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首页> 外文期刊>ACS applied materials & interfaces >Ordered Topographically Patterned Silicon by Insect-Inspired Capillary Submicron Stamping
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Ordered Topographically Patterned Silicon by Insect-Inspired Capillary Submicron Stamping

机译:通过昆虫风格的毛细管亚微米冲压订购地形图案化硅

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摘要

Insect-inspired capillary submicron stamping and subsequent surface-limited metal-assisted chemical etching (MACE) with ammonium bifluoride as a HF source are employed for the high-throughput production of ordered topographically patterned silicon (tpSi). Insect feet often possess hairy contact elements through which adhesive secretion is deployed. Thus, arrays of adhesive secretion drops remain as footprints on contact surfaces. Stamps for insect-inspired capillary submicron stamping having surfaces topographically patterned with contact elements mimic the functional principles of such insect feet. They contain spongy continuous nanopore networks penetrating the entire stamps. Any ink (organic or aqueous) may be supplied from the backside of the nanoporous stamps to the contact elements. We generated ordered arrays of submicron AgNO3 dots extending square millimeters on Si by manual stamping with cycle times of a few seconds under ambient conditions; at higher load, ordered holey AgNO3 films were obtained. Surface-limited MACE correspondingly yielded either macroporous tpSi or Si pillar arrays. Inkjet printing of polymer solutions onto the tpSi yielded patterns of polymer blots conformally covering the tpSi. Such blot patterns could potentially represent a starting point for the development of persistent and scratch-resistant identity labels or quick response codes on silicon surfaces.
机译:作为HF源的昆虫风格的毛细管亚微米标记和随后的表面有限的金属辅助化学蚀刻(坐标)作为HF源的氨基源用于有序地形图案化硅(TPSI)的高通量产生。昆虫脚经常具有毛茸茸的接触元件,粘合剂分泌通过该元件部署。因此,粘合剂分泌阵列仍然在接触表面上的占地面积。用于昆虫风格毛细管亚微米的邮票,具有拓扑图案化接触元件的表面模拟了这种昆虫脚的功能原理。它们包含海绵状连续纳米孔网络,穿透整个邮票。任何墨水(有机或水)可以从纳米多孔标记的背面供应到接触元件。我们通过手动冲压在环境条件下,通过手动冲压在Si上延伸平方毫米的亚微米Agno3点阵列。在较高的载荷下,获得了有序的HOLMY AGNO3薄膜。表面有限的芯片相应地产生大孔TPSI或Si柱阵列。将聚合物溶液的喷墨印染在TPSI上,得到的聚合物印迹图案,共同地覆盖TPSI。这种污点图案可能代表硅表面上持续和耐刮擦标签或快速响应代码的开发的起点。

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