铁氧体

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  • It's interesting that porous ZnO shows significant room temperature ferromagnetic even without any transition metal doping.

    更有意思的是我们发现氧化锌多孔微球具有比较弱的室温铁磁性。

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  • A novel materials design procedure based on the co-doping of metal nanoparticle and azo dye compound (MNPADC) is developed to improve the properties of functional molecules.

    改善功能分子特性,提出基于金属纳米粒子-偶氮染料复合物掺杂超分子结构功能材料设计方法

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  • A novel materials design procedure based on the co-doping of metal nanoparticle and azo dye compound (MNPADC) is developed to improve the properties of functional molecules.

    改善功能分子特性,提出基于金属纳米粒子-偶氮染料复合物掺杂超分子结构功能材料设计方法

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