A new production method of 99Mo using accelerator neutrons via the 100Mo(n,2n)99Mo reaction was proposed. Intense neutrons with a most probable energy of 14 MeV can be produced by bombarding Be or C with 40 MeV deuteron beams. Research and development works of 99Mo produced by neutrons from the 3H(d,n)4He reaction were carried out. High quality 99mTc was obtained by employing a sublimation method. Accelerator neutrons are shown to have a great potential to produce a wide variety of radioisotopes
New production routes to produce 99 Mo and 67 Cu by the 100 Mo(n,2n) 99 Mo and the 68 Zn(n,n'p+d) 67...
Abstract of WO 2009148306 (A1) The present invention relates to a process for the production of no-c...
In this paper the study of the photonuclear interaction induced by 10MeV electron beam is an approac...
A new production method of 99Mo using accelerator neutrons via the 100Mo(n,2n)99Mo reaction was prop...
We, for the first time, measured the yield of 99Mo, the mother nuclide of 99mTc used in nuclear medi...
A neutron source from the C(d,n) reaction has the unique capability of producing medical radioisotop...
Technetium-99m (T1/2= 6 h) is the most commonly used radioisotope in nuclear medicine accounting for...
AbstractWe proposed aprototype facility for the generation of radioisotopes with accelerator neutron...
An advanced fusion neutron source (A-FNS) is under planning at Rokkasyo in Japan. The A-FNS has an a...
A plan of an advanced fusion neutron source (A-FNS) by using d-Li reaction is in progress at Rokkash...
Background: the gamma-emitting radionuclide Technetium-99m (99mTc) is still the workhorse of Single ...
At present Technetium-99m provides up to 90 % isotopic products used in nuclear medicine [1]. His ge...
In this paper the study of the photonuclear interaction induced by 10MeV electron beam is an approac...
International audienceInnovative accelerator-based production routes for Mo-99 (and Tc-99m) have bee...
Molybdenum-99 is one of the most important radionuclides for medical diagnostics. In 2015, the Inter...
New production routes to produce 99 Mo and 67 Cu by the 100 Mo(n,2n) 99 Mo and the 68 Zn(n,n'p+d) 67...
Abstract of WO 2009148306 (A1) The present invention relates to a process for the production of no-c...
In this paper the study of the photonuclear interaction induced by 10MeV electron beam is an approac...
A new production method of 99Mo using accelerator neutrons via the 100Mo(n,2n)99Mo reaction was prop...
We, for the first time, measured the yield of 99Mo, the mother nuclide of 99mTc used in nuclear medi...
A neutron source from the C(d,n) reaction has the unique capability of producing medical radioisotop...
Technetium-99m (T1/2= 6 h) is the most commonly used radioisotope in nuclear medicine accounting for...
AbstractWe proposed aprototype facility for the generation of radioisotopes with accelerator neutron...
An advanced fusion neutron source (A-FNS) is under planning at Rokkasyo in Japan. The A-FNS has an a...
A plan of an advanced fusion neutron source (A-FNS) by using d-Li reaction is in progress at Rokkash...
Background: the gamma-emitting radionuclide Technetium-99m (99mTc) is still the workhorse of Single ...
At present Technetium-99m provides up to 90 % isotopic products used in nuclear medicine [1]. His ge...
In this paper the study of the photonuclear interaction induced by 10MeV electron beam is an approac...
International audienceInnovative accelerator-based production routes for Mo-99 (and Tc-99m) have bee...
Molybdenum-99 is one of the most important radionuclides for medical diagnostics. In 2015, the Inter...
New production routes to produce 99 Mo and 67 Cu by the 100 Mo(n,2n) 99 Mo and the 68 Zn(n,n'p+d) 67...
Abstract of WO 2009148306 (A1) The present invention relates to a process for the production of no-c...
In this paper the study of the photonuclear interaction induced by 10MeV electron beam is an approac...