0000000000444902

AUTHOR

Rémi Barillon

showing 5 related works from this author

Elucidation of the Two-Step Damage Formation Process of Latent Tracks in Poly(allyl diglycol carbonate), PADC: Role of Secondary Low-Energy Electrons

2018

The aim of the present study is to evaluate the mechanisms by which secondary electrons of low energy degrade poly(allyl diglycol carbonate) (PADC) when it is used as a Solid State Nuclear Track De...

Materials science010308 nuclear & particles physicsTwo stepSolid-stateElectron01 natural sciencesSecondary electrons030218 nuclear medicine & medical imagingSurfaces Coatings and FilmsElectronic Optical and Magnetic Materials03 medical and health scienceschemistry.chemical_compound0302 clinical medicineGeneral EnergyLow energychemistryNuclear trackChemical engineeringScientific method0103 physical sciencesCarbonatePhysical and Theoretical ChemistryThe Journal of Physical Chemistry C
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Role of intermediate species in the formation of ion tracks in PADC: A review

2019

Abstract This review paper intends at identifying the early processes arising during the formation of a latent ion track in Poly Allyl Diglycol Carbonate (PADC). We briefly summarize the physical and chemical processes specific to the description of the interaction of ionizing radiation with matter. Then we gather published information in relation to PADC response regarding energy absorption and further transient species formation. Emphasis is given to the chemistry of radicals. Due to a lack of available data in relation with clearly identified unpaired electron carriers in PADC, we use data stemming from surrogate molecules. Based on such data we suggest mechanisms for the decomposition o…

Polymers and PlasticsChemistryIon trackRadicalEther02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciencesDecomposition0104 chemical sciencesIonchemistry.chemical_compoundUnpaired electronMechanics of MaterialsEnergy absorptionChemical physicsMaterials ChemistryMolecule[CHIM]Chemical Sciences0210 nano-technology
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Evidence for a critical dose above which damage to carbonate ester bonds in PADC appear after gamma ray and ultra soft X-ray exposures

2020

Abstract It has been confirmed that the density of carbonate ester in poly(allyl diglycol carbonate) (PADC), which is a well-known polymeric nuclear track detector CR-39, begins decreasing above a critical dose of about 60 kGy during exposures to Co-60 gamma rays and Ultra Soft X-rays (USX: Kα (Al) with energy 1.49 keV). After exposure to Co-60 gamma rays at 77 K and room temperature (RT), a significant difference in Electron Spin Resonance (ESR) spectra has been observed at both sides of a critical dose of 60 kGy, where is a threshold for the degradation of carbonate ester in PADC. Namely, the types of free radicals in PADC are different from each other below and above this critical dose. …

RadiationMaterials science010308 nuclear & particles physicsRadicalIon trackRadiochemistryGamma ray01 natural sciencesCarbonate ester030218 nuclear medicine & medical imaginglaw.invention03 medical and health scienceschemistry.chemical_compound0302 clinical medicinechemistrylawAbsorbed dose0103 physical sciencesCarbonateFourier transform infrared spectroscopyElectron paramagnetic resonanceRadiation Physics and Chemistry
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Radial electron fluence around ion tracks as a new physical parameter for the detection threshold of PADC using Geant4-DNA toolkit

2018

International audience; The detection threshold of poly(allyl dyglycol carbonate), PADC, for C ions is determined as 55 eV/nm in stopping power, which is significantly higher than that for proton and He ions. The stopping power is not a universal parameter for expressing the detection threshold of PADC. A new physical parameter of Radial Electron Fluence around Ion Tracks, REFIT, is proposed to describe the detection threshold of PADC. It is defined as the number density of electrons passing through the surface of a cylinder of a certain radius that is co-axial with the trajectory. Furthermore, preliminary calculations are presently being performed using the Monte Carlo simulation code of G…

[PHYS]Physics [physics]Detection thresholdRadiationMaterials scienceProtonGeant4-DNAIon trackLatent trackMonte Carlo methodREFIT02 engineering and technologyElectron021001 nanoscience & nanotechnologySecondary electronsPADC030218 nuclear medicine & medical imagingComputational physicsIon03 medical and health sciences0302 clinical medicineStopping power (particle radiation)Impact parameter0210 nano-technologyInstrumentationRadiation Measurements
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Single- and Double-Strand Breaks of Dry DNA Exposed to Protons at Bragg-Peak Energies

2017

International audience; Ultrathin layers (<20 nm) of pBR322 plasmid DNA were deposited onto 2.5 μm thick polyester films and exposed to proton Bragg-peak energies (90–3000 keV) at various fluences. A quantitative analysis of radio-induced DNA damage is reported here in terms of single- and double-strand breaks (SSB and DSB, respectively). The corresponding yields as well as G-values and the cross sections exhibit fairly good agreement with the rare available data, stemming from close experimental conditions, namely, based on α particle irradiation. SSB/DSB rates appear to be linear when plotted against linear energy transfer (LET) in the whole energy range studied. All the data present a ma…

cross-sectionProtonPolyestersLinear energy transferBragg peak7. Clean energyclustered DNA damage030218 nuclear medicine & medical imagingdamage yield03 medical and health scienceschemistry.chemical_compound0302 clinical medicineFragmentation (mass spectrometry)Materials ChemistryDNA Breaks Double-StrandedLinear Energy TransferDNA Breaks Single-StrandedIrradiationPhysical and Theoretical Chemistryradiochemical yieldDouble strandRange (particle radiation)DNASurfaces Coatings and Films[ PHYS.PHYS.PHYS-CHEM-PH ] Physics [physics]/Physics [physics]/Chemical Physics [physics.chem-ph]chemistry030220 oncology & carcinogenesis[PHYS.PHYS.PHYS-CHEM-PH]Physics [physics]/Physics [physics]/Chemical Physics [physics.chem-ph]ProtonsAtomic physicsDNAPlasmidsBragg-Peaksingle and double strand breakThe Journal of Physical Chemistry B
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