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1)  porous silicon/oxidized porous silicon
多孔硅/氧化多孔硅
2)  OPS [ɔps]
氧化多孔硅
1.
Uniform Ag nano-particles was synthesized within nanoscale pores of oxidized porous silicon (OPS) by a simple solution immersion-thermal decomposition approach,forming the compound structure of Ag/OPS/silicon.
通过简单的溶液浸泡-热分解方法成功地在氧化多孔硅的孔中沉积了纳米银粒子,形成了银/氧化多孔硅/硅的复合结构。
2.
A copper inductor based on oxidized porous silicon(OPS)insulating technology is presented.
提出了一种基于氧化多孔硅厚膜隔离技术的Cu电感。
3)  porous silica
多孔氧化硅
1.
Preparation of porous silica with nanofibrous morphology from chrysotile;
采用纤蛇纹石制备纳米纤维状多孔氧化硅
2.
The phase-separation theory was used to prepare the porous silica from silicic gel derived from fly ash.
利用相分离原理,以粉煤灰经硅铝分离后所得的硅酸凝胶为原料,选用聚乙烯醇为造孔剂,硝酸为催化剂,成功地制备了多孔氧化硅。
3.
The influence of CTAB concentration on the structure and properties of mesoporous silica films is studied as well.
报道了一种新型纳米多孔氧化硅薄膜的制备方法 ,并详细探讨了表面活性剂浓度对介孔氧化硅薄膜结构和性能的影响。
4)  Oxidized porous silicon
氧化多孔硅
1.
Fabrication of free standing structure using oxidized porous silicon as sacrificial layers;
用氧化多孔硅作牺牲层制备悬空微结构
2.
The realization of oxidized porous silicon waveguides lens by selectively electrochemical anodisation process is presented.
给出了利用选择性的电化学腐蚀过程制备氧化多孔硅光波导棱镜的方法,分别制备出基于多孔硅的汇聚和发散透镜。
3.
The technique is based on the use of oxidized porous silicon as sacrificial layer for the air gap and the heavy p+-doping silicon of approximately 15μm thickness for the stiff backplate.
用氧化多孔硅作牺牲层制备空气隙 ,用约 15μm厚的浓硼掺杂硅作为微传声器的刚性背极板 。
5)  porous oxidized silicon
多孔氧化硅
1.
Preparation and photoluminescence of nano-porous oxidized silicon;
纳米多孔氧化硅的制备及荧光光谱研究
2.
Thus the porous oxidized silicon was selected as the optimal solid phase matrix for the purification DNA.
在硅基片上制备4种固相载体,分析不同载体的性质和制备特点,优选多孔氧化硅作为萃取DNA的固相载体。
6)  porous silicon
氧化多孔硅
1.
The waveguide directional coupler of oxidized porous silicon fabricated by electrochemical anodisation process;
用电化学腐蚀法制备氧化多孔硅波导定向耦合器
补充资料:多孔螅属
多孔螅属
Millepora
    水螅虫纲多孔螅目的一属。能分泌石灰质骨骼,与造礁石珊瑚伴生。是热带海洋中重要的造礁生物。全球现生的多孔螅共约13种。骨骼表面有许多小孔,中间较大的是营养孔,四周细小的是指状孔。生活时,从营养孔中伸出短圆柱形的营养体,顶端有4个短触手 ;从指状孔中伸出细长的指状体,顶端有5~7个触手。有性生殖自骨骼表面的壶腹放出自由游泳、构造较简单的水母体。有性细胞在垂管上发育。触手上有刺丝胞,具捕食和防卫的功能。
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