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1)  oxide hybrid photoelectrode
全氧化物混合光电极
1.
Research on oxide hybrid photoelectrodes is also reviewed.
对开展全氧化物混合光电极的研究进行了简介和展望。
2)  electro-optic poled polymer
电光极化聚合物
3)  mixed oxide
混合氧化物
1.
A series of La-Co-Ce-O mixed oxide catalysts with different bulk compositions were synthesized using a citric acid complexation-organic template decomposition method.
采用柠檬酸络合-有机模板剂分解法制备了不同原子配比的La-Co-Ce-O混合氧化物催化剂。
2.
The CeO_2-TiO_2 mixed oxide and its corresponding supported catalyst Pd/CeO_2-TiO_2 with Ce/Ti molar ratio of 0 05~0 40 were prepared by sol-gel and supercritical fluid drying method.
以溶胶 凝胶 超临界流体干燥法制备了CeO2 TiO2 混合氧化物(n(Ce) /n(Ti) =0 0 5~0 4 0 ) ,以其为载体,通过等体积浸渍法制备了Pd/CeO2 TiO2 催化剂。
3.
Co-Ni mixed oxide on Ni substrate was prepared by anodic deposition from Co(NO 3) 2-Ni(NO 3) 2 aqueous solution with different Co 2+/Ni 2+ ratios.
利用电化学阳极共沉积技术 ,从含不同Co2 + /Ni2 + 比的NaOH溶液中 ,在Ni基体上制备了Co Ni混合氧化物 。
4)  Mix oxide
混合氧化物
1.
The electrochromic mechanism of mix oxide and properties of the device with different thickness of WO 3:TiO 2 are investigated in this paper.
本文考察了 WO3:Ti O2 混合氧化物电致变色的机理及 WO3:Ti O2 厚度不同的器件的电致变色特性。
5)  Mixed oxides
混合氧化物
1.
The hydrogen reduction of three non-strochiometric of cobalt-nickel-tung-sten mixed oxides has been studied in the temperature range from 700 to 1000℃using X-ray diffraction analysis and scanning electron microscopy.
本文用X-射线衍射与扫描电镜分析研究了在700~1000℃范围内钨、镍、钴混合氧化物的氢还原。
2.
Using CaCl2 molten as electrolyte, sintered Fe2O3 and TiO2 mixed oxides pallets as cathode, graphite rod as anode, electrolysis was performed at 900 ℃.
在CaCl2熔盐中采用熔盐电解法由阴极的混合氧化物制备组分可控的TiFe合金。
6)  oxide electrode
氧化物电极
1.
The RE oxide and mixed oxide electrodes were prepared by thermal decomposition procedure.
采用热分解工艺制备稀土氧化物电极 ,研究了涂液组分、热分解温度及涂刷次数等对涂层电极性能的影响。
2.
The structure of metal electrodes will be instead of the oxide electrodes,which can resolve the deˉgeneration of ferroelectric properties,and will be the development direction of heterostructures of ferroelectric thin films.
氧化物电极结构将替代现有的金属电极结构,从而有效解决铁电性能的退化问题,是未来铁电薄膜异质结构的发展方向。
补充资料:物极则反
1.事物发展到极限就会向相反的方面转化。
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