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Persistent Photoconductivity, Nanoscale Topography, and Chemical Functionalization Can Collectively Influence the Behavior of PC12 Cells on Wide Bandgap Semiconductor Surfaces

机译:持续光电导性,纳米级地形和化学官能化可以共同影响PC12电池在宽带隙半导体表面上的行为

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摘要

Wide bandgap semiconductors such as gallium nitride (GaN) exhibit persistent photoconductivity properties. The incorporation of this asset into the fabrication of a unique biointerface is presented. Templates with lithographically defined regions with controlled roughness are generated during the semiconductor growth process. Template surface functional groups are varied using a benchtop surface functionalization procedure. The conductivity of the template is altered by exposure to UV light and the behavior of PC12 cells is mapped under different substrate conductivity. The pattern size and roughness are combined with surface chemistry to change the adhesion of PC12 cells when the GaN is made more conductive after UV light exposure. Furthermore, during neurite outgrowth, surface chemistry and initial conductivity difference are used to facilitate the extension to smoother areas on the GaN surface. These results can be utilized for unique bioelectronics interfaces to probe and control cellular behavior.
机译:宽带隙半导体如氮化镓(GaN)表现出持续的光电导性能。提出了将该资产的纳入制造独特的生物接口。在半导体生长过程中产生具有控制粗糙度的光刻限定区域的模板。模板表面官能团使用台式表面官能化程序而变化。通过暴露于UV光来改变模板的电导率,并且在不同的基板电导率下映射PC12细胞的行为。图案尺寸和粗糙度与表面化学结合以改变PC12细胞当GaN在UV曝光后更换PC12细胞的粘附性。此外,在神经沸石过度的情况下,使用表面化学和初始电导率差来促进延伸到GaN表面上的更平滑的区域。这些结果可用于独特的生物电力界面来探测和控制蜂窝行为。

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  • 来源
    《Small》 |2017年第24期|共6页
  • 作者单位

    North Carolina State Univ Dept Mat Sci &

    Engn 911 Partners Way Raleigh NC 27606 USA;

    North Carolina State Univ Dept Mat Sci &

    Engn 911 Partners Way Raleigh NC 27606 USA;

    North Carolina State Univ Dept Mat Sci &

    Engn 911 Partners Way Raleigh NC 27606 USA;

    North Carolina State Univ Dept Mat Sci &

    Engn 911 Partners Way Raleigh NC 27606 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;
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