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Materials Science

D-Index
43
Citations
7518
World Ranking
12297
National Ranking
128

Overview

Jan Linnros is affiliated with the Royal Institute of Technology in Sweden. Their research predominantly spans the fields of engineering and biochemistry, genetics, and molecular biology. The primary focus areas in their work include biomedical engineering, molecular biology, materials chemistry, electrical and electronic engineering, and cancer research.

The scientist's research topics center around extracellular vesicles in disease, nanopore and nanochannel transport studies, microRNA in disease regulation, microfluidic and bio-sensing technologies, silicon nanostructures and photoluminescence, semiconductor materials and devices, and nanowire synthesis and applications.

Jan Linnros has contributed to multiple research articles, including the following recent papers:

  • Multiparametric Profiling of Single Nanoscale Extracellular Vesicles by Combined Atomic Force and Fluorescence Microscopy: Correlation and Heterogeneity in Their Molecular and Biophysical Features (2021), published in Small
  • Low-Cost Synthesis of Silicon Quantum Dots with Near-Unity Internal Quantum Efficiency (2021), published in The Journal of Physical Chemistry Letters
  • Large-Area Transparent "Quantum Dot Glass" for Building-Integrated Photovoltaics (2022), published in ACS Photonics
  • Exploiting Electrostatic Interaction for Highly Sensitive Detection of Tumor-Derived Extracellular Vesicles by an Electrokinetic Sensor (2021), published in ACS Applied Materials & Interfaces
  • Comparison and optimization of nanoscale extracellular vesicle imaging by scanning electron microscopy for accurate size-based profiling and morphological analysis (2021), published in Nanoscale Advances

Their frequent coauthors include Apurba Dev, Sara Cavallaro, Siddharth S. Sahu, Petra Hååg, and Kristina Viktorsson. Jan Linnros publishes frequently in venues such as bioRxiv (Cold Spring Harbor Laboratory), Biosensors and Bioelectronics, Nanotechnology, The Journal of Physical Chemistry Letters, and ACS Photonics.

Best Publications

  • Surface charge sensitivity of silicon nanowires: size dependence.

    Niklas Elfström;Robert Juhasz;Ilya Sychugov;Torun Engfeldt

  • Analysis of the stretched exponential photoluminescence decay from nanometer-sized silicon crystals in SiO2

    Unknown

  • Photoluminescence spectroscopy of single silicon quantum dots

    Jan Valenta;Robert Juhasz;Jan Linnros

  • Recombination-enhanced extension of stacking faults in 4H-SiC p-i-n diodes under forward bias

    A. Galeckas;Jan Linnros;P. Pirouz

  • Silicon nanoribbons for electrical detection of biomolecules.

    Niklas Elfström;Amelie Eriksson Karlström;Jan Linnros

  • Narrow luminescence linewidth of a silicon quantum dot.

    Ilya Sychugov;Robert Juhasz;Jan Valenta;Jan Valenta;Jan Linnros

  • Ion-beam-induced epitaxial regrowth of amorphous layers in silicon on sapphire

    J. Linnros;B. Svensson;G. Holmén

  • High quantum efficiency for a porous silicon light emitting diode under pulsed operation

    Jan Linnros;Nenad Lalic

  • Auger recombination in 4H-SiC: Unusual temperature behavior

    A. Galeckas;J. Linnros;V. Grivickas;U. Lindefelt

  • Luminescent Transparent Wood

    Yuanyuan Li;Shun Yu;Jonathan G. C. Veinot;Jan Linnros

  • Divacancy control of the balance between ion-beam-induced epitaxial cyrstallization and amorphization in silicon

    J. Linnros;R. G. Elliman;W. L. Brown

  • Light emitting diode structure based on Si nanocrystals formed by implantation into thermal oxide

    Nenad Lalic;Jan Linnros

  • Carrier lifetime measurements using free carrier absorption transients. I. Principle and injection dependence

    Jan Linnros

  • Controlled fabrication of silicon nanowires by electron beam lithography and electrochemical size reduction.

    Robert Juhasz;Niklas Elfström;Jan Linnros

  • Proportionality between ion-beam-induced epitaxial regrowth in silicon and nuclear energy deposition.

    J Linnros;G Holmén;B Svensson

  • Waveguiding effects in the measurement of optical gain in a layer of Si nanocrystals

    J. Valenta;I. Pelant;Jan Linnros

  • Recombination-induced stacking faults : Evidence for a general mechanism in hexagonal SiC

    A. Galeckas;Jan Linnros;P. Pirouz

  • Near-Unity Internal Quantum Efficiency of Luminescent Silicon Nanocrystals with Ligand Passivation.

    Fatemeh Sangghaleh;Ilya Sychugov;Zhenyu Yang;Jonathan G. C. Veinot

  • Electroluminescence of single silicon nanocrystals

    Jan Valenta;Nenad Lalic;Jan Linnros

  • Fabrication of colloidal crystals with tubular-like packings

    Feng Li;Xavier Badel;Jan Linnros;John B. Wiley

  • Optical characterization of excess carrier lifetime and surface recombination in 4H/6H–SiC

    A. Galeckas;Jan Linnros;M. Frischholz;V. Grivickas

  • Light‐Emission Performance of Silicon Nanocrystals Deduced from Single Quantum Dot Spectroscopy

    Jan Valenta;Anna Fucikova;Frantisek Vacha;Frantisek Adamec

Frequent Co-Authors

Anders Hallén
Anders Hallén Royal Institute of Technology
Jonathan G. C. Veinot
Jonathan G. C. Veinot University of Alberta
Robert Elliman
Robert Elliman Australian National University
Alex Zunger
Alex Zunger University of Colorado Boulder
Sergei Popov
Sergei Popov Royal Institute of Technology
Pirouz Pirouz
Pirouz Pirouz Case Western Reserve University
Shu-Shen Li
Shu-Shen Li Chinese Academy of Sciences
John M. Poate
John M. Poate Nokia (United States)
Samir El Andaloussi
Samir El Andaloussi Karolinska Institute
Michael O. Thompson
Michael O. Thompson Cornell University

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