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首页> 外文期刊>Progress in Materials Science >A MACEing silicon: Towards single-step etching of defined porous nanostructures for biomedicine
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A MACEing silicon: Towards single-step etching of defined porous nanostructures for biomedicine

机译:MACEING硅:朝向生物医学的定义多孔纳米结构的单步蚀刻

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摘要

Metal-assisted chemical etching (MACE) affords porous silicon nanostructures control over size, shape, and porosity in a single step. Simplicity and flexibility are potential advantages over more traditional silicon bulk micromachining techniques. MACE-generated porous micro- and nanostructures are suitable as biomaterials through their length scales and biocompatibility.This work provides a comprehensive overview of the MACE reaction mechanism that yields biomedically relevant silicon nanostructures - from nanowires, nanopillars, to sub-micrometer holes and pores. We discuss their biomedical applications in biosensors, cell capture and transfection arrays, and drug delivery vectors. We assess the reported benefits of the various nanostructures and discuss whether MACE provides clear and distinct advantages over other techniques.The flexibility and simplicity of MACE comes at a cost. The reaction parameters are many and inter-related, and we lack a full model of the etching mechanism. While the cathode reaction is well understood, the anode reaction involving dissolution of the silicon remains controversial. Such uncertainties impede rational design of specific structures that address biomedical requirements. We summarize current understanding to provide design guidelines for structures used in biomedicine and review the effects of key parameters on the morphological attributes of the etched features.
机译:金属辅助化学蚀刻(MACE)在单一步骤中提供多孔硅纳米结构控制尺寸,形状和孔隙率。简单性和灵活性是对更传统的硅散装微机械技术的潜在优势。通过它们的长度和生物相容性,Mace产生的多孔微型和纳米结构适合作为生物材料。本作品提供了术态反应机制的全面概述,其产生生物学相关的硅纳米结构 - 从纳米线,纳米粒子到亚微米孔和孔隙。我们在生物传感器,细胞捕获和转染阵列中讨论其生物医学应用以及药物递送载体。我们评估了各种纳米结构的报告的益处,并讨论了MACE是否提供了与其他技术的明确和不同的优势。术术的灵活性和简洁性需支付成本。反应参数是许多且相关的相互相关的,我们缺乏蚀刻机制的完整模型。虽然阴极反应很好地理解,但涉及硅溶解的阳极反应仍然存在争议。这种不确定性阻碍了解决生物医学要求的具体结构的合理设计。我们总结了目前的理解,为生物医学中使用的结构提供设计指南,并审查关键参数对蚀刻特征的形态属性的影响。

著录项

  • 来源
    《Progress in Materials Science 》 |2021年第2期| 100636.1-100636.42| 共42页
  • 作者单位

    Monash Univ Fac Pharm & Pharmaceut Sci Monash Inst Pharmaceut Sci Parkville Vic 3052 Australia|Australian Natl Fabricat Facil ANFF Melbourne Ctr Nanofabricat Clayton Vic 3168 Australia;

    INM Leibniz Inst New Mat Campus D2 2 D-66123 Saarbrucken Germany|Facebook Ireland Facebook Real Labs Patrick St Cork T12 RF85 Ireland;

    Monash Univ Fac Pharm & Pharmaceut Sci Monash Inst Pharmaceut Sci Parkville Vic 3052 Australia|Australian Natl Fabricat Facil ANFF Melbourne Ctr Nanofabricat Clayton Vic 3168 Australia|Commonwealth Sci & Ind Res Org CSIRO Clayton Vic 3168 Australia;

    INM Leibniz Inst New Mat Campus D2 2 D-66123 Saarbrucken Germany|Saarland Univ Colloid & Interface Chem Campus D2 2 D-66123 Saarbrucken Germany;

    Monash Univ Fac Pharm & Pharmaceut Sci Monash Inst Pharmaceut Sci Parkville Vic 3052 Australia|Australian Natl Fabricat Facil ANFF Melbourne Ctr Nanofabricat Clayton Vic 3168 Australia|INM Leibniz Inst New Mat Campus D2 2 D-66123 Saarbrucken Germany|Commonwealth Sci & Ind Res Org CSIRO Clayton Vic 3168 Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Metal-assisted chemical etching; Porous silicon; Nanostructured silicon; Drug delivery; Tissue engineering; Biosensors;

    机译:金属辅助化学蚀刻;多孔硅;纳米结构硅;药物递送;组织工程;生物传感器;

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