The propensity of multi-walled carbon nanotubes (MWCNTs) for biodegradation is important for their safe use in medical and technological applications. Here, we compared the oxidative degradation of two samples of industrial-grade MWCNTs—we called them MWCNT-d and MWCNT-t—upon their treatment with sodium hypochlorite (NaOCl). The MWCNTs had a similar inner diameter but they differed about 2-fold in the outer diameter. Electron microscopy combined with morphometric analysis revealed the different degradation of the two types of MWCNTs after their incubation with NaOCl—the thicker MWCNT-d were damaged more significantly than the thinner MWCNT-t. The both types of MWCNTs degraded at the inner side, but only MWCNT-d lost a sign...
Carbon nanotubes (CNT) have been reported to elicit toxic responses in vitro and in vivo, ascribed s...
The biodegradation of carbon nanotubes (CNTs) may be one of major determinants of the toxic outcomes...
[[abstract]]BACKGROUND: Inadequate surface oxidization can potentially destroy the structure and che...
International audienceIn this study we compare the biodegradation of both single-walled (SWCNTs) and...
International audienceThe assessment of the biodegradability potential of carbon nanotubes (CNTs) is...
International audienceThe assessment of the biodegradability potential of carbon nanotubes (CNTs) is...
International audienceThe assessment of the biodegradability potential of carbon nanotubes (CNTs) is...
International audienceBackgroundCarbon nanotubes (CNT) can interact with the biological environment,...
International audienceBackgroundCarbon nanotubes (CNT) can interact with the biological environment,...
International audienceBackgroundCarbon nanotubes (CNT) can interact with the biological environment,...
International audienceBackgroundCarbon nanotubes (CNT) can interact with the biological environment,...
International audienceBackgroundCarbon nanotubes (CNT) can interact with the biological environment,...
International audienceBackgroundCarbon nanotubes (CNT) can interact with the biological environment,...
International audienceBackgroundCarbon nanotubes (CNT) can interact with the biological environment,...
International audienceBackgroundCarbon nanotubes (CNT) can interact with the biological environment,...
Carbon nanotubes (CNT) have been reported to elicit toxic responses in vitro and in vivo, ascribed s...
The biodegradation of carbon nanotubes (CNTs) may be one of major determinants of the toxic outcomes...
[[abstract]]BACKGROUND: Inadequate surface oxidization can potentially destroy the structure and che...
International audienceIn this study we compare the biodegradation of both single-walled (SWCNTs) and...
International audienceThe assessment of the biodegradability potential of carbon nanotubes (CNTs) is...
International audienceThe assessment of the biodegradability potential of carbon nanotubes (CNTs) is...
International audienceThe assessment of the biodegradability potential of carbon nanotubes (CNTs) is...
International audienceBackgroundCarbon nanotubes (CNT) can interact with the biological environment,...
International audienceBackgroundCarbon nanotubes (CNT) can interact with the biological environment,...
International audienceBackgroundCarbon nanotubes (CNT) can interact with the biological environment,...
International audienceBackgroundCarbon nanotubes (CNT) can interact with the biological environment,...
International audienceBackgroundCarbon nanotubes (CNT) can interact with the biological environment,...
International audienceBackgroundCarbon nanotubes (CNT) can interact with the biological environment,...
International audienceBackgroundCarbon nanotubes (CNT) can interact with the biological environment,...
International audienceBackgroundCarbon nanotubes (CNT) can interact with the biological environment,...
Carbon nanotubes (CNT) have been reported to elicit toxic responses in vitro and in vivo, ascribed s...
The biodegradation of carbon nanotubes (CNTs) may be one of major determinants of the toxic outcomes...
[[abstract]]BACKGROUND: Inadequate surface oxidization can potentially destroy the structure and che...