One of the promising strategies to achieve high performance flexible electronics is to integrate high performance components (micro‐electro‐mechanical systems, integrated circuit, etc.) on a flexible substrate. The heterointegration of fragile high performance components, for example, thinned down 100 GHz silicon technology, necessitate however methodologies to place these components on the substrate while exerting as little force as possible to prevent any damage from occurring. In this work, a novel approach is presented for component positioning by capillary assembly on a smart flexible substrate composed of two layers of polymers. It is shown how the wettability of the surface can be engineered by combining stretching induced deformatio...
The manipulation of droplet mobility on a nanotextured surface by oxygen plasma is demonstrated by m...
The manipulation of droplet mobility on a nanotextured surface by oxygen plasma is demonstrated by m...
We present a pick-and-place approach driven by capillarity for highly precise and cost-effective ass...
Soft micro devices and stretchable electronics have attracted great interest for their potential app...
Soft micro devices and stretchable electronics have attracted great interest for their potential app...
Contact angle hysteresis is addressed from two perspectives. The first is an analysis of the events ...
We describe a new scalable method to fabricate large-area hybrid superhydrophobic surfaces with sele...
Capillarity-driven self-assembly of small chips onto planar target substrates is a promising alterna...
Controlling the wettability of solid surfaces has been a fundamental topic in the realm of surface e...
Lotus flowers, rose petals, some plant leaves and insects have a naturally super-hydrophobic surface...
This paper presents a one-step method to fabricate superhydrophobic surfaces with extremely controll...
A smart, magnetically responsive superhydrophobic surface was facilely prepared by combining spray c...
Wetting is the ability of a liquid to maintain contact with a solid surface, and spreading is the di...
A simple and economical method for patterning hydrophilic surface areas next to hydrophobic areas on...
Surface adhesion is regulated by sparsely grafting responsive hydrophilic polymer chains on superhyd...
The manipulation of droplet mobility on a nanotextured surface by oxygen plasma is demonstrated by m...
The manipulation of droplet mobility on a nanotextured surface by oxygen plasma is demonstrated by m...
We present a pick-and-place approach driven by capillarity for highly precise and cost-effective ass...
Soft micro devices and stretchable electronics have attracted great interest for their potential app...
Soft micro devices and stretchable electronics have attracted great interest for their potential app...
Contact angle hysteresis is addressed from two perspectives. The first is an analysis of the events ...
We describe a new scalable method to fabricate large-area hybrid superhydrophobic surfaces with sele...
Capillarity-driven self-assembly of small chips onto planar target substrates is a promising alterna...
Controlling the wettability of solid surfaces has been a fundamental topic in the realm of surface e...
Lotus flowers, rose petals, some plant leaves and insects have a naturally super-hydrophobic surface...
This paper presents a one-step method to fabricate superhydrophobic surfaces with extremely controll...
A smart, magnetically responsive superhydrophobic surface was facilely prepared by combining spray c...
Wetting is the ability of a liquid to maintain contact with a solid surface, and spreading is the di...
A simple and economical method for patterning hydrophilic surface areas next to hydrophobic areas on...
Surface adhesion is regulated by sparsely grafting responsive hydrophilic polymer chains on superhyd...
The manipulation of droplet mobility on a nanotextured surface by oxygen plasma is demonstrated by m...
The manipulation of droplet mobility on a nanotextured surface by oxygen plasma is demonstrated by m...
We present a pick-and-place approach driven by capillarity for highly precise and cost-effective ass...