The latest edition of Modern Surface is out: https://linkedin.com/pulse/nanocomposite-lubricant-additives-critical-metals-world-jzdbf
Look out for the next issue in 2 weeks time!
#newsletter #nanocomposites #lubricants #metals #internet #data
The latest edition of Modern Surface is out: https://linkedin.com/pulse/nanocomposite-lubricant-additives-critical-metals-world-jzdbf
Look out for the next issue in 2 weeks time!
#newsletter #nanocomposites #lubricants #metals #internet #data
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
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 💎🔓
🆕 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
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 💎🔓
"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"