Review of the research status and development of laser cladding high-entropy alloys
Laser cladding is a sophisticated surface modification technique that utilizes a high-energy laser beam to simultaneously melt cladding materials and the substr
What makes high-entropy alloys so promising for next-gen coatings?
From alloy design strategies to microstructure evolution & real-world performance, this review covers the latest insights shaping this rapidly advancing area of surface engineering.
doi.org/10.1116/6.00...
12.03.2026 18:22
π 0
π 0
π¬ 0
π 0
Effect of molecular layer deposition parameters on the electron beam resist properties of hafnicone hybrid films
To meet increasing computing demands, device manufacturing is transitioning to shorter wavelengths of light for photolithographic patterning of nanoscale device
More power, less energy, tighter margins. Can current fabrication strategies keep pace with our technology appetite?
From Stanford University, this work highlights how small adjustments in these processes can have outsized effects on performance at the nanoscale.
doi.org/10.1116/6.00...
05.03.2026 15:09
π 1
π 1
π¬ 0
π 0
Carbon-supported, size-tunable Ni nanoparticles by atomic layer deposition
Uniform nickel nanoparticles (Ni NPs) on carbon black were synthesized by fluidized-bed reactor atomic layer deposition (FBR-ALD). ALD behavior was first establ
The scalable synthesis of size-tunable Ni nanoparticles on carbon black w/ fluidized-bed #ALDep method advances non-noble metal Ni/C catalysts toward device-relevant H electrocatalysis & bridges ALD model systems w/ realistic catalyst architectures.
doi.org/10.1116/6.00...
04.03.2026 16:21
π 1
π 1
π¬ 0
π 0
JVST is proud to be a part of this impressive portfolio! π
13.02.2026 17:09
π 0
π 0
π¬ 0
π 0
We're pleased to share 2025 metrics from our #MaterialsScience portfolio! π
We can't wait to see what the future continues to bring to our community of authors, reviewers, and readers!
π https://aippub.org/4qD0c7v
13.02.2026 14:01
π 1
π 1
π¬ 0
π 1
Boosting boron nitrideβs high-temperature performance
Coating boron nitride nanotube fabrics with aluminum oxide improved its thermal conductivity and oxidation resistance.
Boron nitride is stable up to about 900 degrees Celsius and exhibits excellent thermal conductivity, making it a useful material for dissipating heat in electronics, batteries, and other high-temperature applications. #Scilight
Learn more π
https://aippub.org/3OAc6BK
12.02.2026 14:00
π 1
π 1
π¬ 0
π 0
We invite researchers to submit abstracts for the International Workshop on Gallium Oxide and Related Materials (#IWGO2026) August 2-7, 2026, in College Park, Maryland
β³Submit by March 18,
βΆοΈhttps://iwgo2026.avs.org/
βΆοΈhttps://conta.cc/49LmxcR
#GalliumOxide
11.02.2026 19:14
π 0
π 1
π¬ 0
π 0
Investigation of x-ray energy characteristics in x-ray fluorescence applications using dual pyroelectric crystals
The pyroelectric effect enables the generation of a strong electric field, which can lead to the emission and acceleration of electrons, ultimately resulting in
Authors from @uni-magdeburg.de use the pyroelectric effect to create a compact, energy-efficient X-ray source & show a performance boost by moving from single to double-crystal config. This opens the door to portable, low-power systems for materials analysis.
doi.org/10.1116/6.00...
11.02.2026 16:41
π 0
π 0
π¬ 0
π 0
Impact of residual triphenylphosphine oxide on the crystallization of vapor-deposited metal halide perovskite films
Thermal evaporation is an industrially compatible technique for fabricating metal halide perovskite thin films, without the requirement for hazardous solvents.
Residues left behind from vapor deposition experiments can significantly influence film growth.
Researchers from @ox.ac.uk show how residual TPPO alters perovskite crystallization behavior, marking contamination control as critical for vacuum-based processing.
doi.org/10.1116/6.00...
09.02.2026 20:32
π 1
π 0
π¬ 0
π 0
All water based nanoscale electron beam lithography using polyacrylic acid hydrogel as a resist
This work investigates improving pattern resolution and contrast in polyacrylic acid (PAA) hydrogel films as a resist to below 100βnm lateral dimensions using e
Selective, solvent-free nanoscale patterning is crucial as devices integrate more sensitive & unconventional materials.
