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Smooth and solid WS2 submicrospheres grown by a new laser fragmentation and  reshaping process with enhanced tribological properties - Chemical  Communications (RSC Publishing)
Smooth and solid WS2 submicrospheres grown by a new laser fragmentation and reshaping process with enhanced tribological properties - Chemical Communications (RSC Publishing)

Temporal evolution of laser-fragmented, Pt and Au colloids (a-c) TEM... |  Download Scientific Diagram
Temporal evolution of laser-fragmented, Pt and Au colloids (a-c) TEM... | Download Scientific Diagram

Laser Fragmentation and Melting of Particles | Semantic Scholar
Laser Fragmentation and Melting of Particles | Semantic Scholar

Fabrication of nanorods colloids of copper hexadecafluorophthalocyanine by  nanosecond-pulse laser fragmentation in organic solvents - ScienceDirect
Fabrication of nanorods colloids of copper hexadecafluorophthalocyanine by nanosecond-pulse laser fragmentation in organic solvents - ScienceDirect

Experimental setup for pulsed laser fragmentation in a liquid medium. |  Download Scientific Diagram
Experimental setup for pulsed laser fragmentation in a liquid medium. | Download Scientific Diagram

Quantification of mass-specific laser energy input converted into particle  properties during picosecond pulsed laser fragmentation of zinc oxide and  boron carbide in liquids - ScienceDirect
Quantification of mass-specific laser energy input converted into particle properties during picosecond pulsed laser fragmentation of zinc oxide and boron carbide in liquids - ScienceDirect

Femtosecond laser fragmentation from water-dispersed microcolloids: toward  fast controllable growth of ultrapure Si-based nanomaterials for biological  applications - Journal of Materials Chemistry B (RSC Publishing)
Femtosecond laser fragmentation from water-dispersed microcolloids: toward fast controllable growth of ultrapure Si-based nanomaterials for biological applications - Journal of Materials Chemistry B (RSC Publishing)

Size control of laser-fabricated nanoparticles by pulsed laser... |  Download Scientific Diagram
Size control of laser-fabricated nanoparticles by pulsed laser... | Download Scientific Diagram

Fragmentation of green gummy bear. Direction of laser irradiation is... |  Download Scientific Diagram
Fragmentation of green gummy bear. Direction of laser irradiation is... | Download Scientific Diagram

Laser Fragmentation of Colloidal Gold Nanoparticles with High-Intensity  Nanosecond Pulses is Driven by a Single-Step Fragmentation Mechanism with a  Defined Educt Particle-Size Threshold,The Journal of Physical Chemistry C -  X-MOL
Laser Fragmentation of Colloidal Gold Nanoparticles with High-Intensity Nanosecond Pulses is Driven by a Single-Step Fragmentation Mechanism with a Defined Educt Particle-Size Threshold,The Journal of Physical Chemistry C - X-MOL

Drop fragmentation by laser-pulse impact | Journal of Fluid Mechanics |  Cambridge Core
Drop fragmentation by laser-pulse impact | Journal of Fluid Mechanics | Cambridge Core

Laser Fragmentation‐Induced Defect‐Rich Cobalt Oxide Nanoparticles for  Electrochemical Oxygen Evolution Reaction - Yu - 2020 - ChemSusChem - Wiley  Online Library
Laser Fragmentation‐Induced Defect‐Rich Cobalt Oxide Nanoparticles for Electrochemical Oxygen Evolution Reaction - Yu - 2020 - ChemSusChem - Wiley Online Library

Quantification of mass-specific laser energy input converted into particle  properties during picosecond pulsed laser fragmentation of zinc oxide and  boron carbide in liquids - ScienceDirect
Quantification of mass-specific laser energy input converted into particle properties during picosecond pulsed laser fragmentation of zinc oxide and boron carbide in liquids - ScienceDirect

WCE 2019: Dusting, Fragmenting, Popcorn, and Popdusting. What's New in the  Technique of Breaking the Stone?
WCE 2019: Dusting, Fragmenting, Popcorn, and Popdusting. What's New in the Technique of Breaking the Stone?

Experimental setup of laser fragmentation. | Download Scientific Diagram
Experimental setup of laser fragmentation. | Download Scientific Diagram

Dynamics of the laser fragmentation/laser-induced fluorescence process in  nitrobenzene vapors
Dynamics of the laser fragmentation/laser-induced fluorescence process in nitrobenzene vapors

Schematic of the pulsed laser fragmentation in liquid (PLFL) process,... |  Download Scientific Diagram
Schematic of the pulsed laser fragmentation in liquid (PLFL) process,... | Download Scientific Diagram

Laser lithotripsy principles - CAU
Laser lithotripsy principles - CAU

Applied Sciences | Free Full-Text | Effect of Pd Ions on the Generation of  Ag and Au Heterogeneous Nanoparticles Using Laser Ablation in Liquid | HTML
Applied Sciences | Free Full-Text | Effect of Pd Ions on the Generation of Ag and Au Heterogeneous Nanoparticles Using Laser Ablation in Liquid | HTML

Laser Fragmentation and Melting of Particles | Semantic Scholar
Laser Fragmentation and Melting of Particles | Semantic Scholar

Reshaping, Fragmentation, and Assembly of Gold Nanoparticles Assisted by  Pulse Lasers | Semantic Scholar
Reshaping, Fragmentation, and Assembly of Gold Nanoparticles Assisted by Pulse Lasers | Semantic Scholar

Schematic view of the experimental set-up of laser fragmentation in... |  Download Scientific Diagram
Schematic view of the experimental set-up of laser fragmentation in... | Download Scientific Diagram

Laser-induced fragmentation of carbonyl iron as a clean method to enhance  magnetorheological effect - ScienceDirect
Laser-induced fragmentation of carbonyl iron as a clean method to enhance magnetorheological effect - ScienceDirect

Nanomaterials | Free Full-Text | Laser Fragmentation Synthesis of Colloidal  Bismuth Ferrite Particles
Nanomaterials | Free Full-Text | Laser Fragmentation Synthesis of Colloidal Bismuth Ferrite Particles

Pulsed laser reshaping and fragmentation of upconversion nanoparticles —  from hexagonal prisms to 1D nanorods through “Medusa”-like structures |  SpringerLink
Pulsed laser reshaping and fragmentation of upconversion nanoparticles — from hexagonal prisms to 1D nanorods through “Medusa”-like structures | SpringerLink