銪(原子量:151.964(1))的同位素,其中有1個同位素是在觀測上穩定的。
自然形成的銪元素由兩種同位素組成:151Eu和153Eu,後者的豐度為52.2%,比前者稍高。153Eu是穩定同位素,但151Eu則會進行α衰變,半衰期為,即在1公斤自然銪樣本中大約每2分鐘發生一次α衰變事件。這一數值與理論預測值吻合。除了自然的放射性同位素151Eu以外,已知的人造放射性同位素共有35種,其中最穩定的有150Eu(半衰期為36.9年)、152Eu(13.516年)和154Eu(8.593年)。所有剩餘的放射性同位素半衰期都在4.7612年以下,且大部份小於12.2秒。銪共有8種亞穩態,最穩定的有150mEu(半衰期為12.8小時)、152m1Eu(9.3116小時)和152m2Eu(96分鐘)。
概述
質量比153Eu低的同位素衰變模式主要是電子捕獲,並一般產生釤的同位素;質量更高的則主要進行β−衰變,並一般產生釓的同位素。對153Eu進行中子活化,可以產生更大量的154Eu,但其中大部份會再轉化為155Eu。
對於鈾-235和熱中子,155Eu(半衰期為4.7612年)的裂變產量為百萬分之330,其大部份會在燃料燃耗結束時嬗變成無放射性、無吸收性的釓-156。
整體來說,在輻射危害上,銪比銫-137和鍶-90弱得多,而作為中子毒物,銪則比釤弱很多。
圖表
|-
| 130Eu
| style="text-align:right" | 63
| style="text-align:right" | 67
| 129.96357(54)#
| 1.1(5) ms
[0.9(+5-3) ms]
|
|
| 2+#
|
|-
| 131Eu
| style="text-align:right" | 63
| style="text-align:right" | 68
| 130.95775(43)#
| 17.8(19) ms
|
|
| 3/2+
|
|-
| rowspan=2|132Eu
| rowspan=2 style="text-align:right" | 63
| rowspan=2 style="text-align:right" | 69
| rowspan=2|131.95437(43)#
| rowspan=2|100# ms
|
| 132Sm
| rowspan=2|
| rowspan=2|
|-
|
| 131Sm
|-
| 133Eu
| style="text-align:right" | 63
| style="text-align:right" | 70
| 132.94924(32)#
| 200# ms
|
| 133Sm
| 11/2-#
|
|-
| rowspan=2|134Eu
| rowspan=2 style="text-align:right" | 63
| rowspan=2 style="text-align:right" | 71
| rowspan=2|133.94651(21)#
| rowspan=2|0.5(2) s
|
| 134Sm
| rowspan=2|
| rowspan=2|
|-
| , (不常見)
| 133Pm
|-
| rowspan=2|135Eu
| rowspan=2 style="text-align:right" | 63
| rowspan=2 style="text-align:right" | 72
| rowspan=2|134.94182(32)#
| rowspan=2|1.5(2) s
|
| 135Sm
| rowspan=2|11/2-#
| rowspan=2|
|-
| ,
| 134Pm
|-
| rowspan=2|136Eu
| rowspan=2 style="text-align:right" | 63
| rowspan=2 style="text-align:right" | 73
| rowspan=2|135.93960(21)#
| rowspan=2|3.3(3) s
| (99.91%)
| 136Sm
| rowspan=2|(7+)
| rowspan=2|
|-
| , (.09%)
| 135Pm
|-
| rowspan=2 style="text-indent:1em" | 136mEu
| rowspan=2 colspan="3" style="text-indent:2em" | 0(500)# keV
| rowspan=2|3.8(3) s
| (99.91%)
| 136Sm
| rowspan=2|(3+)
| rowspan=2|
|-
| , (.09%)
| 135Pm
|-
| 137Eu
| style="text-align:right" | 63
| style="text-align:right" | 74
| 136.93557(21)#
| 8.4(5) s
|
| 137Sm
| 11/2-#
|
|-
| 138Eu
| style="text-align:right" | 63
| style="text-align:right" | 75
| 137.93371(3)
| 12.1(6) s
|
| 138Sm
| (6-)
|
|-
| 139Eu
| style="text-align:right" | 63
| style="text-align:right" | 76
| 138.929792(14)
| 17.9(6) s
|
| 139Sm
| (11/2)-
|
|-
| 140Eu
| style="text-align:right" | 63
| style="text-align:right" | 77
| 139.92809(6)
| 1.51(2) s
|
| 140Sm
| 1+
|
|-
| rowspan=2 style="text-indent:1em" | 140mEu
| rowspan=2 colspan="3" style="text-indent:2em" | 210(15) keV
| rowspan=2|125(2) ms
| IT (99%)
| 140Eu
| rowspan=2|5-#
| rowspan=2|
|-
| (1%)
| 140Sm
|-
| 141Eu
| style="text-align:right" | 63
| style="text-align:right" | 78
| 140.924931(14)
| 40.7(7) s
|
| 141Sm
| 5/2+
|
|-
| rowspan=2 style="text-indent:1em" | 141mEu
| rowspan=2 colspan="3" style="text-indent:2em" | 96.45(7) keV
| rowspan=2|2.7(3) s
| IT (86%)
| 141Eu
| rowspan=2|11/2-
| rowspan=2|
|-
| (14%)
| 141Sm
|-
| 142Eu
| style="text-align:right" | 63
| style="text-align:right" | 79
| 141.92343(3)
| 2.36(10) s
|
| 142Sm
| 1+
|
|-
| style="text-indent:1em" | 142mEu
| colspan="3" style="text-indent:2em" | 460(30) keV
| 1.223(8) min
|
| 142Sm
| 8-
