Tunable Nanostructuring for van der Waals Materials

Fuente: arXiv
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Hauptverfasser: Tselikov, Gleb, Minnekhanov, Anton, Ermolaev, Georgy, Tikhonowski, Gleb, Kazantsev, Ivan, Dyubo, Dmitry, Panova, Daria, Tselikov, Daniil, Popov, Anton, Mazitov, Arslan, Smirnov, Sergei, Lipilin, Fedor, Ahsan, Umer, Orekhov, Nikita, Kruglov, Ivan, Syuy, Alexander, Kabashin, Andrei, Chichkov, Boris, Sofer, Zdenek, Arsenin, Aleksey, Novoselov, Kostya, Volkov, Valentyn
Format: Preprint
Veröffentlicht: 2024
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author Tselikov, Gleb
Minnekhanov, Anton
Ermolaev, Georgy
Tikhonowski, Gleb
Kazantsev, Ivan
Dyubo, Dmitry
Panova, Daria
Tselikov, Daniil
Popov, Anton
Mazitov, Arslan
Smirnov, Sergei
Lipilin, Fedor
Ahsan, Umer
Orekhov, Nikita
Kruglov, Ivan
Syuy, Alexander
Kabashin, Andrei
Chichkov, Boris
Sofer, Zdenek
Arsenin, Aleksey
Novoselov, Kostya
Volkov, Valentyn
author_facet Tselikov, Gleb
Minnekhanov, Anton
Ermolaev, Georgy
Tikhonowski, Gleb
Kazantsev, Ivan
Dyubo, Dmitry
Panova, Daria
Tselikov, Daniil
Popov, Anton
Mazitov, Arslan
Smirnov, Sergei
Lipilin, Fedor
Ahsan, Umer
Orekhov, Nikita
Kruglov, Ivan
Syuy, Alexander
Kabashin, Andrei
Chichkov, Boris
Sofer, Zdenek
Arsenin, Aleksey
Novoselov, Kostya
Volkov, Valentyn
contents Van der Waals (vdW) materials are becoming increasingly popular in scientific and industrial applications because of their unique mixture of record electronic, optical, and mechanical properties. However, nanostructuring of vdW materials is still in its infancy and strongly depends on the specific vdW crystal. As a result, the universal self-assembled technology of vdW materials nanostructuring opens vast technological prospects. This work demonstrates an express and universal synthesis method of vdW nanoparticles with well-defined geometry using femtosecond laser ablation and fragmentation. The disarming simplicity of the technique allows us to create nanoparticles from over 50 vdW precursor materials covering transition metal chalcogenides, MXenes, and other vdW materials. Obtained nanoparticles manifest perfectly defined crystalline structures and diverse shapes, from nanospheres to nanocubes and nanotetrahedrons. Thus, our work provides a new paradigm for vdW nanostructuring with a vast potential of tunability for size, shape, and materials specific to the particular application.
format Preprint
id arxiv_https___arxiv_org_abs_2411_14060
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Tunable Nanostructuring for van der Waals Materials
Tselikov, Gleb
Minnekhanov, Anton
Ermolaev, Georgy
Tikhonowski, Gleb
Kazantsev, Ivan
Dyubo, Dmitry
Panova, Daria
Tselikov, Daniil
Popov, Anton
Mazitov, Arslan
Smirnov, Sergei
Lipilin, Fedor
Ahsan, Umer
Orekhov, Nikita
Kruglov, Ivan
Syuy, Alexander
Kabashin, Andrei
Chichkov, Boris
Sofer, Zdenek
Arsenin, Aleksey
Novoselov, Kostya
Volkov, Valentyn
Applied Physics
Materials Science
Optics
Van der Waals (vdW) materials are becoming increasingly popular in scientific and industrial applications because of their unique mixture of record electronic, optical, and mechanical properties. However, nanostructuring of vdW materials is still in its infancy and strongly depends on the specific vdW crystal. As a result, the universal self-assembled technology of vdW materials nanostructuring opens vast technological prospects. This work demonstrates an express and universal synthesis method of vdW nanoparticles with well-defined geometry using femtosecond laser ablation and fragmentation. The disarming simplicity of the technique allows us to create nanoparticles from over 50 vdW precursor materials covering transition metal chalcogenides, MXenes, and other vdW materials. Obtained nanoparticles manifest perfectly defined crystalline structures and diverse shapes, from nanospheres to nanocubes and nanotetrahedrons. Thus, our work provides a new paradigm for vdW nanostructuring with a vast potential of tunability for size, shape, and materials specific to the particular application.
title Tunable Nanostructuring for van der Waals Materials
topic Applied Physics
Materials Science
Optics
url https://arxiv.org/abs/2411.14060