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Ting Zhu,Sujun Yan,Xinhai Zhu et al. Ting Zhu et al.
This enabled controlled fabrication of emitters spanning submicron-scale (200 nm) to micron-scale (8 μm) IDs, with submicron-range parameter optimization.
Aybike Paksoy,Ahmet Güngör,İpek Deniz Yıldırım et al. Aybike Paksoy et al.
The chemical and microstructural characterization results indicate that the synthesized composite powders are of high purity, possess submicron-scale particle sizes (below 400 nm), and exhibit a high surface area of up to 9.41 m2/g.
Eunhwan Jo,Jaesam Sim Eunhwan Jo
While photolithography and e-beam lithography remain the predominant techniques for nanoscale patterning, their high costs and inherent complexity have limited their accessibility for certain applications. Recently, shrink lithography has e...
Aryan Mehboudi,Shrawan Singhal,S V Sreenivasan Aryan Mehboudi
We believe that our design automation package offers a user-friendly workflow, significantly alleviating the hurdles associated with design and optimization of DLD structures, while our fabrication process flow can provide an accessible solution to manufacturing micron- and submicron-scale DLD chips.
Meyer T Alting,Martin F Haase Meyer T Alting
Bijels with submicron-scale domain networks can be synthesized via solvent transfer-induced phase separation (STrIPS). However, the fluid network structure in STrIPS-bijels tends to degrade over time, limiting their practical applications.
Floriane Jamoteau,Mustafa Kansiz,Miriam Unger et al. Floriane Jamoteau et al.
Here, we demonstrate the ability and provide analytical recommendations for the submicron-scale characterization of complex mineral-organic microstructures using optical photothermal infrared (O-PTIR) microscopy.
Fatemah Alharthi,Ishmael Apachigawo,Dhruvil Solanki et al. Fatemah Alharthi et al.
Here, we report a dual photonics technique to detect nano- to submicron-scale alterations in brain tissues/cells and DNA/chromatin due to the early to late progression of Alzheimer's disease in humans.
Dawei Guan,Xiao Wu,Zhibo Jiang et al. Dawei Guan et al.
Nano-CT (computed tomography) technology enables high-resolution imaging and scanning of hydrate dissociation processes in porous media at submicron-scale resolution.
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