Monolayer, bilayer, and trilayer graphene quantum dots (GQDs) with different binding abilities to elemental heavy metals (HMs: Cd, Hg, and Pb) were designed, and their electronic and optical properties were investigated theoretically to understand deeply the optical response under heavy metal exposure. To gain insight into the nature of interband absorption, we performed density functional theory (DFT) and time-dependent density functional theory (TD-DFT) calculations for thickness-varying GQDs. We found that the interband absorption in GQDs can be efficiently tuned by controlling the thickness of GQDs to attain the desirable coloration of the interacting complex. We also show that the strength of the interaction between GQDs and Cd, Hg, an...
Development of next-generation sensors based on graphene materials, especially epitaxial graphene (E...
The fluorescence intensity of N, S co-doped graphene quantum dots (N, S-GQDs) can be quenched by Fe3...
In this work, we investigate by ab initio calculations and optical experiments the sensitivity of g...
Monolayer, bilayer, and trilayer graphene quantum dots (GQDs) with different binding abilities to el...
High-performance optical detection of toxic heavy metals by using graphene quantum dots (GQDs) requi...
The promise of graphene and its derivatives as next generation sensors for real-time detection of to...
Exploring graphene quantum dots (GQDs) is an attractive way to design novel optical and electrochemi...
Graphene quantum dots (GQDs) are an innovative class of zero-dimensional graphitic nanomaterials wit...
In this work, we investigate by ab initio calculations and optical experiments the sensitivity of gr...
A novel type of graphene-like quantum dots, synthesized by oxidation and cage-opening of C60 buckmin...
Graphene quantum dots (GQDs) with transition metal adatoms were analysed using a first principles ap...
A novel type of graphene-like quantum dots, synthesized by oxidation and cage-opening of C60buckmins...
Heavy metals including chromium, lead and mercury have huge negative impacts on human health and the...
Development of next-generation sensors based on graphene materials, especially epitaxial graphene (E...
The fluorescence intensity of N, S co-doped graphene quantum dots (N, S-GQDs) can be quenched by Fe3...
In this work, we investigate by ab initio calculations and optical experiments the sensitivity of g...
Monolayer, bilayer, and trilayer graphene quantum dots (GQDs) with different binding abilities to el...
High-performance optical detection of toxic heavy metals by using graphene quantum dots (GQDs) requi...
The promise of graphene and its derivatives as next generation sensors for real-time detection of to...
Exploring graphene quantum dots (GQDs) is an attractive way to design novel optical and electrochemi...
Graphene quantum dots (GQDs) are an innovative class of zero-dimensional graphitic nanomaterials wit...
In this work, we investigate by ab initio calculations and optical experiments the sensitivity of gr...
A novel type of graphene-like quantum dots, synthesized by oxidation and cage-opening of C60 buckmin...
Graphene quantum dots (GQDs) with transition metal adatoms were analysed using a first principles ap...
A novel type of graphene-like quantum dots, synthesized by oxidation and cage-opening of C60buckmins...
Heavy metals including chromium, lead and mercury have huge negative impacts on human health and the...
Development of next-generation sensors based on graphene materials, especially epitaxial graphene (E...
The fluorescence intensity of N, S co-doped graphene quantum dots (N, S-GQDs) can be quenched by Fe3...
In this work, we investigate by ab initio calculations and optical experiments the sensitivity of g...