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Scalable fabrication of nanopores in membranes via thermal annealing of Au nanoparticles

机译:可伸缩的膜通过纳米孔的制备Au纳米颗粒的热退火

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摘要

Nanopores are promising candidates for versatile sensing of micro- and nanomaterials. However, the fabrication of isolated nanopores with optimal dimensions and distributions requires complex processes that involve the use of high-cost equipment. Herein, we report a scalable fabrication of isolated conical nanopores with adjustable dimensions and distribution densities on a Si3N4 membrane via thermal annealing of Au nanoparticles (AuNPs). The AuNP-dispersed solution was dropped and evaporated on the membrane, while the pH value and concentration of AuNPs controlled the zeta potential difference and the distribution density of the attached AuNPs. The optimized thermal annealing directly fabricated conical nanopores at the positions of the AuNPs because of the quasi-liquid state of the AuNPs and their interaction with the Si3N4 lattices. The 50, 100, and 200 nm AuNPs enabled one-step fabrication of 8-, 26-, and 63 nm nanopores, while the inter-distances and distribution densities were controllable over the membrane. The physicochemical analyses elucidated the underlying mechanisms of direct nanopore formation, and the precise adjustment of thermal annealing developed three unique nanopores that differently interacted with the AuNPs: (1) Au-residue-embedded nanopores, (2) isolated nanopores, and (3) nanopores with the remaining Au droplet. The AuNPs-driven fabrication of versatile nanopore membranes enables new applications for sensing and transporting small-scale materials.
机译:纳米孔是多才多艺的有前途的候选人传感微纳米材料。制造最优的孤立的纳米孔需要复杂的尺寸和分布过程,涉及高成本的使用设备。制造的孤立的锥形纳米孔可调尺寸和分布密度通过热退火盟在一个氮化硅薄膜纳米颗粒(AuNPs)。解决方案是和蒸发掉了膜,pH值和浓度AuNPs控制电动电势的不同的分布密度AuNPs。装配式锥形纳米孔的位置AuNPs因为quasi-liquid状态的AuNPs和他们的交互与氮化硅晶格。一步法制造的8 - 26 - 63海里纳米孔,而inter-distances和分布密度是可控的膜。直接纳米孔的潜在机制形成和热的精确调整退火开发三个独特的纳米孔不同与AuNPs:(1)Au-residue-embedded纳米孔,(2)孤立纳米孔,(3)纳米孔剩下的非盟滴。多功能纳米孔膜使新应用遥感和运输小规模的材料。

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