首页> 外文期刊>Chemical engineering journal >Enhancing surface activity in silicon microreactors:Use of black silicon and alumina as catalyst supports for chemical and biological applications
【24h】

Enhancing surface activity in silicon microreactors:Use of black silicon and alumina as catalyst supports for chemical and biological applications

机译:增强硅微反应器的表面活性:使用黑硅和氧化铝作为化学和生物应用的催化剂载体

获取原文
获取原文并翻译 | 示例
       

摘要

When surface-supported chemical reactions are performed in microsystems,high production rate cannot be obtained due to the intrinsically low surface area.Increasing the active surface area of silicon microsystems is a challenge that is addressed in this paper using two original approaches:(i)modifying the structure of silicon by creating nanostructures(black silicon)using conventional etching processes of silicon micromachining or(ii)depositing a layer of porous gamma-alumina by washcoating a colloidal suspension of boehmite onto the silicon surface.The catalytic oxidation of carbon monoxide on platinum was chosen as a first test reaction in the domain of heterogeneous catalysis.In order to perform this reaction,platinum was either deposited by sputtering on silicon devices with black silicon nanostructuration,or impregnated inside the porosity of an alumina layer previously deposited on a silicon device.For specific biological applications,such as proteins analysis,some biological reactions could be advantageously achieved in microsystems using surface-supported species.As an example,an enzymatic reaction was carried out using silicon devices modified with black silicon nanostructuration and further functionalized with trypsin as a model enzyme.The catalytic activity was compared between silicon devices with the same two types of catalysts,comprising or not an enhancement of the surface activity.A minimum 10-fold increase in catalytic activity was estimated from kinetic measurements and represents the augmentation of the active surface really available for reactions.It was also shown how these catalytic materials were integrated in a microreactor increasing its catalytic active surface without modifying its global size.
机译:当在微系统中进行表面支持的化学反应时,由于固有的低表面积而无法获得高生产率。增加硅微系统的有效表面积是一种挑战,本文采用两种原始方法解决了这一问题:(i)使用硅微加工的常规蚀刻工艺通过创建纳米结构(黑硅)来改变硅的结构,或(ii)通过将勃姆石的胶体悬浮液重涂在硅表面上来沉积一层多孔的γ-氧化铝,一氧化碳的催化氧化选择铂作为非均相催化领域的第一个测试反应。为了进行该反应,可通过溅射在具有黑色硅纳米结构的硅器件上沉积铂,或将铂浸渍在先前沉积在硅上的氧化铝层的孔隙内设备。用于特定的生物学应用,例如蛋白质分析,某些生物学领域例如,在使用黑硅纳米结构修饰的硅装置并以胰蛋白酶为模型酶进一步功能化的硅装置上进行酶促反应。两种相同的催化剂,包括或不包括表面活性的增强。通过动力学测量估计,催化活性至少增加了10倍,代表了可用于反应的活性表面的增加。催化材料被集成到微反应器中,以增加其催化活性表面,而不会改变其整体尺寸。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号