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Journal of Nanoscience, NanoEngineering & Applications Cover

Journal of Nanoscience, NanoEngineering & Applications

E-ISSN: 2231-1777 | P-ISSN: 2321-5194 | Peer-Reviewed Journal (Refereed Journal) | Hybrid Open Access

About the Journal

Journal of Nanoscience, NanoEngineering & Applications [E-ISSN: 2231-1777]is a peer-reviewed, hybrid open-access platform dedicated to advancing the science and applications of nanotechnology across multidisciplinary domains. The journal welcomes high-quality original research articles, review papers, and case studies covering all aspects of nanoscience, nanoengineering, and their practical applications.

Focus & Scope

The journal welcomes contributions across the following topic areas:

  • Nanomaterials Science & Characterization: nanomaterial synthesis and design, nanomaterial characterization, nanostructured materials and nanoparticles, nanowires and nanorods, carbon nanotubes and fullerenes, graphene and 2D materials, quantum dots and 3D nanostructures, nanoclay materials, nanomaterial properties and performance, advanced characterization techniques (SEM, TEM, AFM, STM, Raman, XRD, surface analysis), and multiscale characterization approaches
  • Functional Nanostructures & Hybrid Materials: nanomaterial functionalization and surface modification, self-assembly and directed assembly of nanostructures, nanoarchitectonics and hierarchical assembly, smart and stimuli-responsive nanomaterials, hybrid nanomaterial design and fabrication, responsive polymers and hydrogels, and integration of multiple nanocomponent systems
  • Polymer Nanotechnology & Nanocomposites: polymer-based nanocomposites, polymer-clay nanocomposites, nanofiber and nanogel development, smart polymers and shape-memory materials, biodegradable and bioinspired nanopolymers, polymer blends at the nanoscale, nanocomposite membranes, polymer nanocomposite processing and characterization, and structural and functional polymer nanocomposites
  • Nanoengineering & Nanofabrication: nanoscale engineering and fabrication, bottom-up and top-down assembly approaches, nanolithography and patterning, MEMS (microelectromechanical systems) and NEMS (nanoelectromechanical systems), nanoscale manufacturing and production scaling, nanosensors and nanoactuators, nano-micro systems integration, and device fabrication at nanoscale
  • Nanoelectronics, Photonics & Quantum Systems: nanoelectronics and nanoscale device engineering, nanophotonics and optical nanotechnology, plasmonics and surface plasmon phenomena, spintronics and spin-based devices, optoelectronics at nanoscale, quantum devices and quantum computing applications, nanomagnetism and magnetic nanomaterials, and nanoscale integrated circuits
  • Energy Nanotechnology & Storage: nanomaterials for energy storage and batteries, supercapacitors and electrochemical energy storage, nanostructured solar cells and photovoltaics, perovskite and quantum dot solar cells, fuel cells and hydrogen generation, thermoelectric nanomaterials, renewable energy conversion, energy efficiency improvements, and grid-scale energy applications
  • Nanomedicine & Biomedical Applications: biomedical nanotechnology and nanomedicine design, targeted drug delivery systems and nanocarriers, nanobiosensors and biodiagnostics, nano-imaging and medical imaging applications, cancer diagnostics and nanotherapy, regenerative medicine and tissue engineering at nanoscale, immunotherapy and vaccine development, and clinical translation of nanomedicine
  • Environmental Nanotechnology & Remediation: nanofiltration and water purification systems, air purification and pollution control, nanoscale environmental remediation, water treatment membranes and filters, pollutant detection and sensing, green nanotechnology and sustainable processes, ecosystem impacts and environmental safety, and circular economy applications
  • Nanotoxicology & Safety Assessment: toxicity assessment and nanosafety, nanomaterial-cellular interactions and uptake mechanisms, in vitro and in vivo toxicity studies, organ-specific accumulation and effects, human health risk assessment, environmental and ecological toxicity, regulatory frameworks and safety standards, occupational exposure and mitigation, and safe-by-design nanotechnology
  • Advanced Characterization & Analysis: scanning electron and transmission electron microscopy, atomic force and scanning tunneling microscopy, spectroscopic techniques (Raman, FTIR, UV-Vis, fluorescence), X-ray diffraction and scattering, surface characterization and analysis, thermal analysis and calorimetry, particle sizing and distribution analysis, and multi-technique characterization approaches
  • Computational & AI-Enabled Nanotechnology: computational nanoscience and modeling, molecular dynamics simulations, density functional theory (DFT) and quantum chemistry, finite element and Monte Carlo simulations, machine learning for nanomaterial discovery, artificial intelligence in nanotechnology research, high-throughput computational screening, and data-driven nanotech development
  • Emerging Nanoscience Frontiers: nanorobotics and molecular machines, topological nanomaterials and properties, nanoscale quantum systems, nano-optomechanics, metamaterials and metasurfaces, plasmonic devices and nanoantennas, exotic nanostructures, and novel nanoscale phenomena
  • Interdisciplinary Nano Research: integration of nanotechnology with materials science, physics, chemistry, and biology, cross-disciplinary nanoscale research, nano-enabled advances in electronics and photonics, nanotechnology in biotechnology and healthcare, nano-enabled environmental solutions, and convergent technology approaches

Keywords

nanotechnology, nanomaterials, nanoengineering, nanoscience, nanoelectronics, nanomedicine, energy nanotechnology, environmental nanotechnology, computational nanotechnology, nanofabrication

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