|
|-
| 143Eu
| style="text-align:right" | 63
| style="text-align:right" | 80
| 142.920298(12)
| 2.59(2) min
|
| 143Sm
| 5/2+
|
|-
| style="text-indent:1em" | 143mEu
| colspan="3" style="text-indent:2em" | 389.51(4) keV
| 50.0(5) µs
|
|
| 11/2-
|
|-
| 144Eu
| style="text-align:right" | 63
| style="text-align:right" | 81
| 143.918817(12)
| 10.2(1) s
|
| 144Sm
| 1+
|
|-
| style="text-indent:1em" | 144mEu
| colspan="3" style="text-indent:2em" | 1127.6(6) keV
| 1.0(1) µs
|
|
| (8-)
|
|-
| 145Eu
| style="text-align:right" | 63
| style="text-align:right" | 82
| 144.916265(4)
| 5.93(4) d
|
| 145Sm
| 5/2+
|
|-
| style="text-indent:1em" | 145mEu
| colspan="3" style="text-indent:2em" | 716.0(3) keV
| 490 ns
|
|
| 11/2-
|
|-
| 146Eu
| style="text-align:right" | 63
| style="text-align:right" | 83
| 145.917206(7)
| 4.61(3) d
|
| 146Sm
| 4-
|
|-
| style="text-indent:1em" | 146mEu
| colspan="3" style="text-indent:2em" | 666.37(16) keV
| 235(3) µs
|
|
| 9+
|
|-
| rowspan=2|147Eu
| rowspan=2 style="text-align:right" | 63
| rowspan=2 style="text-align:right" | 84
| rowspan=2|146.916746(3)
| rowspan=2|24.1(6) d
| (99.99%)
| 147Sm
| rowspan=2|5/2+
| rowspan=2|
|-
| (.0022%)
| 143Pm
|-
| rowspan=2|148Eu
| rowspan=2 style="text-align:right" | 63
| rowspan=2 style="text-align:right" | 85
| rowspan=2|147.918086(11)
| rowspan=2|54.5(5) d
| (100%)
| 148Sm
| rowspan=2|5-
| rowspan=2|
|-
| (9.39×10−7%)
| 144Pm
|-
| 149Eu
| style="text-align:right" | 63
| style="text-align:right" | 86
| 148.917931(5)
| 93.1(4) d
|
| 149Sm
| 5/2+
|
|-
| 150Eu
| style="text-align:right" | 63
| style="text-align:right" | 87
| 149.919702(7)
| 36.9(9) a
|
| 150Sm
| 5(-)
|
|-
| rowspan=3 style="text-indent:1em" | 150mEu
| rowspan=3 colspan="3" style="text-indent:2em" | 42.1(5) keV
| rowspan=3|12.8(1) h
| (89%)
| 150Gd
| rowspan=3|0-
| rowspan=3|
|-
| (11%)
| 150Sm
|-
| IT (5×10−8%)
| 150Eu
|-
| 151Eu
| style="text-align:right" | 63
| style="text-align:right" | 88
| 150.9198502(26)
| 4.62×1018 a
|
| 147Pm
| 5/2+
| 0.4781(6)
|-
| style="text-indent:1em" | 151mEu
| colspan="3" style="text-indent:2em" | 196.245(10) keV
| 58.9(5) µs
|
|
| 11/2-
|
|-
| rowspan=2|152Eu
| rowspan=2 style="text-align:right" | 63
| rowspan=2 style="text-align:right" | 89
| rowspan=2|151.9217445(26)
| rowspan=2|13.537(6) a
| (72.09%), (0.027%)
| 152Sm
| rowspan=2|3-
| rowspan=2|
|-
| (27.9%)
| 152Gd
|-
| rowspan=2 style="text-indent:1em" | 152m1Eu
| rowspan=2 colspan="3" style="text-indent:2em" | 45.5998(4) keV
| rowspan=2|9.3116(13) h
| (72%)
| 152Gd
| rowspan=2|0-
| rowspan=2|
|-
| (28%)
| 152Sm
|-
| style="text-indent:1em" | 152m2Eu
| colspan="3" style="text-indent:2em" | 65.2969(4) keV
| 0.94(8) µs
|
|
| 1-
|
|-
| style="text-indent:1em" | 152m3Eu
| colspan="3" style="text-indent:2em" | 78.2331(4) keV
| 165(10) ns
|
|
| 1+
|
|-
| style="text-indent:1em" | 152m4Eu
| colspan="3" style="text-indent:2em" | 89.8496(4) keV
| 384(10) ns
|
|
| 4+
|
|-
| style="text-indent:1em" | 152m5Eu
| colspan="3" style="text-indent:2em" | 147.86(10) keV
| 96(1) min
|
|
| 8-
|
|-
| 153Eu
| style="text-align:right" | 63
| style="text-align:right" | 90
| 152.9212303(26)
| colspan=3 align=center|觀測上穩定
| 5/2+
| 0.5219(6)
|-
| rowspan=2|154Eu
| rowspan=2 style="text-align:right" | 63
