The increased production of semiconductor nanomaterials such as heavy metal quantum dots and perovskites for applications such as in energy harvesting, optoelectronic devices, bioanalysis, phototherapy and consumer health products raises concerns regarding nanotoxicity. After disposal, these materials degrade upon interaction with the environment, such as rain and surface waters, soil and oxygen, and solar irradiation, leading to the release of heavy metal ions in the environment with exposure to aquatic and terrestrial animals and plants, and humans. Researchers are in the early stages of understanding the potential toxicity of such nanomaterials by quantifying the amount of heavy metal ions released due to environmental or biological tran...
As the production and use of nanomaterials increases, it is important to understand their environmen...
Despite the great achievements in nanosciences and nanotechnologies, there are increasing concerns a...
Nanomaterial toxicity is a major concern and could potentially hamper the progress of biomedical nan...
The increased production of semiconductor nanomaterials such as heavy metal quantum dots and perovsk...
Colloidal semiconductor nanoparticles (quantum dots) have attracted a lot of interest in technologic...
Quantum dots (QDs) are semiconductor nanocrystals exhibiting unique optical properties that can be e...
Fengjun Liu1,* Wen Ye1,* Jun Wang2 Fengxiang Song1 Yingsheng Cheng3 Bingbo Zhang21Department of Radi...
Quantum dots (QDs) are engineered semiconductor nanocrystals with unique fluorescent, quantum confin...
Quantum dots (QDs) are being investigated as novel in vivo imaging agents. The leaching of toxic met...
Semiconductors and semiconductor nanoparticles have become a popular component of many new manufact...
Engineered nanomaterials (ENMs) are increasingly being used in commercial products, particularly in ...
Recent studies have suggested that certain nanomaterials can interfere with optically based cytotoxi...
The potential ecotoxicological consequences about semiconductor crystal nanoparticles (NPs) are a gr...
Quantum dots (QD) have unique electronic and optical properties promoting biotechnological advances....
Background: Most semiconductor nanoparticles used in biomedical applications are made of heavy metal...
As the production and use of nanomaterials increases, it is important to understand their environmen...
Despite the great achievements in nanosciences and nanotechnologies, there are increasing concerns a...
Nanomaterial toxicity is a major concern and could potentially hamper the progress of biomedical nan...
The increased production of semiconductor nanomaterials such as heavy metal quantum dots and perovsk...
Colloidal semiconductor nanoparticles (quantum dots) have attracted a lot of interest in technologic...
Quantum dots (QDs) are semiconductor nanocrystals exhibiting unique optical properties that can be e...
Fengjun Liu1,* Wen Ye1,* Jun Wang2 Fengxiang Song1 Yingsheng Cheng3 Bingbo Zhang21Department of Radi...
Quantum dots (QDs) are engineered semiconductor nanocrystals with unique fluorescent, quantum confin...
Quantum dots (QDs) are being investigated as novel in vivo imaging agents. The leaching of toxic met...
Semiconductors and semiconductor nanoparticles have become a popular component of many new manufact...
Engineered nanomaterials (ENMs) are increasingly being used in commercial products, particularly in ...
Recent studies have suggested that certain nanomaterials can interfere with optically based cytotoxi...
The potential ecotoxicological consequences about semiconductor crystal nanoparticles (NPs) are a gr...
Quantum dots (QD) have unique electronic and optical properties promoting biotechnological advances....
Background: Most semiconductor nanoparticles used in biomedical applications are made of heavy metal...
As the production and use of nanomaterials increases, it is important to understand their environmen...
Despite the great achievements in nanosciences and nanotechnologies, there are increasing concerns a...
Nanomaterial toxicity is a major concern and could potentially hamper the progress of biomedical nan...