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Nicolaas J Kramer
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Year
Plasmonic Properties of Silicon Nanocrystals Doped with Boron and Phosphorus
NJ Kramer, KS Schramke, UR Kortshagen
Nano letters 15 (8), 5597-5603, 2015
1562015
Metal-insulator transition in films of doped semiconductor nanocrystals
T Chen, KV Reich, NJ Kramer, H Fu, UR Kortshagen, BI Shklovskii
Nature materials, 2015
1382015
Plasma-induced crystallization of silicon nanoparticles
NJ Kramer, RJ Anthony, M Mamunuru, ES Aydil, UR Kortshagen
Journal of Physics D: Applied Physics 47 (7), 075202, 2014
1172014
Controlled doping of silicon nanocrystals investigated by solution-processed field effect transistors
R Gresback, NJ Kramer, Y Ding, T Chen, UR Kortshagen, T Nozaki
ACS nano 8 (6), 5650-5656, 2014
982014
Nonequilibrium-Plasma-Synthesized ZnO Nanocrystals with Plasmon Resonance Tunable via Al Doping and Quantum Confinement
BL Greenberg, S Ganguly, JT Held, NJ Kramer, KA Mkhoyan, ES Aydil, ...
Nano letters 15 (12), 8162-8169, 2015
822015
Surface hydride composition of plasma-synthesized si nanoparticles
BN Jariwala, NJ Kramer, MC Petcu, DC Bobela, MCM Sanden, P Stradins, ...
The Journal of Physical Chemistry C 115 (42), 20375-20379, 2011
472011
Ultrahigh throughput plasma processing of free standing silicon nanocrystals with lognormal size distribution
İ Doğan, NJ Kramer, RHJ Westermann, K Dohnalová, AHM Smets, ...
Journal of Applied Physics 113 (13), 134306, 2013
462013
Ultrafast Photoluminescence in Quantum-Confined Silicon Nanocrystals Arises from an Amorphous Surface Layer
DC Hannah, J Yang, NJ Kramer, GC Schatz, UR Kortshagen, RD Schaller
ACS Photonics 1 (10), 960-967, 2014
452014
Requirements for plasma synthesis of nanocrystals at atmospheric pressures
NJ Kramer, ES Aydil, UR Kortshagen
Journal of Physics D: Applied Physics 48 (3), 035205, 2015
432015
Shape memory polymer thin films deposited by initiated chemical vapor deposition
NJ Kramer, E Sachteleben, G Ozaydin-Ince, R van de Sanden, ...
Macromolecules 43 (20), 8344-8347, 2010
112010
Reply to “Comment on ‘Ultrafast Photoluminescence in Quantum-Confined Silicon Nanocrystals Arises from an Amorphous Surface Layer’”
DC Hannah, J Yang, NJ Kramer, GC Schatz, UR Kortshagen, RD Schaller
ACS Photonics 2 (3), 456-458, 2015
92015
GROUP IV NANOCRYSTALS HAVING A SURFACE SUBSTANTIALLY FREE OF OXYGEN
UR Kortshagen, NJ Kramer, LM Wheeler, T Chen
US Patent 20,150,325,328, 2015
12015
Self-assembly of plasmonic/excitonic silicon nanocrystals into photonic crystals
J Yang, NJ Kramer, CJ Hogan, UR Kortshagen
MRS Communications 5 (04), 573-577, 2015
2015
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