From @gatechengineers.bsky.social, this work presents an all-water-based electron beam lithography approach w/ polyacrylic acid hydrogel as a resist.
doi.org/10.1116/6.00...
29.01.2026 17:32
π 2
π 1
π¬ 0
π 0
Directional atomic layer etching of MgO-doped lithium niobate using Br-based plasma
Lithium niobate ( LiNbO 3, LN) is a nonlinear optical material of high interest for integrated photonics with applications ranging from optical communications t
#ALEtch is a promising technique for the nanofabrication of thin-film lithium niobate, used in nanophotonics.
Authors from @caltech.edu & @unevadareno.bsky.social report an atomically precise etch process which could enable unprecedented device performance.
doi.org/10.1116/6.00...
27.01.2026 17:45
π 0
π 0
π¬ 0
π 0
Polymer assisted area selective ALD of multilayered materials using alkylamine precursors
Area selective atomic layer deposition (AS-ALD) has gained considerable attention in nanomanufacturing due to its potential for precise material placement. Whil
Multilayer oxide structures with:
High precision? β
Complex lithography? β
Multiple masking steps? β
Authors from Ghent University demonstrate a polymer-assisted AS-ALD method that allows stacked multilayer oxides to be formed with a single polymer template.
doi.org/10.1116/6.00...
26.01.2026 16:25
π 1
π 1
π¬ 0
π 0
Diffusion-reaction modeling of atomic layer etching
We present a diffusion-reaction model of plasma-assisted atomic layer etching (ALE) of silicon (Si) with alternating exposure to chlorine gas ( Cl 2) and argon
From @princeton.edu & TEL Technology Center, Americas, authors develop a diffusionβreaction model of spatial & temporal evolution of reactive species during plasma-assisted #ALEtch. It links diffusion, reaction kinetics, & ion-driven effects in a physically meaningful way.
doi.org/10.1116/6.00...
22.01.2026 16:01
π 1
π 0
π¬ 0
π 0
GeSn alloys with βΌ21% Sn grown by effusion cell molecular beam epitaxy
We report the epitaxial growth of high quality GeSn alloys with Sn compositions up to 21.25βΒ±β1% by effusion-cell molecular beam epitaxy (MBE). Achieving such a
From the @uarkansas.bsky.social, authors employ a unique #MBE strategy to grow GeSn at low substrates temps & low fluxes, resulting in crystalline films with high Sn content. This paves a promising path for silicon-based photonic and quantum device applications with GeSn!
doi.org/10.1116/6.00...
16.01.2026 17:54
π 1
π 0
π¬ 0
π 0
Recently highlighted, this article is now featured on our latest cover of #JVSTA!
Next time you publish with us, submit an eye-catching image for the cover. We would love to feature your research, too!
Read this featured article here: doi.org/10.1116/6.00...
09.01.2026 15:41
π 1
π 1
π¬ 0
π 0
Influence of metal-induced doping on different 2D MoS2 epilayers for field effect transistors
Molybdenum disulfide (MoS2), a prominent member of the transition metal dichalcogenide family, stands out for its unique electronic and optical properties. To d
Authors from @pennstateuniv.bsky.social use Raman spectroscopy to investigate the fundamental effects of metal-induced doping on different MoSβ epilayer thicknesses, helping to tailor MoSβ devices to meet the demands of advanced electronic applications.
doi.org/10.1116/6.00...
07.01.2026 16:26
π 1
π 2
π¬ 0
π 0
Happy Holidays from our team! Wishing you the best during this holiday season and into the new year. We look forward to sharing more exciting research with you in 2026.β¨
23.12.2025 14:34
π 0
π 0
π¬ 0
π 0
Featured on the latest #JVSTA cover, Joshua Wagner & Steven J. Sibener from the University of Chicago investigate how atomic oxygen affects the behavior of Cββ molecules on 2D materials.
Read the featured article here! doi.org/10.1116/6.00...
22.12.2025 17:36
π 1
π 1
π¬ 0
π 0