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铅的同位素

主要的铅同位素
同位素 衰变
丰度 半衰期 (t1/2) 方式 能量
MeV
产物
202Pb 人造 5.25×104  ε 0.039 202Tl
204Pb 1.4% 稳定,带122粒中子
205Pb 痕量 1.70×107  ε 0.051 205Tl
206Pb 24.1% 稳定,带124粒中子
207Pb 22.1% 稳定,带125粒中子
208Pb 52.4% 稳定,带126粒中子
209Pb 痕量 3.235 小时 β 0.644 209Bi
210Pb 痕量 22.20  β 0.064 210Bi
211Pb 痕量 36.1628 分钟 β 1.366 211Bi
212Pb 痕量 10.627 小时 β 0.569 212Bi
214Pb 痕量 27.06 分钟 β 1.018 214Bi
天然铅样品中,同位素的丰度有很大的变化量
标准原子质量英语Standard atomic weight (Ar, 标准)
  • [206.14, 207.94][1]
←Tl81 Bi83

178Pb至220Pb共43种同位素,其中4个(204Pb、206Pb、207Pb、208Pb)是稳定的。208
Pb
在所有的稳定同位素中,质量数最大。208
Pb
是一个双幻数核,分别为82个质子和126个中子。

图表

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符号 历史
名称
Z N 同位素质量(u
[n 1][n 2]
半衰期
[n 1][n 2]
衰变
方式
[2]
衰变
产物

