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Plutonium-241

Isotope of plutonium From Wikipedia, the free encyclopedia

Plutonium-241 (241
Pu
, Pu-241) is an isotope of plutonium formed when plutonium-240 captures a neutron. Like some other plutonium isotopes (especially 239Pu), 241Pu is fissile, with a neutron absorption cross section about one-third greater than that of 239Pu, and a similar probability of fissioning on neutron absorption, around 73%. In the non-fission case, neutron capture produces plutonium-242. In general, isotopes with an odd number of neutrons are both more likely to absorb a neutron and more likely to undergo fission on neutron absorption than isotopes with an even number of neutrons.

Symbol241Pu
Namesplutonium-241
Protons (Z)94
Neutrons (N)147
Quick facts General, Symbol ...
Plutonium-241
General
Symbol241Pu
Namesplutonium-241
Protons (Z)94
Neutrons (N)147
Nuclide data
Natural abundance0 (synthetic)
Half-life (t1/2)14.33 years[1]
Isotope mass241.056850[2] Da
Decay products241Am
237U
Decay modes
Decay modeDecay energy (MeV)
β−0.0208[3]
α5.140[3]
Isotopes of plutonium
Complete table of nuclides
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Decay properties

Process of successive neutron capture from 239Pu through 245Cm, including 241Pu.

Plutonium-241 is a beta emitter with a half-life of 14.33 years, corresponding to a decay of about 5% of 241Pu nuclei over a one-year period. This decay has a Q-value of only 20.8 keV, and does not emit gamma rays.[3] The longer spent nuclear fuel waits before reprocessing, the more 241Pu decays to americium-241, which is nonfissile (although fissionable by fast neutrons) and an alpha emitter with a half-life of 432.6 years; 241Am, which does emit gamma rays, is a major contributor to the radioactivity of nuclear waste on a scale of hundreds to thousands of years.[citation needed] In its fully ionized state, the beta-decay half-life of 241Pu94+ decreases to 4.2 days, and only bound-state beta decay is possible.[4]

Plutonium-241 also has a rare alpha decay branch to uranium-237, occurring in about 0.0025% of decays. Unlike its usual beta decay, this can emit gamma rays, X-rays, and associated electrons.[1]

More information Half-life range (a), 4n (Thorium) ...
Actinides[5] by decay chain Half-life
range (a)
Fission products of 235U by yield[6]
4n
(Thorium)
4n + 1
(Neptunium)
4n + 2
(Radium)
4n + 3
(Actinium)
4.5–7% 0.04–1.25% <0.001%
228Ra№ 4–6 a 155Euþ
248Bk[7] > 9 a
244Cmƒ 241Puƒ 250Cf 227Ac№ 10–29 a 90Sr 85Kr 113mCdþ
232Uƒ 238Puƒ 243Cmƒ 29–97 a 137Cs 151Smþ 121mSn
249Cfƒ 242mAmƒ 141–351 a

No fission products have a half-life
in the range of 100 a–210 ka ...

241Amƒ 251Cfƒ[8] 430–900 a
226Ra№ 247Bk 1.3–1.6 ka
240Pu 229Th 246Cmƒ 243Amƒ 4.7–7.4 ka
245Cmƒ 250Cm 8.3–8.5 ka
239Puƒ 24.1 ka
230Th№ 231Pa№ 32–76 ka
236Npƒ 233Uƒ 234U№ 150–250 ka 99Tc₡ 126Sn
248Cm 242Pu 327–375 ka 79Se₡
1.33 Ma 135Cs₡
237Npƒ 1.61–6.5 Ma 93Zr 107Pd
236U 247Cmƒ 15–24 Ma 129I₡
244Pu 80 Ma

... nor beyond 15.7 Ma[9]

232Th№ 238U№ 235Uƒ№ 0.7–14.1 Ga
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