The cees dekker Diaries
The cees dekker Diaries
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1996, initial mesoscopic cost density waves equipment; and 1st electrical measurements on a single metal nanocluster involving nanoelectrodes
Dynamics of initiation, termination and reinitiation of DNA translocation because of the motor protein EcoR124I
A rhythmically pulsing leaf-spring DNA-origami nanoengine that drives a passive follower Mathias Centola
This yielded a breakthrough. Inside only some months, we had been able to measure transportation by way of an individual solitary-walled carbon nanotube. Based on very low-temperature experiments by a brilliant PhD scholar in my group, Sander Tans (now a valued colleague and professor at Delft University of Technology using an Lively exploration lab at AMOLF in Amsterdam), we showed that carbon nanotubes have been legitimate quantum wires with really extensive (micrometres) electronic coherence lengths — confirming theoretical predictions of metallic behaviour.
Electrical transportation in monolayers of phthalocyanine molecular wires and AFM imaging of just one wire bridging two electrodes
‘At the beginning we looked at biological devices having a Bodily watch and acted on the basis in the instruments we realized. It took a few years just before we started off working a lot more on the large Organic challenges. I then started to get in touch with it nanobiology, a expression that didn't exist at the time.
2011, first in vitro measurements of transportation throughout one biomimetic nuclear pore advanced; growth of multiplexed magnetic tweezers for kilo-molecule experiments; and solved the mechanism of homology recognition in DNA homologous recombination
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Bulk-surface area coupling identifies the mechanistic link concerning Min-protein styles in vivo and in vitro
[fourteen] In 2005 Dekker turned associated with Netherlands-large discussions about Clever Design and style, a motion https://www.ceesdekker.net that he has because Plainly distanced himself from. Dekker advocates that science and religion will not be in opposition but can be harmonized.
Cees Dekker is Distinguished College Professor at TU Delft. Properly trained as a physicist, he pioneered nanotechnology with many discoveries on carbon nanotubes within the 1990s. Because 2000, he moved to single-molecule biophysics and nanobiology. His current research concentrates on (i) nanopores for protein sequencing; (ii) chromosome composition, especially SMC motor protein; and (iii) creating a residing synthetic cell from lifeless molecules. Dekker can be an elected member of your KNAW and fellow to your APS as well as IOP.
2008, initially observation of protein-coated DNA translocation by nanopores; fixed the origin with the electrophoretic pressure on DNA in nanopores; learned a big velocity enhance of microtubules in electrical fields; uncovered an anomalous electro-hydrodynamic orientation of microtubules; and settled the origin of noise in carbon nanotubes in liquid
2004, discovery of latest physics in translocation of DNA via nanopores; first experimental review of ions conduction in nanofluidic channels; 1st electrochemistry with person one-wall carbon nanotubes; STM detection and control of phonons in carbon nanotubes; first electrical docking of microtubules on kinesin-coated nanostructures; initially biophysics characterization in the mechanical properties of double-stranded RNA; and initially single-molecule analyze of DNA translocation by a restriction-modification enzyme.