AbstractIron phosphate has been proposed as a candidate material for the encapsulation of nuclear waste. We studied amorphous and crystalline structures of Fe2+Fe3+(P2O7)22 and Fe3+(PO3)3. Amorphous Fe3+(P2O7)34, and two structures comparable with experimentally produced iron phosphate glass (IPG): 40 mol% Fe2O3 and 60 mol% P2O5, with 4% and 17% Fe2+ ion concentrations were also investigated.A series of constant volume molecular dynamics (MD) simulations of radiation cascades at 4 keV were performed. In the crystal structures, the cascades caused local amorphisation. For the glass structures, the cascades generally produced a rearrangement of atoms but did not significantly alter the overall atomic co-ordination or the ring statistics.Our w...
'Certain high level wastes (HLW) in the US contain components such as phosphates, heavy metals, and ...
Iron phosphate glasses with melting temperatures of similar to 1300 degrees C were developed to immo...
Radiation tolerance of iron phosphate: a study of amorphous and crystalline structure
AbstractIron phosphate has been proposed as a candidate material for the encapsulation of nuclear wa...
AbstractIron phosphate glass (IPG) has gained recent interest for use in encapsulating radioactive w...
Iron phosphate glass (IPG) has gained recent interest for use in encapsulating radioactive waste for...
AbstractIron phosphate glass is a versatile matrix for the immobilisation of various radioactive ele...
Iron phosphate glass is a versatile matrix for the immobilisation of various radioactive elements fo...
Ion irradiation was used as a surrogate approach to mimic radiation induced modification in iron pho...
© 2017 The Authors Bulk properties such as glass transition temperature, density and thermal expansi...
The atomic structure, glass forming and crystallization characteristics, and the chemical durability...
The atomic structure of iron phosphate glasses containing uranium has been studied by complementary ...
'Objectives of this project are to: (1) investigate the glass composition and processing conditions ...
To study radiation stability of iron phosphate glasses, cerium is used as surrogate of actinides. Ce...
The current study investigates the feasibility of using iron phosphate glass for the immobilization ...
'Certain high level wastes (HLW) in the US contain components such as phosphates, heavy metals, and ...
Iron phosphate glasses with melting temperatures of similar to 1300 degrees C were developed to immo...
Radiation tolerance of iron phosphate: a study of amorphous and crystalline structure
AbstractIron phosphate has been proposed as a candidate material for the encapsulation of nuclear wa...
AbstractIron phosphate glass (IPG) has gained recent interest for use in encapsulating radioactive w...
Iron phosphate glass (IPG) has gained recent interest for use in encapsulating radioactive waste for...
AbstractIron phosphate glass is a versatile matrix for the immobilisation of various radioactive ele...
Iron phosphate glass is a versatile matrix for the immobilisation of various radioactive elements fo...
Ion irradiation was used as a surrogate approach to mimic radiation induced modification in iron pho...
© 2017 The Authors Bulk properties such as glass transition temperature, density and thermal expansi...
The atomic structure, glass forming and crystallization characteristics, and the chemical durability...
The atomic structure of iron phosphate glasses containing uranium has been studied by complementary ...
'Objectives of this project are to: (1) investigate the glass composition and processing conditions ...
To study radiation stability of iron phosphate glasses, cerium is used as surrogate of actinides. Ce...
The current study investigates the feasibility of using iron phosphate glass for the immobilization ...
'Certain high level wastes (HLW) in the US contain components such as phosphates, heavy metals, and ...
Iron phosphate glasses with melting temperatures of similar to 1300 degrees C were developed to immo...
Radiation tolerance of iron phosphate: a study of amorphous and crystalline structure