| rowspan=2 style="text-align:right" | 91
| rowspan=2|153.9229792(26)
| rowspan=2|8.593(4) a
| (99.98%)
| 154Gd
| rowspan=2|3-
| rowspan=2|
|-
| (.02%)
| 154Sm
|-
| style="text-indent:1em" | 154m1Eu
| colspan="3" style="text-indent:2em" | 145.3(3) keV
| 46.3(4) min
| IT
| 154Eu
| (8-)
|
|-
| style="text-indent:1em" | 154m2Eu
| colspan="3" style="text-indent:2em" | 68.1702(4) keV
| 2.2(1) µs
|
|
| 2+
|
|-
| 155Eu
| style="text-align:right" | 63
| style="text-align:right" | 92
| 154.9228933(27)
| 4.7611(13) a
|
| 155Gd
| 5/2+
|
|-
| 156Eu
| style="text-align:right" | 63
| style="text-align:right" | 93
| 155.924752(6)
| 15.19(8) d
|
| 156Gd
| 0+
|
|-
| 157Eu
| style="text-align:right" | 63
| style="text-align:right" | 94
| 156.925424(6)
| 15.18(3) h
|
| 157Gd
| 5/2+
|
|-
| 158Eu
| style="text-align:right" | 63
| style="text-align:right" | 95
| 157.92785(8)
| 45.9(2) min
|
| 158Gd
| (1-)
|
|-
| 159Eu
| style="text-align:right" | 63
| style="text-align:right" | 96
| 158.929089(8)
| 18.1(1) min
|
| 159Gd
| 5/2+
|
|-
| 160Eu
| style="text-align:right" | 63
| style="text-align:right" | 97
| 159.93197(22)#
| 38(4) s
|
| 160Gd
| 1(-)
|
|-
| 161Eu
| style="text-align:right" | 63
| style="text-align:right" | 98
| 160.93368(32)#
| 26(3) s
|
| 161Gd
| 5/2+#
|
|-
| 162Eu
| style="text-align:right" | 63
| style="text-align:right" | 99
| 161.93704(32)#
| 10.6(10) s
|
| 162Gd
|
|
|-
| 163Eu
| style="text-align:right" | 63
| style="text-align:right" | 100
| 162.93921(54)#
| 6# s
|
| 163Gd
| 5/2+#
|
|-
| 164Eu
| style="text-align:right" | 63
| style="text-align:right" | 101
| 163.94299(64)#
| 2# s
|
| 164Gd
|
|
|-
| 165Eu
| style="text-align:right" | 63
| style="text-align:right" | 102
| 164.94572(75)#
| 1# s
|
| 165Gd
| 5/2+#
|
|-
| 166Eu
| style="text-align:right" | 63
| style="text-align:right" | 103
| 165.94997(86)#
| 400# ms
|
| 166Gd
|
|
|-
| 167Eu
| style="text-align:right" | 63
| style="text-align:right" | 104
| 166.95321(86)#
| 200# ms
|
| 167Gd
| 5/2+#
|
|}
参考文獻
- Isotope masses from [https://web.archive.org/web/20080923134436/http://www.nndc.bnl.gov/amdc/index.html Ame2003 Atomic Mass Evaluation] by G. Audi, A.H. Wapstra, C. Thibault, J. Blachot and O. Bersillon in Nuclear Physics A729 (2003).
- Isotopic compositions and standard atomic masses from [http://www.iupac.org/publications/pac/2003/7506/7506x0683.html Atomic weights of the elements. Review 2000 (IUPAC Technical Report)] . Pure Appl. Chem. Vol. 75, No. 6, pp. 683-800, (2003) and [http://www.iupac.org/news/archives/2005/atomic-weights_revised05.html Atomic Weights Revised (2005)] .
- Half-life, spin, and isomer data selected from these sources. Editing notes on this article's talk page.
** Audi, Bersillon, Blachot, Wapstra. [http://amdc.in2p3.fr/web/nubase_en.html The Nubase2003 evaluation of nuclear and decay properties] , Nuc. Phys. A 729, pp. 3-128 (2003).
** National Nuclear Data Center, Brookhaven National Laboratory. Information extracted from the [https://www.nndc.bnl.gov/nudat2/ NuDat 2.1 database] (retrieved Sept. 2005).
* David R. Lide (ed.), Norman E. Holden in CRC Handbook of Chemistry and Physics, 85th Edition*, online version. CRC Press. Boca Raton, Florida (2005). Section 11, Table of the Isotopes.
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