Aperito Journal of Nanoscience Technology
International open-access publishing for high-quality research, reviews, case studies, and scholarly communication.
Submit ManuscriptAbout the Journal
Aperito Journal of Nanoscience Technology is an international, peer-reviewed, open-access journal publishing high-quality research, reviews, case studies, short communications, and scholarly perspectives.
The journal welcomes contributions in Nanomaterials, nanomedicine, nanoengineering, characterization, fabrication methods, and applied nanotechnology. It supports authors, editors, and reviewers through transparent editorial handling, ethical peer review, and timely publication workflows.
Scope of the Journal
- Original research and evidence-based reviews
- Clinical, laboratory, engineering, or field studies relevant to the discipline
- Method development, technology applications, and interdisciplinary work
- Case reports, short communications, perspectives, and editorial commentary
- Open-access dissemination for researchers, practitioners, and institutions
Open Access Statement
All accepted articles are published for broad visibility and responsible reuse with attribution. Authors retain appropriate scholarly credit while readers receive immediate access to published work.
Recent Articles
Hospital Infections and Management In Neonatal Intensive Care Units
Recep Tekin • 19 Dec 2014
Effect of Alkyl Chain in Quaternary Ammonium Dispersants on the Suspension of Multi-Walled Carbon Nanotubes
Xudong Zuo1, Wei Zhang2*, Guojun Ma3 and Chengwei Wu4 • 18 Dec 2014
Cetyltrimethylammonium Bromide (CTAB) and Dodecyl Trimethyl Ammonium Bromide (DTAB) were used to non-covalently functionalize Multi-Walled Carbon Nanotubes’ (MWCNTs’) surfaces. Transmission electron microscopy analyses evidenced the debundling effects of these two cationic dispersants on MWCNT aggregates. The intensity of G band relative to D band in Raman profiles of MWCNTs does not change substantially after the suspension, indicating the majority of the sp2 structure of MWCNTs is preserved well. There exists a critical concentration for both CTAB and DTAB in suspending MWCNTs, i.e. 0.1 g/l, which can be ascribed to the formation of dispersant micelles. CTAB is superior to DTAB in suspending MWCNTs at a concentration lower than the critical one, but a reverse trend is observed when the concentration is beyond the critical one; this is interpreted in terms of geometric features of alkyl chains.
Combating Nanotoxicity: A Long Way To Go!
Thiyagarajan Devasena* and Arul Prakash Francis • 12 Dec 2014
“Fuzzy”, Homogeneous Configurations
Margaret Simpson*, Kim Jong Fun and Edna Krabappel • 14 Oct 2014
The Ethernet must work. In this paper, we confirm the improvement of e-commerce. WEKAU, our new methodology for forward-error correction, is the solution to all of these challenges.