Year Year arrow
arrow-active-down-0
Publisher Publisher arrow
arrow-active-down-1
Journal
1
Journal arrow
arrow-active-down-2
Institution Institution arrow
arrow-active-down-3
Institution Country Institution Country arrow
arrow-active-down-4
Publication Type Publication Type arrow
arrow-active-down-5
Field Of Study Field Of Study arrow
arrow-active-down-6
Topics Topics arrow
arrow-active-down-7
Open Access Open Access arrow
arrow-active-down-8
Language Language arrow
arrow-active-down-9
Filter Icon Filter 1
Year Year arrow
arrow-active-down-0
Publisher Publisher arrow
arrow-active-down-1
Journal
1
Journal arrow
arrow-active-down-2
Institution Institution arrow
arrow-active-down-3
Institution Country Institution Country arrow
arrow-active-down-4
Publication Type Publication Type arrow
arrow-active-down-5
Field Of Study Field Of Study arrow
arrow-active-down-6
Topics Topics arrow
arrow-active-down-7
Open Access Open Access arrow
arrow-active-down-8
Language Language arrow
arrow-active-down-9
Filter Icon Filter 1
Export
Sort by: Relevance
  • Research Article
  • 10.1016/j.mtnano.2026.100763
2-Dimensional black phosphorus nanostructures for biomedical applications
  • Mar 1, 2026
  • Materials Today Nano
  • Govinakere M Dhanush + 4 more

  • Research Article
  • 10.1016/j.mtnano.2025.100741
Three-dimensional covalent organic frameworks based on silsesquioxane for photocatalytic H2O2 production
  • Mar 1, 2026
  • Materials Today Nano
  • Saddam Hussain + 1 more

  • Research Article
  • 10.1016/j.mtnano.2026.100785
Recent development in mechanical performance of macroscopic CNT assemblies from processing, strengthening strategies to applications
  • Mar 1, 2026
  • Materials Today Nano
  • Yuhao Liao + 5 more

  • Research Article
  • Cite Count Icon 1
  • 10.1016/j.mtnano.2025.100732
Ultra-low-temperature sintering of TiO2 via grain boundary diffusion enabled by nanosecond laser irradiation
  • Mar 1, 2026
  • Materials Today Nano
  • Maryam Soleimani + 5 more

Sintering of metal oxide ceramics typically requires high temperatures to achieve densification; however, excessive heat often leads to grain coarsening and phase instability. In this study, nanosecond (ns) laser irradiation is employed for the first time as a pre-treatment step of TiO 2 nanoparticle to lower the sintering temperature by tailoring the microstructure at the nanoscale. During ns laser exposure, the localized high-energy input lowers the activation energy for dislocation nucleation, thereby increasing dislocation density. Subsequently, with optimized exposure duration, heat accumulation induces localized annealing, which facilitates dislocation annihilation and initiates in situ recrystallization during irradiation. This process leads to the formation of new nanoscale grains within individual nanoparticles prior to sintering. During subsequent furnace sintering at low temperature (750 °C), these laser-induced nanograins remain stable and serve as diffusion-active pathways, promoting a transition from surface diffusion to grain boundary diffusion, as confirmed by diffusion coefficient analysis. This mechanism enhances densification, reduces porosity, and improves relative density. At elevated temperatures (∼1050 °C), extreme annealing destabilizes the laser-induced nanoscale grains, effectively suppressing grain boundary-mediated diffusion. Overall, the findings demonstrate that grain boundary diffusion can drive densification at low temperatures, bypassing the conventional grain growth typically associated with ceramic sintering.

  • Research Article
  • 10.1016/j.mtnano.2025.100740
Hollow core-shell nanorods S-scheme heterojunctions with gradient sulfur vacancies toward optimized photocatalytic performance
  • Mar 1, 2026
  • Materials Today Nano
  • Shijie Wu + 6 more

  • Research Article
  • 10.1016/j.mtnano.2025.100730
Revealing the formation and evolution of the dynamic strong metal-support interaction in the water vapor environment
  • Mar 1, 2026
  • Materials Today Nano
  • Linjiang Yu + 13 more

  • Research Article
  • 10.1016/j.mtnano.2025.100746
Bio-organic collagen–graphene nanofiber synaptic device emulating neuroplasticity and spike-timing-dependent plasticity
  • Mar 1, 2026
  • Materials Today Nano
  • Shivtej M Mane + 11 more

  • Research Article
  • 10.1016/j.mtnano.2025.100743
Multifunctional nanotherapeutic platform: Metformin potentiates Ce6/GOX-based targeted synergistic therapy for colorectal cancer
  • Mar 1, 2026
  • Materials Today Nano
  • Xinyu Mao + 6 more

  • Research Article
  • 10.1016/j.mtnano.2026.100773
Electrochemical detection of hydrogen peroxide by ZnO-based materials and multiphysical parameter regulation of Ni-substituted ZnO
  • Mar 1, 2026
  • Materials Today Nano
  • Xinyu Yin + 8 more

  • Research Article
  • 10.1016/j.mtnano.2025.100728
Enhancing the accuracy of atomic force microscopy measurements of Young’s modulus via force-curve-informed tip geometry fitting
  • Mar 1, 2026
  • Materials Today Nano
  • Logan J Kirsch + 4 more