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jignes.bsky.social

@jignes.bsky.social
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IN²UB @in2ub.bsky.social · 24/11/2025
#ResearchIN2UB | Highlighted from #MaterialIN2UB Development of self-powered microfluidic systems for Lab-on-a-chip devices published at @pnas.org led by Prof. @jignes.bsky.social #RecercaUB #QuimicaUB #ActiveMatter #Microfluidics #SoftMatter #labonachip www.ub.edu/in2ub/develo...
ub.edu
Development of self-powered microfluidic systems for Lab-on-a-chip devices - IN²UB
Lab-on-a-chip systems enable the simultaneous analysis of multiple chemical samples and the execution of intricate in situ microfabrication within a single integrated platform, where fluids are driven...
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Reposted by @jignes.bsky.social
Pau Guillamat @pauguillamat.bsky.social · 12/11/2025
Microfluidic pumping with active nematics! Self-organized and self-sustained. No external pumps. @pnas.org @ub.edu www.pnas.org/doi/10.1073/... #ActiveMatter #Microfluidics #SoftMatter
pnas.org
Active nematic pumps | PNAS
Microfluidics involves the manipulation of flows at the microscale, typically requiring external power sources to generate pressure gradients. Alte...
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