Tritium-powered betavoltaic micropower sources using contact potential difference (CPD) are demonstrated. Thermally stable scandium tritide thin films with a surface activity of 15mCi/cm2 were used as the beta particle source. The electrical field created by the work function difference between the ScT film and a platinum or copper electrode was used to separate the beta-generated electrical charge carriers. Open circuit voltages of 0.5 and 0.16V and short circuit current densities of 2.7 and 5.3nA/cm2 were achieved for gaseous and solid dielectric media-based CPD cells, respectively
The HPHT diamond Schottky diode was assembled as a Metal/Intrinsic/p-doped structure betavoltaic cel...
The results of Geant4 simulations using Montecarlo based code to explore suitable beta emitters and ...
Longevity of sensors and portable devices is severely limited by temperature, chemical instabilit...
This paper reports a new type betavoltaic (BV) microcell based on intrinsic p-type semiconductive si...
This paper reports a new type betavoltaic (BV) microcell based on intrinsic p-type semiconductive si...
A betavoltaic cell is a type of radioisotope power source where the energy of beta radiation is conv...
Long-term stability of tritium voltaic battery was studied by titanium tritide sources in situ radia...
Ever since the appearance of nanomaterials and nanotechnologies, they have been used in almost every...
An idealized design of a silicon betavoltaic battery with a tritium source is considered, in which a...
Multi-layered Ni-63 betavoltaic cell was investigated for improving the current density and the sour...
This paper reports a novel betavoltaic microbattery made up of single-walled carbon nanotubes (SWNTs...
Three-dimensional diodes fabricated by electrochemical etching are exposed to tritium gas at pressur...
In this paper, a novel betavoltaic (BV) microcell based on semiconducting single-walled carbon nanot...
In this paper, a novel betavoltaic (BV) microcell based on semiconducting single-walled carbon nanot...
Developing a successful strategy to maximize the surface charge density is crucial to speed-up the c...
The HPHT diamond Schottky diode was assembled as a Metal/Intrinsic/p-doped structure betavoltaic cel...
The results of Geant4 simulations using Montecarlo based code to explore suitable beta emitters and ...
Longevity of sensors and portable devices is severely limited by temperature, chemical instabilit...
This paper reports a new type betavoltaic (BV) microcell based on intrinsic p-type semiconductive si...
This paper reports a new type betavoltaic (BV) microcell based on intrinsic p-type semiconductive si...
A betavoltaic cell is a type of radioisotope power source where the energy of beta radiation is conv...
Long-term stability of tritium voltaic battery was studied by titanium tritide sources in situ radia...
Ever since the appearance of nanomaterials and nanotechnologies, they have been used in almost every...
An idealized design of a silicon betavoltaic battery with a tritium source is considered, in which a...
Multi-layered Ni-63 betavoltaic cell was investigated for improving the current density and the sour...
This paper reports a novel betavoltaic microbattery made up of single-walled carbon nanotubes (SWNTs...
Three-dimensional diodes fabricated by electrochemical etching are exposed to tritium gas at pressur...
In this paper, a novel betavoltaic (BV) microcell based on semiconducting single-walled carbon nanot...
In this paper, a novel betavoltaic (BV) microcell based on semiconducting single-walled carbon nanot...
Developing a successful strategy to maximize the surface charge density is crucial to speed-up the c...
The HPHT diamond Schottky diode was assembled as a Metal/Intrinsic/p-doped structure betavoltaic cel...
The results of Geant4 simulations using Montecarlo based code to explore suitable beta emitters and ...
Longevity of sensors and portable devices is severely limited by temperature, chemical instabilit...