You are cordially invited to submit your latest research to the thematic issue “Energetic ions and photons for engineering #nanomaterials” edited by Devesh Kumar Avasthi, UPES Dehradun and Soma Venugopal Rao, Hyderabad University:

➡️ https://www.beilstein-journals.org/bjnano/series/114?M=y

Submission deadline 📅 Nov 30, 2024

#nanocomposites #2Dmaterials #nanopatterning 💎🔓 #BJNANO

Energetic ions and photons for engineering nanomaterials

Beilstein Journal of Nanotechnology

You are cordially invited to submit your latest research to the thematic issue “Laser–material interactions in liquids applied to #nanoparticles and #nanocomposites” edited by Carlos Doñate Buendía, Universitat Jaume I, Bilal Gökce, University of Wuppertal and Leonid Zhigilei, University of Virginia.

🔗 https://www.beilstein-journals.org/bjnano/series/110?M=y

#nanomaterials #liquids #LaserMaterialsInteraction
#BJNANO #DiamondOpenAccess 💎🔓

Laser–material interactions in liquids applied to nanoparticles and nanocomposites

Beilstein Journal of Nanotechnology

🆕 New thematic issue “Energetic ions and photons for engineering #nanomaterials” edited by Devesh Kumar Avasthi, UPES Dehradun and Soma Venugopal Rao, Hyderabad University:

➡️ https://www.beilstein-journals.org/bjnano/series/114?M=y
Submission deadline 📅 Nov 30, 2024

#nanocomposites #2Dmaterials #nanopatterning 💎🔓 #BJNANO

Energetic ions and photons for engineering nanomaterials

Beilstein Journal of Nanotechnology

New thematic issue “Laser–material interactions in liquids applied to #nanoparticles and #nanocomposites” edited by Carlos Doñate Buendía, Universitat Jaume I, Bilal Gökce, University of Wuppertal and Leonid Zhigilei, University of Virginia.

You are cordially invited to submit your latest research 🔗 https://www.beilstein-journals.org/bjnano/series/110?M=y

#nanomaterials #liquids #LaserMaterialsInteraction
#BJNANO #DiamondOpenAccess 💎🔓

Laser–material interactions in liquids applied to nanoparticles and nanocomposites

Beilstein Journal of Nanotechnology

"deep-penetration #acoustic volumetric #printing (DAVP) achieves the key features of low acoustic streaming, rapid sonothermal #polymerization, and large printing depth, enabling the printing of #volumetric hydrogels and #nanocomposites with various shapes regardless of their #optical properties. DAVP also allows printing at centimeter depths through #biological tissues, paving the way toward minimally invasive #medicine"

https://www.science.org/doi/10.1126/science.adi1563