Pol Van Dorpe
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Explore the profile of Pol Van Dorpe including associated specialties, affiliations and a list of published articles.
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62
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728
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Recent Articles
1.
Gevers J, Beamish E, Voorspoels A, Botermans W, Fauvart M, Martens K, et al.
ACS Nano
. 2025 Feb;
19(6):6058-6068.
PMID: 39908038
Recent advances in nanopore technology have promoted significant progress in single-molecule detection and analysis. In particular, membrane-based solid-state nanopores show promise as highly scalable readout platforms. This study explores the...
2.
Frolov A, Van de Vondel J, Panov V, Van Dorpe P, Fedyanin A, Moshchalkov V, et al.
Nanophotonics
. 2024 Dec;
11(3):543-557.
PMID: 39633789
All-dielectric nanoantennas, consisting of high refractive index semiconductor material, are drawing a great deal of attention in nanophotonics. Owing to their ability to manipulate efficiently the flow of light within...
3.
Jooken S, Zinoviev K, Yurtsever G, De Proft A, de Wijs K, Jafari Z, et al.
Sci Rep
. 2024 May;
14(1):10921.
PMID: 38769346
Differentiation between leukocyte subtypes like monocytes and lymphocytes is essential for cell therapy and research applications. To guarantee the cost-effective delivery of functional cells in cell therapies, billions of cells...
4.
Voorspoels A, Gevers J, Santermans S, Akkan N, Martens K, Willems K, et al.
J Phys Chem A
. 2024 May;
128(19):3926-3933.
PMID: 38712508
Nanopore field-effect transistor (NP-FET) devices hold great promise as sensitive single-molecule sensors, which provide CMOS-based on-chip readout and are also highly amenable to parallelization. A plethora of applications will therefore...
5.
Kouznetsov D, Arisev O, Van Dorpe P, Verellen N
Opt Express
. 2022 Apr;
30(7):11384-11393.
PMID: 35473084
We explore the use of inverse design methods for the generation of periodic optical patterns in photonic integrated circuits. A carefully selected objective function based on the integer lattice method,...
6.
Hoyer M, Crevenna A, Kitel R, Willems K, Czub M, Dubin G, et al.
Sci Rep
. 2022 Mar;
12(1):4682.
PMID: 35304498
Protein assembly plays an important role throughout all phyla of life, both physiologically and pathologically. In particular, aggregation and polymerization of proteins are key-strategies that regulate cellular function. In recent...
7.
Chang Y, Van Sieleghem E, Lee J, Van Dorpe P, Van Hoof C
Appl Opt
. 2021 Oct;
60(24):7446-7454.
PMID: 34613034
In this paper, a computational performance analysis is presented of a wide-field time-gated fluorescence lifetime imaging microscope (FLIM) using practically realizable properties of the laser, sample, and a three-tap time-gated...
8.
Kouznetsov D, Deng Q, Van Dorpe P, Verellen N
Phys Rev Lett
. 2020 Nov;
125(18):184101.
PMID: 33196231
An effective way to design structured coherent wave interference patterns that builds on the theory of coherent lattices, is presented. The technique combines prime number factorization in the complex plane...
9.
Willems K, Ruic D, Lucas F, Barman U, Verellen N, Hofkens J, et al.
Nanoscale
. 2020 Aug;
12(32):16775-16795.
PMID: 32780087
Despite the broad success of biological nanopores as powerful instruments for the analysis of proteins and nucleic acids at the single-molecule level, a fast simulation methodology to accurately model their...
10.
Huang G, Willems K, Bartelds M, Van Dorpe P, Soskine M, Maglia G
Nano Lett
. 2020 Apr;
20(5):3819-3827.
PMID: 32271587
Biological nanopores are emerging as powerful tools for single-molecule analysis and sequencing. Here, we engineered the two-component pleurotolysin (PlyAB) toxin to assemble into 7.2 × 10.5 nm cylindrical nanopores with...