ɫɫÀ²

News

New surface makes oil contamination remove itself

Researchers of Aalto University have developed surfaces where oil transports itself to desired directions.

Oil drop moves away from the landing point to the direction set by geometrical patterning of the surface. Video: Ville Jokinen, Visa Noronen, Sebastian Röder.

Researchers' oleophobic surfaces are microtextured with radial arrays of undercut stripes. When oil drops fall on these surfaces, drops move away from the landing point to the direction set by asymmetric geometrical patterning of the surface. The surfaces open new avenues for power-free liquid transportation and oil contamination self-removal applications in analytical and fluidic devices.

– We developed surfaces that are able to move liquid oil droplets by surface tension forces. Droplets from anywhere within the pattern will spontaneously move to the center of the pattern, tells Postdoctoral Researcher Ville Jokinen.

- Although surface engineering facilitates effective liquid manipulation and enables water droplet self-transportation on synthetic surfaces, self-transportation of oil droplets posed a major challenge because of their low surfacetension, explains Postdoctoral Researcher Xuelin Tian.

Oil drop moves away from the landing point to the direction set by asymmetric geometrical patterning of the surface. Photo: Ville Jokinen / Aalto University

New surfaces are also able to move low surface tension liquids other than oil. They work for water, wine and even pure ethanol. Directional liquid transportation of water is also found in nature, for instance, in cactus needles and the shells of desert beetles. Researchers see a range of industrial applications.

– The droplets position themselves very accurately at the center of the pattern. This could be used to deposit arrays of functional materials. We envision the patterns being used the other way around as well, for instance, to transport unwanted stray droplets away from critical areas of devices, such as to prevent clogging of nozzles in inkjet printing, says Professor Robin Ras.

Contact details:

Postdoctoral Researcher Ville Jokinen
Aalto University (Finland)
ville.p.jokinen@aalto.fi
Tel. +358 40 587 0425

Professor Robin Ras
Aalto University (Finland)
robin.ras@aalto.fi
Tel. +358 50 432 6633

Research article: Juan Li, Qi Hang Qin, Ali Shah, Robin H. A. Ras, Xuelin Tian, Ville Jokinen: Oil droplet self-transportation on oleophobic surfaces. Science Advances 2016. DOI 10.1126/sciadv.1600148

(advances.sciencemag.org)

  • Updated:
  • Published:
Share
URL copied!

Read more news

Microscope image of wavy skin tissue layer, pink and purple cells forming dense clusters
Cooperation, Studies, University Published:

Apply now: Bioengineering human tissue: Design, fabrication, analysis

Unite!’s Blended Intensive Programme (BIP) on bioengineering human tissue combines online learning with hands-on training in Germany.
Filmbot robot
Research & Art Published:

Researchers make micromanipulation more accessible

FilMBot aims to lower the barrier to high-precision work in education, research, and micro-assembly
Research often involves choosing a single analytic path, but there are other options available, Picture: Matti Ahlgren, Aalto University.
Press releases Published:

Scientific conclusions depend on who performs the analysis

More than 450 independent researchers from around the world conducted over 500 re-analyses of datasets from one hundred previously published studies in the social and behavioural sciences. All analysts received the same data and the same central research question, but they were free to carry out the analysis based on their own expert judgment.
Group of students at round tables talking and working on laptops in a bright office space
Research & Art, Studies Published:

Positive communication and improvisation help build students’ communication skills to meet employer needs

The School of Business redesigned its mandatory first-year communication course