Conjugated polymers have emerged as an attractive technology for large-area electronic applications. As organic semiconductors, they can be used to make large-area arrays of diodes or transistors using fabrication techniques developed for polymer coatings, such as spraying and screen-printing. We have demonstrated both neutron and alpha detection using diodes made from conjugated polymers and have done preliminary work to integrate a boron carbide layer into the conventional polymer device structure to capture thermal neutrons. The polymer devices appear to be insensitive to gamma rays, due to their small physical thickness and low atomic number
Room temperature, high efficiency and scalable radiation detectors can be realized by manipulating m...
Real-time solid-state neutron detectors have been fabricated from semiconducting boron–carbon alloys...
The world is in need of a new way to detect neutrons. The best current detectors rely on 3He, which ...
This work demonstrated the feasibility and limitations of semiconducting {pi}-conjugated organic pol...
In recent decades organic electronics have entered mainstream use in consumer electronics found in ...
Understanding the effect of physical structure and the role of interfaces is critical for gaining in...
Through this funded project, our research group at the Oak Ridge National Laboratory has pioneered a...
We demonstrate that neutron reflection (NR) can be used to characterize polymer films deposited on i...
Semiconductor diode detectors coated with neutron reactive materials have been investigated as neutr...
Neutron detection efficiency is an important figure of merit for waste assay applications that must ...
Alternative neutron detection technologies are needed to replace the current He- 3 based Radiation P...
There exists a significant need to develop a new neutron detection system which would reduce the dep...
Thermal neutron detectors have seen only incremental improvements over the last decades. In this pap...
Thermal neutron detectors, which are based on semiconductor material such as silicon coated with neu...
abstract: The work presented in this manuscript has the overarching theme of radiation. The two for...
Room temperature, high efficiency and scalable radiation detectors can be realized by manipulating m...
Real-time solid-state neutron detectors have been fabricated from semiconducting boron–carbon alloys...
The world is in need of a new way to detect neutrons. The best current detectors rely on 3He, which ...
This work demonstrated the feasibility and limitations of semiconducting {pi}-conjugated organic pol...
In recent decades organic electronics have entered mainstream use in consumer electronics found in ...
Understanding the effect of physical structure and the role of interfaces is critical for gaining in...
Through this funded project, our research group at the Oak Ridge National Laboratory has pioneered a...
We demonstrate that neutron reflection (NR) can be used to characterize polymer films deposited on i...
Semiconductor diode detectors coated with neutron reactive materials have been investigated as neutr...
Neutron detection efficiency is an important figure of merit for waste assay applications that must ...
Alternative neutron detection technologies are needed to replace the current He- 3 based Radiation P...
There exists a significant need to develop a new neutron detection system which would reduce the dep...
Thermal neutron detectors have seen only incremental improvements over the last decades. In this pap...
Thermal neutron detectors, which are based on semiconductor material such as silicon coated with neu...
abstract: The work presented in this manuscript has the overarching theme of radiation. The two for...
Room temperature, high efficiency and scalable radiation detectors can be realized by manipulating m...
Real-time solid-state neutron detectors have been fabricated from semiconducting boron–carbon alloys...
The world is in need of a new way to detect neutrons. The best current detectors rely on 3He, which ...