Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Green synthesis of carbon quantum dots from Phragmites communis and its protective effect on Artemia salina under copper stress

View through CrossRef
Abstract Carbon quantum dots (CQD) and Nitrogen-doped CQDs (N-CQDs) were synthesized through a one-step hydrothermal process, utilizing reed leaves and urea as carbon and nitrogen sources, respectively. The maximum excitation wavelength of CQDs and N2-CQDs was 325 nm, and the corresponding emission wavelength was 407 nm and 406 nm, respectively. Synthetic CQDs have excellent fluorescence properties, while N-doping enhances the fluorescence intensity and stability of CQDs. Next, the adsorption effect of N2-CQDs on various metal ions was also studied using the fluorescence quenching method. The results showed that N2-CQDs have a significant capacity for adsorption of Cu2+ ions. The following quantitative analysis indicated that the Cu2+ concentration showed an excellent linear relationship between 0 ~ 500 µmol/L and the limit of detection (LOD) was 0.074 µmol/L. The N2-CQDs at 0-200 µg/mL have no deleterious effects on the viability of HeLa cells and the survival rate of Artemia nauplii. Finally, the agarose gel containing N2-CQDs was constructed, and its absorption behavior of Cu2+ in artificial seawater was evaluated. The results showed that this N2-CQDs-based gel was able to efficiently remove Cu2+ from seawater, leading to a higher survival rate of the nauplii under 10 and 50 mg/L Cu2+ stress. Our results collectively provide a cost-effective method for removing heavy metal ions from seawater and mitigating their harmful effects on sea animals.
Title: Green synthesis of carbon quantum dots from Phragmites communis and its protective effect on Artemia salina under copper stress
Description:
Abstract Carbon quantum dots (CQD) and Nitrogen-doped CQDs (N-CQDs) were synthesized through a one-step hydrothermal process, utilizing reed leaves and urea as carbon and nitrogen sources, respectively.
The maximum excitation wavelength of CQDs and N2-CQDs was 325 nm, and the corresponding emission wavelength was 407 nm and 406 nm, respectively.
Synthetic CQDs have excellent fluorescence properties, while N-doping enhances the fluorescence intensity and stability of CQDs.
Next, the adsorption effect of N2-CQDs on various metal ions was also studied using the fluorescence quenching method.
The results showed that N2-CQDs have a significant capacity for adsorption of Cu2+ ions.
The following quantitative analysis indicated that the Cu2+ concentration showed an excellent linear relationship between 0 ~ 500 µmol/L and the limit of detection (LOD) was 0.
074 µmol/L.
The N2-CQDs at 0-200 µg/mL have no deleterious effects on the viability of HeLa cells and the survival rate of Artemia nauplii.
Finally, the agarose gel containing N2-CQDs was constructed, and its absorption behavior of Cu2+ in artificial seawater was evaluated.
The results showed that this N2-CQDs-based gel was able to efficiently remove Cu2+ from seawater, leading to a higher survival rate of the nauplii under 10 and 50 mg/L Cu2+ stress.
Our results collectively provide a cost-effective method for removing heavy metal ions from seawater and mitigating their harmful effects on sea animals.

Related Results

Advanced frameworks for fraud detection leveraging quantum machine learning and data science in fintech ecosystems
Advanced frameworks for fraud detection leveraging quantum machine learning and data science in fintech ecosystems
The rapid expansion of the fintech sector has brought with it an increasing demand for robust and sophisticated fraud detection systems capable of managing large volumes of financi...
Advancements in Quantum Computing and Information Science
Advancements in Quantum Computing and Information Science
Abstract: The chapter "Advancements in Quantum Computing and Information Science" explores the fundamental principles, historical development, and modern applications of quantum co...
Integrating quantum neural networks with machine learning algorithms for optimizing healthcare diagnostics and treatment outcomes
Integrating quantum neural networks with machine learning algorithms for optimizing healthcare diagnostics and treatment outcomes
The rapid advancements in artificial intelligence (AI) and quantum computing have catalyzed an unprecedented shift in the methodologies utilized for healthcare diagnostics and trea...
Quantum information outside quantum information
Quantum information outside quantum information
Quantum theory, as counter-intuitive as a theory can get, has turned out to make predictions of the physical world that match observations so precisely that it has been described a...
Revolutionizing multimodal healthcare diagnosis, treatment pathways, and prognostic analytics through quantum neural networks
Revolutionizing multimodal healthcare diagnosis, treatment pathways, and prognostic analytics through quantum neural networks
The advent of quantum computing has introduced significant potential to revolutionize healthcare through quantum neural networks (QNNs), offering unprecedented capabilities in proc...
Quantum metamaterials: Applications in quantum information science
Quantum metamaterials: Applications in quantum information science
Metamaterials are a class of artificially engineered materials with periodic structures possessing exceptional properties not found in conventional materials. This definition can b...
Triagem toxicológica de extratos de Cinnamomum stenophyllum frente à Artemia salina Leach
Triagem toxicológica de extratos de Cinnamomum stenophyllum frente à Artemia salina Leach
Objetivo: observar e comparar a toxicidade aguda de extratos das folhas (Csf) e do caule (Csc) de Cinnamomum stenophyllum em Artemia salina. Métodos: Os extratos Csf e Csc, nas con...

Back to Top