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Unfortunately, Kurganov has decided to keep a veil of mystery over this aspect of his career and his results in the staking world remain fairly unknown.The 2016 award ceremony will be organised in cooperation with MG MSUM and take place on Friday, 9 December 2016, at Moderna galerija in Ljubljana.A conference in memoriam Polish art historian Piotr Piotrowski – winner of the 2010 award – will be organized on 8 December 2016.The iron and the silicon when oxidized you form an iron silicon oxide which is not volatile, as opposed to the carbon silicons that are.In fact you make a ceramic, which can be used on a nano scale. We also make use of the fact that the iron oxide can be etched much slower than the silicon oxide, resulting in contrasting etching rates. And that is the second important result, but still only an example of what you could do by introducing the iron in your polymer. We can also position carbon nano tubes (nano tubes are created by means of a catalyst) exactly on the right spot of a silicon surface, which is again a step forward in nano technology. If you think of a polymer as a chain and have two different polymers, they will not mix. If you introduce iron in the one polymer and not in the other, you create a contrast but the iron locks the polymers locally ordering the molecules in a nicely structured way.So we investigated the concept of self assembly in polymeric materials. I think that has been found before, we are not actually looking for the optimum material for nano structures, but the ferro bit of the thesis title is the crux of the matter.
Basically I would call it a material research project. If you consider plastics, polymers, the are organic compounds built of carbon and hydrogen (and perhaps a bit of oxygen and other substances, but carbon and hydrogen are the most important elements). When we introduced the iron we added some distinct functionality to the general properties of polymers.
So we investigated the concept of self assembly in polymeric materials. The main goal of this thesis was to investigate materials that we could use in surface patterning and later apply them in lithography: polymeric materials we could use to circumvent the photolithography.
Basically I would call it a material research project. The photolithography equipment is very expensive and it has got its limitations as well.
The main goal of this thesis was to investigate materials that we could use in surface patterning and later apply them in lithography: polymeric materials we could use to circumvent the photolithography.
The photolithography equipment is very expensive and it has got its limitations as well.
This page provides a sampling illustrating the flexibility provided by Igor's axes.