Graphite ion chambers and semiconductor diode detectors have been used to make measurements in phantoms but these active devices represent a clear disadvantage when considered for in vivo dosimetry. In such circumstance, dosimeters with atomic number similar to human tissue are needed. Carbon nanotubes have properties that potentially meet the demand, requiring low voltage in active devices and an atomic number similar to adipose tissue. In this study, single-wall carbon nanotubes (SWCNTs) buckypaper has been used to measure the beta particle dose deposited from a strontium-90 source, the medium displaying thermoluminescence at potentially useful sensitivity. As an example, the samples show a clear response for a dose of 2Gy. This finding s...
Hybrid materials based on supramolecularly assembled single-walled carbon nanotubes (SWNTs) are gene...
Functionalization of nanomaterials for precise biomedical function is an emerging trend in nanotechn...
Ionizing radiation affects the living cells at nanoscale; therefore, modern radiation therapy needs ...
Graphite ion chambers and semiconductor diode detectors have been used to make measurements in phant...
This work encompasses studies of two novel materials for radiation dosimetry as well establishment o...
Advances in Nanotechnology enable us to structure new materials at the nanoscale and develop novel s...
Radiation exposure to the eye lens has been a problem for a curer in the radiation therapy. Then, th...
Measurements of the absorbed dose and quality assurance programs play an important role in radiother...
Recent searches on carbon nanotubes lead in within INFN (GINT experiment) demonstrate enunciated cha...
Dosimetry devices based on Carbon Nanotubes are a promising new technology. In particular using devi...
Nanotechnology has undergone significant development in recent years, particularly in the fabricatio...
Functionalization of nanomaterials for precise biomedical function is an emerging trend in nanotechn...
Experimental studies will be described aimed at providing a scientific foundation for the use of sin...
Here we prepare carbon nanotubes modified with ammonium persulfate, very short carbon nanotubes with...
We report γ-ray dosimeters using carbon nanotubes wrapped with metastable poly(olefin sulfone)s (P...
Hybrid materials based on supramolecularly assembled single-walled carbon nanotubes (SWNTs) are gene...
Functionalization of nanomaterials for precise biomedical function is an emerging trend in nanotechn...
Ionizing radiation affects the living cells at nanoscale; therefore, modern radiation therapy needs ...
Graphite ion chambers and semiconductor diode detectors have been used to make measurements in phant...
This work encompasses studies of two novel materials for radiation dosimetry as well establishment o...
Advances in Nanotechnology enable us to structure new materials at the nanoscale and develop novel s...
Radiation exposure to the eye lens has been a problem for a curer in the radiation therapy. Then, th...
Measurements of the absorbed dose and quality assurance programs play an important role in radiother...
Recent searches on carbon nanotubes lead in within INFN (GINT experiment) demonstrate enunciated cha...
Dosimetry devices based on Carbon Nanotubes are a promising new technology. In particular using devi...
Nanotechnology has undergone significant development in recent years, particularly in the fabricatio...
Functionalization of nanomaterials for precise biomedical function is an emerging trend in nanotechn...
Experimental studies will be described aimed at providing a scientific foundation for the use of sin...
Here we prepare carbon nanotubes modified with ammonium persulfate, very short carbon nanotubes with...
We report γ-ray dosimeters using carbon nanotubes wrapped with metastable poly(olefin sulfone)s (P...
Hybrid materials based on supramolecularly assembled single-walled carbon nanotubes (SWNTs) are gene...
Functionalization of nanomaterials for precise biomedical function is an emerging trend in nanotechn...
Ionizing radiation affects the living cells at nanoscale; therefore, modern radiation therapy needs ...