Article
Publicly Available
Frontmatter
Published/Copyright:
June 6, 2024
Published Online: 2024-06-06
Published in Print: 2024-06-25
©2024 Walter de Gruyter GmbH, Berlin/Boston
Articles in the same Issue
- Frontmatter
- Review Articles
- Metal-based nanoparticles: basics, types, fabrications and their electronic applications
- Review of novel approach and scalability forecast of ZnSe and Perovskite/Graphene based thin film materials for high performance solar cell applications
- Original Papers
- Hydrothermal synthesis of zinc molybdates (α-ZnMoO4) nanoparticles and its applications of supercapacitor and photocatalytic performances
- The physicochemical and DNA binding studies of ceftazidime pentahydrate and cefotaxime sodium in aqueous medium
- Polar solvation molecular dynamics, quantum reactivity (ELF, HOMO–LUMO, NBO) studies, spectroscopy (FT-IR, UV), and the antibiotic potential of carbazide derivative via in-silico molecular docking
- Facile synthesis of MnO2 nanoparticles for the removal of cationic dye
- The potential capability of treated perlite for removal of penta chloro nitrobenzene
- Detection of C6H6, CO2, and H2S gases on arsenic (As) and cobalt (Co) doped quantum dots (QDs) nanostructured materials
Articles in the same Issue
- Frontmatter
- Review Articles
- Metal-based nanoparticles: basics, types, fabrications and their electronic applications
- Review of novel approach and scalability forecast of ZnSe and Perovskite/Graphene based thin film materials for high performance solar cell applications
- Original Papers
- Hydrothermal synthesis of zinc molybdates (α-ZnMoO4) nanoparticles and its applications of supercapacitor and photocatalytic performances
- The physicochemical and DNA binding studies of ceftazidime pentahydrate and cefotaxime sodium in aqueous medium
- Polar solvation molecular dynamics, quantum reactivity (ELF, HOMO–LUMO, NBO) studies, spectroscopy (FT-IR, UV), and the antibiotic potential of carbazide derivative via in-silico molecular docking
- Facile synthesis of MnO2 nanoparticles for the removal of cationic dye
- The potential capability of treated perlite for removal of penta chloro nitrobenzene
- Detection of C6H6, CO2, and H2S gases on arsenic (As) and cobalt (Co) doped quantum dots (QDs) nanostructured materials