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Formation of surface nanobubbles on nanostructured substrates

机译:形成表面nanobubbles纳米基板

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The nucleation and stability of nanoscale gas bubbles located at a solid/liquid interface are attracting significant research interest. It is known that the physical and chemical properties of the solid surface are crucial for the formation and properties of the surface nanobubbles. Herein, we experimentally and numerically investigated the formation of nanobubbles on nanostructured substrates. Two kinds of nano-patterned surfaces, namely, nanotrenches and nanopores, were fabricated using an electron beam lithography technique and used as substrates for the formation of nanobubbles. Atomic force microscopy images showed that all nanobubbles were selectively located on the hydrophobic domains but not on the hydrophilic domains. The sizes and contact angles of the nanobubbles became smaller with a decrease in the size of the hydrophobic domains. The results indicated that the formation and stability of the nanobubbles could be controlled by regulating the sizes and periods of confinement of the hydrophobic nanopatterns. The experimental results were also supported by molecular dynamics simulations. The present study will be very helpful for understanding the effects of surface features on the nucleation and stability of nanobubbles/nanodroplets at a solid/liquid interface.
机译:的成核与稳定纳米气体气泡位于固体/液体界面吸引大量的研究兴趣。知道的物理和化学性质固体表面是至关重要的表面的形成和性质nanobubbles。数值研究的形成nanobubbles纳米基质。种纳米图案化表面,即nanotrenches和纳米孔的使用电子束光刻技术和使用作为基质nanobubbles的形成。原子力显微镜图像显示nanobubbles选择性位于但不是在亲水疏水域域。nanobubbles成为更小的减少疏水性域的大小。显示的形成和稳定nanobubbles可能通过调节控制的大小和时间的约束疏水性nanopatterns。结果也支持了分子动力学模拟。有助于理解表面的影响成核和稳定的特性nanobubbles /液滴在固体/液体接口。

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