[n 3][n 4]
原子核
自旋[n 1]
相对丰度
莫耳分率)[n 2]
相对丰度
的变化量
莫耳分率)
激发能量[n 2]
178Pb 82 96 178.003830(26) 0.23(15) ms α 174Hg 0+
179Pb 82 97 179.00215(21)# 3.9(1.1) ms α 175Hg (9/2−)
180Pb 82 98 179.997918(22) 4.5(11) ms α 176Hg 0+
181Pb 82 99 180.99662(10) 45(20) ms α (98%) 177Hg 5/2−#
β+ (2%) 181Tl
182Pb 82 100 181.992672(15) 60(40) ms
[55(+40−35) ms]
α (98%) 178Hg 0+
β+ (2%) 182Tl
183Pb 82 101 182.99187(3) 535(30) ms α (94%) 179Hg (3/2−)
β+ (6%) 183Tl
183mPb 94(8) keV 415(20) ms α 179Hg (13/2+)
β+ (不常见) 183Tl
184Pb 82 102 183.988142(15) 490(25) ms α 180Hg 0+
β+ (不常见) 184Tl
185Pb 82 103 184.987610(17) 6.3(4) s α 181Hg 3/2−
β+ (不常见) 185Tl
185mPb 60(40)# keV 4.07(15) s α 181Hg 13/2+
β+ (不常见) 185Tl
186Pb 82 104 185.984239(12) 4.82(3) s α (56%) 182Hg 0+
β+ (44%) 186Tl
187Pb 82 105 186.983918(9) 15.2(3) s β+ 187Tl (3/2−)
α 183Hg
187mPb 11(11) keV 18.3(3) s β+ (98%) 187Tl (13/2+)
α (2%) 183Hg
188Pb 82 106 187.980874(11) 25.5(1) s β+ (91.5%) 188Tl 0+
α (8.5%) 184Hg
188m1Pb 2578.2(7) keV 830(210) ns (8−)
188m2Pb 2800(50) keV 797(21) ns
189Pb 82 107 188.98081(4) 51(3) s β+ 189Tl (3/2−)
189mPb 40(30)# keV 1# min β+ (99.6%) 189Tl (13/2+)
α (.4%) 185Hg
190Pb 82 108 189.978082(13) 71(1) s β+ (99.1%) 190Tl 0+
α (.9%) 186Hg
190m1Pb 2614.8(8) keV 150 ns (10)+
190m2Pb 2618(20) keV 25 µs (12+)
190m3Pb 2658.2(8) keV 7.2(6) µs (11)−
191Pb 82 109 190.97827(4) 1.33(8) min β+ (99.987%) 191Tl (3/2−)
α (.013%) 187Hg
191mPb 20(50) keV 2.18(8) min β+ (99.98%) 191Tl 13/2(+)
α (.02%) 187Hg
192Pb 82 110 191.975785(14) 3.5(1) min β+ (99.99%) 192Tl 0+
α (.0061%) 188Hg
192m1Pb 2581.1(1) keV 164(7) ns (10)+
192m2Pb 2625.1(11) keV 1.1(5) µs (12+)
192m3Pb 2743.5(4) keV 756(21) ns (11)−
193Pb 82 111 192.97617(5) 5# min β+ 193Tl (3/2−)
193m1Pb 130(80)# keV 5.8(2) min β+ 193Tl 13/2(+)
193m2Pb 2612.5(5)+X keV 135(+25−15) ns (33/2+)
194Pb 82 112 193.974012(19) 12.0(5) min β+ (100%) 194Tl 0+
α (7.3×10−6%) 190Hg
195Pb 82 113 194.974542(25) ~15 min β+ 195Tl 3/2#-
195m1Pb 202.9(7) keV 15.0(12) min β+ 195Tl 13/2+
195m2Pb 1759.0(7) keV 10.0(7) µs 21/2−
196Pb 82 114 195.972774(15) 37(3) min β+ 196Tl 0+
α (3×10−5%) 192Hg
196m1Pb 1049.20(9) keV <100 ns 2+
196m2Pb 1738.27(12) keV <1 µs 4+
196m3Pb 1797.51(14) keV 140(14) ns 5−
196m4Pb 2693.5(5) keV 270(4) ns (12+)
197Pb 82 115 196.973431(6) 8.1(17) min β+ 197Tl 3/2−
197m1Pb 319.31(11) keV 42.9(9) min β+ (81%) 197Tl 13/2+
IT (19%) 197Pb
α (3×10−4%) 193Hg
197m2Pb 1914.10(25) keV 1.15(20) µs 21/2−
198Pb 82 116 197.972034(16) 2.4(1) h β+ 198Tl 0+
198m1Pb 2141.4(4) keV 4.19(10) µs (7)−
198m2Pb 2231.4(5) keV 137(10) ns (9)−
198m3Pb 2820.5(7) keV 212(4) ns (12)+
199Pb 82 117 198.972917(28) 90(10) min β+ 199Tl 3/2−
199m1Pb 429.5(27) keV 12.2(3) min IT (93%) 199Pb (13/2+)
β+ (7%) 199Tl
199m2Pb 2563.8(27) keV 10.1(2) µs (29/2−)
200Pb 82 118 199.971827(12) 21.5(4) h β+ 200Tl 0+
201Pb 82 119 200.972885(24) 9.33(3) h ε (99%) 201Pb 5/2−
β+ (1%) 201Tl
201m1Pb 629.14(17) keV 61(2) s 13/2+
201m2Pb 2718.5+X keV 508(5) ns (29/2−)
202Pb 82 120 201.972159(9) 52.5(28)×103 y ε 202Tl 0+
202m1Pb 2169.83(7) keV 3.53(1) h IT (90.5%) 202Pb 9−
ε (9.5%) 202Tl
202m2Pb 4142.9(11) keV 110(5) ns (16+)
202m3Pb 5345.9(13) keV 107(5) ns (19−)
203Pb 82 121 202.973391(7) 51.873(9) h ε 203Tl 5/2−
203m1Pb 825.20(9) keV 6.21(8) s IT 203Pb 13/2+
203m2Pb 2949.47(22) keV 480(7) ms 29/2−
203m3Pb 2923.4+X keV 122(4) ns (25/2−)
204Pb[n 5] 82 122 203.9730436(13) 观测上稳定[n 6] 0+ 0.014(1) 0.0104–0.0165
204m1Pb 1274.00(4) keV 265(10) ns 4+
204m2Pb 2185.79(5) keV 67.2(3) min 9−
204m3Pb 2264.33(4) keV 0.45(+10−3) µs 7−
205Pb 82 123 204.9744818(13) 15.3(7)×106 y ε 205Tl 5/2−
205m1Pb 2.329(7) keV 24.2(4) µs 1/2−
205m2Pb 1013.839(13) keV 5.55(2) ms 13/2+
205m3Pb 3195.7(5) keV 217(5) ns 25/2−
206Pb[n 5][n 7] Radium G 82 124 205.9744653(13) 观测上稳定[n 8] 0+ 0.241(1) 0.2084–0.2748
206m1Pb 2200.14(4) keV 125(2) µs 7−
206m2Pb 4027.3(7) keV 202(3) ns 12+
207Pb[n 5][n 9] Actinium D 82 125 206.9758969(13) 观测上稳定[n 10] 1/2− 0.221(1) 0.1762–0.2365
207mPb 1633.368(5) keV 806(6) ms IT 207Pb 13/2+
208Pb[n 11] Thorium D 82 126 207.9766521(13) 观测上稳定[n 12] 0+ 0.524(1) 0.5128–0.5621
208mPb 4895(2) keV 500(10) ns 10+
209Pb 82 127 208.9810901(19) 3.253(14) h β 209Bi 9/2+ 痕量[n 13]
210Pb Radium D
Radiolead
Radio-lead
82 128 209.9841885(16) 22.20(22) y β (100%) 210Bi 0+ 痕量[n 14]
α (1.9×10−6%) 206Hg
210mPb 1278(5) keV 201(17) ns 8+
211Pb Actinium B 82 129 210.9887370(29) 36.1(2) min β 211Bi 9/2+ 痕量[n 15]
212Pb Thorium B 82 130 211.9918975(24) 10.64(1) h β 212Bi 0+ 痕量[n 16]
212mPb 1335(10) keV 5(1) µs (8+)
213Pb 82 131 212.996581(8) 10.2(3) min β 213Bi (9/2+)
214Pb Radium B 82 132 213.9998054(26) 26.8(9) min β 214Bi 0+ 痕量[n 14]
214mPb 1420(20) keV 6.2(0.3) μs IT 212Pb 8+#
215Pb 82 133 215.004660(60) 2.34(0.19) min β 215Bi 9/2+#
216Pb 82 134 216.008030(210)# 1.65(0.2) min β 216Bi 0+
216mPb 1514(20) keV 400(40) ns IT 216Pb 8+#
217Pb 82 135 217.013140(320)# 20(5) s β 217Bi 9/2+#
218Pb 82 136 218.016590(320)# 15(7) s β 218Bi 0+
219Pb 82 137 219.02214(43)# 3# s
[>300 ns]
11/2+#
220Pb 82 138 220.02591(43)# 1# s
[>300 ns]
0+
  1. ^ 1.0 1.1 1.2 画上#号的数据代表没有经过实验的证明,仅为理论推测。
  2. ^ 2.0 2.1 2.2 2.3 用括号括起来的数据代表不确定性。
  3. ^ 稳定的衰变产物以粗体表示。
  4. ^ 半衰期超过5亿年的衰变产物以粗斜体表示。
  5. ^ 5.0 5.1 5.2 用于铅铅定年法英语lead-lead dating
  6. ^ 被认为会α衰变200Hg半衰期超过140×1015
  7. ^ 铀衰变链的最终衰变产物
  8. ^ 被认为会α衰变202Hg
  9. ^ 锕衰变链的最终衰变产物
  10. ^ 被认为会α衰变203Hg
  11. ^ 钍衰变链的最终衰变产物
  12. ^ 最重的观测上稳定核素,被认为会α衰变204Hg半衰期超过2×1019
  13. ^ 235U的衰变产物223Ra的簇衰变产物
  14. ^ 14.0 14.1 238U衰变产物
  15. ^ 235U衰变产物
  16. ^ 232Th衰变产物

