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The Cassie-Wenzel transition of a symmetric binary liquid mixture in contact with a nano-corrugated wall is studied. The corrugation consists of a periodic array of nano-pits with square cross sections. The substrate potential is the sum…

Computational Physics · Physics 2020-05-20 Swarn Lata Singh , Lothar Schimmele , S. Dietrich

Liquid drops on textured surfaces show different dynamical behaviors depending on their wetting states. They are extremely mobile when they are supported by composite solid-liquid-air interfaces (Cassie-Baxter state) and immobile when they…

Classical density functional theory is applied to investigate the validity of a phenomenological force-balance description of the stability of the Cassie state of liquids on substrates with nanoscale corrugation. A bulk free-energy…

Understanding the critical condition and mechanism of the droplet wetting transition between Cassie-Baxter state and Wenzel state triggered by an external electric field is of considerable importance because of its numerous applications in…

Soft Condensed Matter · Physics 2021-09-29 Ke Xiao , Xi Chen , Chen-Xu Wu

Micro-patterned surfaces have attracted significant attention in numerous applications owing to their potential to enhance hydrophobic and icephobic properties. A Cassie state of final wetting of a droplet upon impact on a micro-patterned…

Fluid Dynamics · Physics 2026-05-11 Jun Fang , Mengqi Ye , Huafeng Liu , Yupeng Jiang , Tianyou Wang , Zhizhao Che

When a drop of water is placed on a rough surface, there are two possible extreme regimes of wetting: the one called Cassie-Baxter (CB) with air pockets trapped underneath the droplet and the one characterized by the homogeneous wetting of…

Soft Condensed Matter · Physics 2015-10-16 Heitor C. M. Fernandes , Mendeli H. Vainstein , Carolina Brito

Super-antiwettability is an extreme situation of wetting where liquids stay at the tops of rough surfaces, in the so-called Cassie state1. Owing to the dramatic reduction of solid/liquid contact, it has many applications, such as…

Soft Condensed Matter · Physics 2016-05-18 Li Yanshen , Lv Cunjing , Quere David , Zheng Quanshui

We investigate directly at the microscale the morphology of the electrowetting induced transition between the Cassie-Baxter and Wenzel states for a water droplet on a superhydrophobic surface. Our experiments demonstrate that the transition…

Fluid Dynamics · Physics 2008-01-18 A. Staicu , G. Manukyan , F. Mugele

Wetting is often perceived as an intrinsic surface property of materials, but determining its evolution is complicated by its complex dependence on roughness across the scales. The Wenzel state, where liquids have intimate contact with the…

Soft Condensed Matter · Physics 2022-05-24 Xiaolong Zhang , Michele Scaraggi , Youbin Zheng , Xiaojuan Li , Yang Wu , Daoai Wang , Daniele Dini , Feng Zhou

The water-repellence properties of superhydrophobic surfaces make them promising for many applications. However, in some extreme environments, such as high humidities and low temperatures, condensation on the surface is inevitable, which…

Soft Condensed Matter · Physics 2026-02-03 Jiawang Cui , Tianyou Wang , Zhizhao Che

The superhydrophobic leaves of a lotus plant and other natural surfaces with self-cleaning function have been studied intensively for the development of artificial biomimetic surfaces. Surface roughness generated by hierarchical structures…

Computational Physics · Physics 2020-05-12 Kaixuan Zhang , Zhen Li , Martin Maxey , Shuo Chen , George Em Karniadakis

In this contribution we study wetting and nucleation of vapor bubbles on nanodecorated surfaces via free energy molecular dynamics simulations. The results shed light on the stability of superhydrophobicity in submerged surfaces with…

Soft Condensed Matter · Physics 2016-12-07 Matteo Amabili , Emanuele Lisi , Alberto Giacomello , Carlo Massimo Casciola

Superrepellency is a favorable non-wetting situation featured by a dramatically reduced solid/liquid contact region with extremely low adhesion. However, drop impact often brings out a notable extension of the contact region associated with…

Fluid Dynamics · Physics 2019-06-20 Songlin Shi , Cunjing Lv , Quanshui Zheng

In this work we consider two possible wetting states for a droplet when placed on a substrate: the Fakir configuration of a Cassie-Baxter (CB) state with a droplet residing on top of roughness grooves and the Wenzel (W) state characterized…

Soft Condensed Matter · Physics 2017-11-01 Marion Silvestrini , Carolina Brito

Superantiwettability, including superhydrophobicity, is an enhanced effect of surface ruggedness via the Cassie-Baxter wetting state, and has many applications such as antifouling, drop manipulation, and self-cleaning. However,…

Soft Condensed Matter · Physics 2016-02-10 Yanshen Li , Cunjing Lv , David Quéré , Quanshui Zheng

The string method is a general and flexible strategy to compute the most probable transition path for an activated process (rare event). We apply here the atomistic string method in the density field to the Cassie-Wenzel transition, a…

Statistical Mechanics · Physics 2015-06-23 Alberto Giacomello , Simone Meloni , Marcus Mueller , Carlo Massimo Casciola

The problem of contact angle and hysteresis determination has direct implications for engineering applications of wetting, colloid and surface science. Significant technical challenges can arise under real-world operating conditions,…

Soft Condensed Matter · Physics 2025-09-25 Carlos E Colosqui

We study a stationary wetting problem on rough and inhomogeneous solid surfaces. We derive a new formula for the apparent contact angle by asymptotic two-scale homogenization method. The formula reduces to a modified Wenzel equation for…

Analysis of PDEs · Mathematics 2016-09-27 Xianmin Xu

Rough or textured hydrophobic surfaces are dubbed superhydrophobic due to their numerous desirable properties, such as water repellency and interfacial slip. Superhydrophobicity stems from an aversion for water to wet the surface texture,…

Soft Condensed Matter · Physics 2016-09-28 Suruchi Prakash , Erte Xi , Amish J. Patel

The wetting properties of solid substrates with macroscopic random roughness are considered as a function of the microscopic contact angle of the wetting liquid and its partial pressure in the surrounding gas phase. It is shown that Wenzel…

Soft Condensed Matter · Physics 2016-10-05 Stephan Herminghaus
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