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Marcus Lau
Marcus Lau
TRUMPF Laser- und Systemtechnik GmbH
在 trumpf.com 的电子邮件经过验证
标题
引用次数
引用次数
年份
Quantification of mass-specific laser energy input converted into particle properties during picosecond pulsed laser fragmentation of zinc oxide and boron carbide in liquids
M Lau, S Barcikowski
Applied Surface Science 348, 22-29, 2015
702015
Plasmon assisted 3D microstructuring of gold nanoparticle-doped polymers
L Jonušauskas, M Lau, P Gruber, B Gökce, S Barcikowski, M Malinauskas, ...
Nanotechnology 27 (15), 154001, 2016
662016
Germanium sub-microspheres synthesized by picosecond pulsed laser melting in liquids: Educt size effects
D Zhang, M Lau, S Lu, S Barcikowski, B Gökce
Scientific Reports 7 (1), 40355, 2017
492017
Ligand-free gold atom clusters adsorbed on graphene nano sheets generated by oxidative laser fragmentation in water
M Lau, I Haxhiaj, P Wagener, R Intartaglia, F Brandi, J Nakamura, ...
Chemical Physics Letters 610, 256-260, 2014
492014
Mechanism of Laser-Induced Bulk and Surface Defect Generation in ZnO and TiO2 Nanoparticles: Effect on Photoelectrochemical Performance
M Lau, S Reichenberger, I Haxhiaj, S Barcikowski, AM Müller
ACS Applied Energy Materials 1 (10), 5366-5385, 2018
412018
Inclusion of supported gold nanoparticles into their semiconductor support
M Lau, A Ziefuss, T Komossa, S Barcikowski
Physical Chemistry Chemical Physics 17 (43), 29311-29318, 2015
382015
Near-field-enhanced, off-resonant laser sintering of semiconductor particles for additive manufacturing of dispersed Au–ZnO-micro/nano hybrid structures
M Lau, RG Niemann, M Bartsch, W O’Neill, S Barcikowski
Applied Physics A 114, 1023-1030, 2014
252014
Direct integration of laser-generated nanoparticles into transparent nail polish: the plasmonic “Goldfinger”
M Lau, F Waag, S Barcikowski
Industrial & Engineering Chemistry Research 56 (12), 3291-3296, 2017
222017
Physical fabrication of colloidal ZnO nanoparticles combining wet-grinding and laser fragmentation
P Wagener, M Lau, S Breitung-Faes, A Kwade, S Barcikowski
Applied Physics A 108, 793-799, 2012
222012
Handbook of Laser Synthesis & Processing of Colloids
S Barcikowski
Deutsche Nationalbibliothek, 2019
192019
Gold–manganese oxide core–shell nanoparticles produced by pulsed laser ablation in water
T Simao, DM Chevrier, J Jakobi, A Korinek, G Goupil, M Lau, S Garbarino, ...
The Journal of Physical Chemistry C 120 (39), 22635-22645, 2016
192016
Mixed‐Metal Tungsten Oxide Photoanode Materials Made by Pulsed‐Laser in Liquids Synthesis
CM Blumenfeld, M Lau, HB Gray, AM Müller
ChemPhysChem 18 (9), 1091-1100, 2017
152017
Laser Fragmentation and Melting of Particles
M Lau
Springer, 2016
102016
Method for manufacture of pure, carbon free nanoparticles
S Barcikowski, M Lau
US Patent 10,035,112, 2018
92018
Laser-induced growth of YVO 4: Eu 3+ nanoparticles from sequential flowing aqueous suspension
H Wang, M Lau, T Sannomiya, B Gökce, S Barcikowski, O Odawara, ...
RSC advances 7 (15), 9002-9008, 2017
82017
Laser powder bed fusion of nano-WC-modified and nano-TiO2-modified metal powders
SB Jan T. Sehrt, Stefan Kleszczynski, Christian Notthoff, Marcus Lau, Bilal ...
Proc. of International Conference on Additive Technologies, 2016
8*2016
Gradual modification of ITO particle's crystal structure and optical properties by pulsed UV laser irradiation in a free liquid jet
M Lau, T Straube, AV Aggarwal, U Hagemann, B de Oliveira Viestel, ...
Dalton Transactions 46 (18), 6039-6048, 2017
62017
Rapid nanointegration with laser-generated nanoparticles
M Lau, B Gökce, G Marzun, C Rehbock, S Barcikowski
Proceedings of Lasers in Manufacturing, 2015
12015
Method and device for treating particles and nanoparticles of an active pharmaceutical ingredient
M Lau, A Popp
US Patent App. 17/430,451, 2022
2022
Compact device and process for the production of nanoparticles in suspension
S Barcikowski, M Lau, F Waag
US Patent App. 17/281,674, 2022
2022
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