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Featured researches published by Nis Korsgaard Andersen.


Langmuir | 2014

Structure Irregularity Impedes Drop Roll-Off at Superhydrophobic Surfaces

Simon Tylsgaard Larsen; Nis Korsgaard Andersen; Emil Søgaard; Rafael J. Taboryski

We study water drop roll-off at superhydrophobic surfaces with different surface patterns. Superhydrophobic microcavity surfaces were fabricated in silicon and coated with 1H,1H,2H,2H-perfluorodecyltrichlorosilane (FDTS). For the more irregular surface patterns, the observed increase in roll-off angles is found to be caused by a decrease of the receding contact angle, which in turn is caused by an increase of the triple phase contact line of the drops for those more irregular surfaces. To understand the observation, we propose to treat the microdrops as rigid bodies and apply a torque balance between the torque exerted by the projected gravity force and the torque exerted by the adhesion force acting along the triple line on the receding side of the drop. This simple model provides a proper order of magnitude estimate of the measured effects.


Journal of Micromechanics and Microengineering | 2016

Laser ablated micropillar energy directors for ultrasonic welding of microfluidic systems

Carl Esben Poulsen; Kasper Kistrup; Nis Korsgaard Andersen; Rafael J. Taboryski; Mikkel Fougt Hansen; Anders Wolff

We present a new type of energy director (ED) for ultrasonic welding of microfluidic systems. These micropillar EDs are based on the replication of cone like protrusion structures introduced using a pico-second laser and may therefore be added to any mould surface accessible to a pico-second laser beam. The technology is demonstrated on an injection moulded microfluidic device featuring high-aspect ratio (h × w = 2000 μm × 550 μm) and free-standing channel walls, where bonding is achieved with no detectable channel deformation. The bonding strength is similar to conventional EDs and the fabricated system can withstand pressures of over 9.5 bar.


Macromolecular Materials and Engineering | 2016

On The Role of Wetting, Structure Width, and Flow Characteristics in Polymer Replication on Micro‐ and Nanoscale

Christian Rytka; Nadia Opara; Nis Korsgaard Andersen; Per Magnus Kristiansen; Andreas Neyer


Microelectronic Engineering | 2015

Hot embossing and mechanical punching of biodegradable microcontainers for oral drug delivery

Ritika Singh Petersen; Rasoul Mahshid; Nis Korsgaard Andersen; Stephan Sylvest Keller; Hans Nørgaard Hansen; Anja Boisen


Microelectronic Engineering | 2015

Multi-height structures in injection molded polymer

Nis Korsgaard Andersen; Rafael J. Taboryski


Measurement Science and Technology | 2017

Drop shape analysis for determination of dynamic contact angles by double sided elliptical fitting method

Nis Korsgaard Andersen; Rafael J. Taboryski


Archive | 2016

MICRO-SCALE ENERGY DIRECTORS FOR ULTRASONIC WELDING

Carl Esben Poulsen; Anders Wolff; Nis Korsgaard Andersen; Kasper Kistrup; Rafael J. Taboryski


Nanotech 2012: Conference & Expo | 2012

Injection molded superhydrophobic surfaces based on microlithography and black silicon processing

Emil Søgaard; Nis Korsgaard Andersen; Rafael J. Taboryski; Kristian Smistrup


Archive | 2016

Replication tool and method of providing a replication tool

Carl Esben Poulsen; Anders Wolff; Nis Korsgaard Andersen; Kasper Kistrup; Rafael J. Taboryski


Archive | 2016

Fabrication of Nanostructured Polymer Surfaces and Characterization of their Wetting Properties: Enabling mass fabrication of superhydrophobic surfaces

Nis Korsgaard Andersen; Rafael J. Taboryski; Fridolin Okkels

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Rafael J. Taboryski

Technical University of Denmark

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Anders Wolff

Technical University of Denmark

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Carl Esben Poulsen

Technical University of Denmark

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Emil Søgaard

Technical University of Denmark

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Kasper Kistrup

Technical University of Denmark

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Mikkel Fougt Hansen

Technical University of Denmark

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Simon Tylsgaard Larsen

Technical University of Denmark

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Kristian Smistrup

Technical University of Denmark

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Alicia Johansson

Technical University of Denmark

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Anja Boisen

Technical University of Denmark

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