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半导体工业用高纯度气体与化学品的应用 被引量:1
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作者 段定夫 《集成电路应用》 2003年第4期56-60,72,共6页
1前言本文将就高纯度材料中具关键代表性之高纯度气体与化学品在半导体制程中的相关应用作一概略性的介绍。气体和化学品与超纯水类似,同为半导体制程中不可或缺之高纯度流体原料。气体和化学药品合计约占半导体材料成本之1/3(其余为硅... 1前言本文将就高纯度材料中具关键代表性之高纯度气体与化学品在半导体制程中的相关应用作一概略性的介绍。气体和化学品与超纯水类似,同为半导体制程中不可或缺之高纯度流体原料。气体和化学药品合计约占半导体材料成本之1/3(其余为硅芯片,光阻,溅镀靶等)。 展开更多
关键词 半导体工业 高纯度气体 高纯度化学品 应用 硅芯片制造 清洗 氧化 掺杂 微影 蚀刻
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High hydrosilylation efficiency of porous silicon SiHx species produced by Pt-assisted chemical etching for biochip fabrication 被引量:1
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作者 XIAO MinYu HAN HuanMei XIAO ShouJun 《Science China Chemistry》 SCIE EI CAS 2013年第8期1152-1163,共12页
Porous silicon (PSi) prepared from Pt metal-assisted chemical etching (MACE) was demonstrated to possess higher hydrosi- lylation efficiency (-57%) than anodized PSi (-11%) by surface reaction with co-undeceny... Porous silicon (PSi) prepared from Pt metal-assisted chemical etching (MACE) was demonstrated to possess higher hydrosi- lylation efficiency (-57%) than anodized PSi (-11%) by surface reaction with co-undecenyl alcohol (UO). Deconvolution of the SiHx (x = 1-3) stretching bands revealed the abundance of SiH2 species on MaCE PSi was 53%, -10% higher than on ano- dized samples, while both of Sill1 and Sill3 were -5% lower correspondently on MaCE PSi than on anodized samples. The surface SiHx abundances were suggested to account for the higher hydrosilylation efficiency on MaCE PSi. Optimization of Pt-assisted chemical etching parameters suggested a 7-15 nm thick Pt-coating and an etching time of 3-10 min for biochip ap- plications. Scanning electron microscopy images revealed that an isotropic top meso-porous layer was beneficial for hydrosi- lylation and long-term durability under ambient conditions. To end, an example of histidine-tagged protein immobilization and microarray was illustrated. Combining the materials' property, surface chemistry, and micro-fabrication technology together, we envision that silicon based biochip applications have a prosperous future. 展开更多
关键词 metal-assisted chemical etching porous silicon surface chemistry HYDROSILYLATION BIOCHIP
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