Searched for: author%3A%22Sasso%2C+L.%22
(1 - 9 of 9)
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Pleeging, R.M.B. (author), Ibis, F. (author), Fan, D. (author), Sasso, L. (author), Eral, H.B. (author), Staufer, U. (author)
Detected kidney stone cases are increasing globally, yet knowledge on the conditions for stone formation is lacking. Experimental approaches mimicking the micro-environmental conditions present in vivo can help sci-entists untangle intertwined physiochemical and biological phenomena leading to kidney stone formation. As crystal nucleation often...
journal article 2021
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Saraswat, Yug C. (author), Ibis, F. (author), Rossi, L. (author), Sasso, L. (author), Eral, H.B. (author), Fanzio, P. (author)
Hypothesis: Our ability to dictate the colloid geometry is intimately related to self-assembly. The synthesis of anisotropic colloidal particles is currently dominated by wet chemistry and lithographic techniques. The wet chemical synthesis offers limited particle geometries at bulk quantities. Lithographic techniques, on the other hand,...
journal article 2020
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Frota Sartori, A. (author), Overes, Bart (author), Fanzio, P. (author), Tsigkourakos, M.C. (author), Sasso, L. (author), Buijnsters, J.G. (author)
Micro-patterned diamond has been investigated for numerous applications, such as biomimetic surfaces, electrodes for cell stimulation and energy storage, photonic structures, imprint lithography, and others. Controlled patterning of diamond substrates and moulds typically requires lithography-based top-down processing, which is costly and...
journal article 2019
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Nouri Goushki, M. (author), Sharma, Abhishek (author), Sasso, L. (author), Zhang, Shuang (author), van der Eerden, B.C.J. (author), Staufer, U. (author), Fratila-Apachitei, E.L. (author), Zadpoor, A.A. (author)
Manufacturing high throughput in vitro models resembling the tissue microenvironment is highly demanded for studying bone regeneration. Tissues such as bone have complex multiscale architectures inside which cells reside. To this end, engineering a microfluidic platform incorporated with three-dimensional (3D) microscaffolds and submicron...
journal article 2019
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Kumar, P. (author), Fanzio, P. (author), Sasso, L. (author), Langelaar, Matthijs (author)
The concept and synthesis approach for planar Compliant Fluidic Control Structures (CFCSs), monolithic flexible continua with embedded functional pores, is presented in this manuscript. Such structures are envisioned to find application in biomedicine as tunable microfluidic devices for drug/nutrient delivery. The functional pores enlarge and...
journal article 2019
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Hunt, A. (author), Freriks, Mirte (author), Sasso, L. (author), Mohajerin Esfahani, P. (author), Hassan HosseinNia, S. (author)
Today’s mechatronics relies on conventional transducers, i.e. lumped sensors and actuators with rigid construction. Future consumer products, medical devices and manufacturing processes require sensing and actuation systems with high count and density of individual transducer units. Such systems can be addressed as distributed transducers....
conference paper 2018
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Fanzio, P. (author), Chang, Chi-Tung (author), Skolimowski, Maciej (author), Tanzi, Simone (author), Sasso, L. (author)
We present here an electrochemical sensor microsystem for the monitoring of pH. The all-polymeric device is comprised of a cyclic olefin copolymer substrate, a 200 nm-thin patterned layer of conductive polymer (PEDOT), and a 70 nm electropolymerized layer of a pH sensitive conductive polymer (polyaniline). The patterning of the fluidic ...
journal article 2017
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Fanzio, P. (author), Cagliani, A. (author), Peterffy, K.G. (author), Sasso, L. (author)
The patterning of conductive polymers is a major challenge in the implementation of these materials in several research and industrial applications, spanning from photovoltaics to biosensors. Within this context, we have developed a reliable technique to pattern a thin layer of the conductive polymer poly(3,4-ethylenedioxythiophene) (PEDOT)...
journal article 2017
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Fanzio, P. (author), Tichem, M. (author), Staufer, U. (author), Sasso, L. (author)
abstract 2016
Searched for: author%3A%22Sasso%2C+L.%22
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