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Macroporous silicon microreactor for the preferential oxidation of CO

机译:大孔硅微反应器,适用于CO的优先氧化

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A macroporous silicon micromonolith containing ca. 40,000 regular channels of 3.3 μm in diameter per square millimeter has been successfully functionalized with an Au/TiO2 catalyst for CO preferential oxidation (CO-PrOx) in the presence of hydrogen. The functionalization of the silicon microchannels has been accomplished by growing a SiO2 layer on the channel walls, followed by exchange with a titanium alkoxyde precursor and decomposition into TiO2 and, finally, by anchoring carbosilanethiol dendron protected pre-formed Au nanoparticles. Catalytically active centers at the Au-TiO2 interface have been obtained by thermal activation. With this method, an excellent homogeneity and adherence of the catalytic layer over the microchannels of the macroporous silicon micromonolith has been obtained, which has been tested for CO-PrOx at 363–433 K and λ=2 under H2/CO=0–20 (molar). The macroporous silicon micromonolith converts ca. 3 NmL of CO per minute and mL of micro reactor at 433 K under H2/CO=20, suggesting that it could be particularly effective for hydrogen purification in low-temperature microfuel cells for portable applications.
机译:含有Ca的大孔硅微摩尔。为3.3μm在每平方毫米直径40000个正常渠道已经与被成功地官能化的Au /二氧化钛 2 催化剂在氢气的存在下CO优先氧化(CO-PROX)。硅微通道的官能化已被通道壁上生长的SiO 2 层来完成,通过与钛醇盐前体和分解成二氧化钛 2 和,最后交换,随后,通过锚定碳硅硫醇树枝状预形成的Au纳米颗粒。 Au-TiO 2 界面的催化活性中心已通过热激活获得。通过这种方法,已经获得了在大孔硅片微摩托的微通道上的优异均匀性和催化层的粘附,这已经在H 2下的363-433k和λ= 2的CO-PROx测试。 inf> / co = 0-20(摩尔)。大孔硅片微摩尔转换CA.在H 2 / CO = 20下,在433k下,在433k下为433k的微量反应器M10毫升,表明它对于便携式应用的低温微膳细胞中的氢净化可能是特别有效的。

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