Research Article210.1016/j.nanoms.2025.10.008Editorial for a special issue on emerging materials for carbon neutralityDec 01, 2025Nano Materials SciencePengcheng Liu + 2 more +2CiteListenSave
Research Article110.1016/j.nanoms.2025.10.016Temperature-dependent trap engineering in gallate long afterglow phosphor for advanced information encryption and anti-counterfeitingDec 01, 2025Nano Materials ScienceZhixue Li + 7 more +7CiteListenSave
Research Article710.1016/j.nanoms.2024.06.003One-step green synthesis of platinum mesoporous nanoparticles by riboflavin for light activated antitumoral therapyOct 01, 2025Nano Materials ScienceRaquel Rey-Méndez + 9 more +9CiteListenSave
Research Article510.1016/j.nanoms.2025.09.003Advances, analysis, and prospects in Co-based electrocatalysts for 5-hydroxymethylfurfural oxidation reactionOct 01, 2025Nano Materials ScienceGuixiang Ding + 9 more +9CiteListenSave
Research Article310.1016/j.nanoms.2024.06.004Advanced Ca-doped MOF nanocarriers for Co-delivery of Doxorubicin/pCRISPROct 01, 2025Nano Materials ScienceBahareh Farasati Far + 3 more +3Cancer treatment often requires a multimodal approach, such as combining chemotherapy and gene therapy. However, challenges such as low therapeutic efficacy and off-target effects hinder the effectiveness of these treatments. In this study, the use of calcium-doped metal-organic frameworks Cu2(BDC)2(DABCO) as a nanocarrier platform for the co-delivery of doxorubicin (DOX) and plasmid CRISPR (pCRISPR) proposed to enhance anticancer efficiency. We demonstrated that Ca-doped MOF nanocarriers significantly improved the uptake of DOX and pCRISPR by in cancer cells. The co-delivery of DOX and pCRISPR with Ca-doped MOF nanocarriers resulted in a significant rise in cell death and decreased targeted gene expression.Read moreCiteListenSave
Research Article1410.1016/j.nanoms.2024.10.006Advanced chemical modification technology of inorganic oxide nanoparticles in epoxy resin and mechanical properties of epoxy resin nanocomposites: A reviewOct 01, 2025Nano Materials ScienceRunze Jin + 6 more +6CiteListenSave
Research Article210.1016/j.nanoms.2025.09.008A flexible sensor utilizing piezoelectricity of Z-scheme heterojunctions with internal electric fields and flexoelectricity synergies from nanofibers for advanced IoT applicationsSep 01, 2025Nano Materials ScienceQianbing Lin + 5 more +5CiteListenSave
Research Article210.1016/j.nanoms.2025.07.012A universal hyperelastic constitutive model with high stability and reliable prediction for elastomer nanocompositesAug 01, 2025Nano Materials ScienceFanzhu Li + 3 more +3CiteListenSave
Research Article410.1016/j.nanoms.2025.05.011Crystal orientation engineering toward high-performance photodetectors and their multifunctional optoelectronic applicationsAug 01, 2025Nano Materials ScienceHuanrong Liang + 12 more +12CiteListenSave
Research Article310.1016/j.nanoms.2025.07.002Dual-bioinspired hierarchically structured superhydrophobic and conductive nanocomposite films for ultrasensitive and reliable strain sensingAug 01, 2025Nano Materials ScienceYuyue Wu + 13 more +13CiteListenSave