铅-212

[编辑]

212Pb可用于α粒子标靶治疗英语targeted alpha-particle therapy[3]


同位素列表
铊的同位素 铅的同位素 铋的同位素

参考文献

[编辑]
  1. ^ Prohaska, Thomas; Irrgeher, Johanna; Benefield, Jacqueline; Böhlke, John K.; Chesson, Lesley A.; Coplen, Tyler B.; Ding, Tiping; Dunn, Philip J. H.; Gröning, Manfred; Holden, Norman E.; Meijer, Harro A. J. Standard atomic weights of the elements 2021 (IUPAC Technical Report). Pure and Applied Chemistry. 2022-05-04. ISSN 1365-3075. doi:10.1515/pac-2019-0603 (英语). 
  2. ^ Universal Nuclide Chart需要免费注册. nucleonica. [2015-10-16]. (原始内容存档于2017-02-19). 
  3. ^ Kokov, K.V.; Egorova, B.V.; German, M.N.; Klabukov, I.D.; Krasheninnikov, M.E.; Larkin-Kondrov, A.A.; Makoveeva, K.A.; Ovchinnikov, M.V.; Sidorova, M.V.; Chuvilin, D.Y. 212Pb: Production Approaches and Targeted Therapy Applications. Pharmaceutics. 2022, 14 (1): 189. ISSN 1999-4923. PMC 8777968可免费查阅. PMID 35057083. doi:10.3390/pharmaceutics14010189可免费查阅. 
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铅的同位素
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