A betavoltaic battery was prepared using radioactive 63Ni attached to a three-dimensional single trenched P–N absorber. The optimum thickness of a 63Ni layer was determined to be approximately 2 μm, considering the minimum self-shielding effect of beta particles. Electroplating of radioactive 63Ni on a nickel (Ni) foil was carried out at a current density of 20 mA/cm2. The difference of the short-circuit currents (Isc) between the pre- and postdeposition of 63Ni (16.65 MBq) on the P–N junction was 5.03 nA, as obtained from the I–V characteristics. An improved design with a sandwich structure was provided for enhancing performance
The results of Geant4 simulations using Montecarlo based code to explore suitable beta emitters and ...
A high open-circuit voltage betavoltaic cell based on a SiC pin homojunction is achieved. The open-c...
Long-lived power supplies for remote and even hostile environmental conditions are needed for space ...
AbstractA betavoltaic battery was prepared using radioactive 63Ni attached to a three-dimensional si...
Multi-layered Ni-63 betavoltaic cell was investigated for improving the current density and the sour...
Nickel-63 (a pure beta-emitter with a half-life of 100 years) is one of the most promising radionucl...
n this study, the thickness and the shape of nuclear battery is changed and the beta particle fluenc...
International audienceGaN, with its wide bandgap of 3.4 eV, has emerged as an efficient material for...
In this work, energy converters, which contain a GaP–Si heterojunction and Si-based Schottky barrier...
A betavoltaic cell is a type of radioisotope power source where the energy of beta radiation is conv...
32nd International Physics Congress of Turkish-Physical-Society (TPS) -- SEP 06-09, 2016 -- Bodrum, ...
Distinct from conventional energy‐harvesting (EH) technologies, such as the use of photovoltaic, pie...
International audienceGaN is a durable, radiation hard and wide-bandgap semiconductor material, maki...
It was developed the technology of manufacturing planar betavoltaic converter based on silicon, prov...
The basic technical principles and means of increase in betavoltaitic elements effectiveness have be...
The results of Geant4 simulations using Montecarlo based code to explore suitable beta emitters and ...
A high open-circuit voltage betavoltaic cell based on a SiC pin homojunction is achieved. The open-c...
Long-lived power supplies for remote and even hostile environmental conditions are needed for space ...
AbstractA betavoltaic battery was prepared using radioactive 63Ni attached to a three-dimensional si...
Multi-layered Ni-63 betavoltaic cell was investigated for improving the current density and the sour...
Nickel-63 (a pure beta-emitter with a half-life of 100 years) is one of the most promising radionucl...
n this study, the thickness and the shape of nuclear battery is changed and the beta particle fluenc...
International audienceGaN, with its wide bandgap of 3.4 eV, has emerged as an efficient material for...
In this work, energy converters, which contain a GaP–Si heterojunction and Si-based Schottky barrier...
A betavoltaic cell is a type of radioisotope power source where the energy of beta radiation is conv...
32nd International Physics Congress of Turkish-Physical-Society (TPS) -- SEP 06-09, 2016 -- Bodrum, ...
Distinct from conventional energy‐harvesting (EH) technologies, such as the use of photovoltaic, pie...
International audienceGaN is a durable, radiation hard and wide-bandgap semiconductor material, maki...
It was developed the technology of manufacturing planar betavoltaic converter based on silicon, prov...
The basic technical principles and means of increase in betavoltaitic elements effectiveness have be...
The results of Geant4 simulations using Montecarlo based code to explore suitable beta emitters and ...
A high open-circuit voltage betavoltaic cell based on a SiC pin homojunction is achieved. The open-c...
Long-lived power supplies for remote and even hostile environmental conditions are needed for space ...