Claims
- 1. A method for producing a plastic scintillator, said method comprising the steps of:
combining a plurality of nano-sized particles and at least one dopant with a plastic material for the formation of a plastic scintillator thereof; processing said plurality of nano-sized particles, said at least one dopant and said plastic material within a dry inert atmosphere of an extruder to produce a reaction that results in the formation of a plastic scintillator thereof and the deposition of energy within said plastic scintillator, wherein said plastic scintillator produces light signifying the detection of a radiative species.
- 2. The method of claim 1 further comprising the step of:
treating said plurality of nano-sized particles with an inert gas prior to processing said plurality of nano-sized particles, said at least one dopant and said plastic material utilizing said extruder.
- 3. The method of claim 1 wherein further comprising the step of:
producing polymer pellets in response to processing said plurality of nano-sized particles, said at least one dopant and said plastic material within said dry inert atmosphere of said extruder.
- 4. The method of claim 3 wherein said extruder comprises a single screw extruder.
- 5. The method of claim 3 wherein said extruder comprises a twin screw extruder
- 6. The method of claim 1 wherein said plurality of nano-sized particles comprises a lithium-bearing compound.
- 7. The method of claim 6 wherein said lithium-bearing compound comprises at least one of the following: lithium fluoride, lithium titanate, or lithium carbonate
- 8. The method of claim 1 wherein said plurality of nano-sized particles comprises a boron-bearing compound.
- 9. The method of claim 8 wherein said boron-bearing compound comprises B2O4.
- 10. The method of claim 1 wherein said radiative species comprises a neutron.
- 11. The method of claim 1 wherein said plastic material comprises a plastic powder.
- 12. The method of claim 1 wherein said plastic material comprises a plurality of plastic pellets.
- 13. The method of claim 1 wherein said plurality of nano-sized particles comprises a plurality of heavy element nano-sized particles, where said plastic scintillator comprises an x-ray sensitive scintillator.
- 14. The method of claim 13 wherein said plurality of heavy element nano-sized particles comprises at least one of the following: PbWO4 or CeO2
- 15. The method of claim 1 wherein said reaction comprises the following reaction:
- 16. The method of claim 1 wherein said reaction comprises the following reaction:
- 17. A method for producing a plastic scintillator, said method comprising the steps of:
combining a plurality of nano-sized particles and at least one dopant with a plastic material for the formation of a plastic scintillator thereof; processing said plurality of nano-sized particles, said at least one dopant and said plastic material within a dry inert atmosphere of an extruder to produce a reaction that results in the formation of a plastic scintillator thereof and the deposition of energy within said plastic scintillator, wherein said plastic scintillator produces light signifying the detection of a radiative species; treating said plurality of nano-sized particles with an inert gas prior to processing said plurality of nano-sized particles, said at least one dopant and said plastic material utilizing said extruder; and producing polymer pellets in response to processing said plurality of nano-sized particles, said at least one dopant and said plastic material within said dry inert atmosphere of said extruder.
- 18. A method for producing a plastic scintillator, said method comprising the steps of:
providing a plastic and a plurality of nano-sized particles, wherein each of said nano-sized particles possess a size on the order of approximately 10 nm to - 100 nm; treating said plurality of nano-sized particles with an inert gas to produce completely dry nano-sized particles; mixing said plurality of nano-sized particles with primary and secondary dopants prior to extruding said plastic; extruding said plurality of nano-sized particles and said plastic within an extruder under a dry inert atmosphere in order to uniformly distribute said plurality of nano-sized particles within a plastic matrix associated with said plastic to form a resulting melt thereof which can be formed into a plastic scintillator thereof.
- 19. The method of claim 18 further comprising the step of providing said plastic in a form of at least one of the following:
aromatic polymer; aliphatic polymer; acrylic polymer; polystyrene plastic powder; polystyrene plastic pellets; polyvinyltoluene plastic powder; or polyvinyltoluene plastic pellets.
- 20. The method of claim 18 further comprising the step of:
extruding said resulting melt into a plastic scintillator profile; and pelletizing said resulting melt for use in subsequent casting, injection molding or extrusion processes thereof.
STATEMENT OF GOVERNMENT INTEREST
[0001] The United States Government has rights in this invention pursuant to Contract No. DE-AC02-76CHO3000 between the U.S. Department of Energy and the University Research Association.