鋰的同位素
主要的鋰同位素
| 標準原子質量 (Ar, 標準) | - [6.938, 6.997][1]
- 傳統: 6.94
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鋰(原子量:6.941(2))共有10個已知同位素,質量數介於4-13之間,其中有2個是穩定的,其他都具有放射性。天然存在的鋰同位素有2個,分別是6Li和7Li,皆為穩定同位素,其中以7Li占天然鋰的大部分,豐度為92.41%。其他放射性同位素都不出現在自然界中,只有在實驗室製造出來過,且半衰期都極短,非常不穩定。一般来说,盐湖锂矿所含的锂-6比例多低于海洋背景水平,茶卡盐湖的尤其低;[2]方沸石所含的锂-6含量稍高于背景值。
圖表
符號
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Z
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N
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同位素質量(u) [n 1][n 2]
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半衰期 [n 2]
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衰變 方式[3]
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衰變 產物 [n 3]
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原子核 自旋
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相對豐度 (莫耳分率)[4][n 2]
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相對豐度 的變化量 (莫耳分率)[5]
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激發能量[n 2]
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3 Li
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3
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0
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7000303077500000000♠3.030775#[6]
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p
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2 He
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4 Li
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3
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1
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7000402719000000000♠4.02719(23)
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6977909999999999999♠91(9)×10−24 s [6987966112421661000♠6.03 MeV]
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p
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3 He
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|
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5 Li
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3
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2
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7000501254000000000♠5.01254(5)
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6978370000000000000♠37(3)×10−23 s [~6987240326473050000♠1.5 MeV]
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p
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4 He
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3/2−
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|
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6 Li
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3
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3
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7000601512279500000♠6.015122795(16)
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稳定
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1+
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0.0485(171)
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[6998190000000000000♠0.019, 6998780000000000000♠0.078]
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7 Li [n 4]
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3
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4
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7000701600455000000♠7.01600455(8)
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穩定
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3/2−
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0.9515(171)
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[6999922000000000000♠0.922, 6999981000000000000♠0.981]
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8 Li
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3
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5
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7000802248736000000♠8.02248736(10)
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6999840299999999999♠840.3(9) ms
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β−
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8 Be [n 5]
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2+
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9 Li
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3
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6
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7000902678950000000♠9.0267895(21)
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6999178300000000000♠178.3(4) ms
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β−, n (50.8%)
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8 Be [n 6]
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3/2−
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β− (49.2%)
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9 Be
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10 Li
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3
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7
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7001100354810000000♠10.035481(16)
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6979199999999999999♠2.0(5)×10−21 s [6987192261178440000♠1.2(3) MeV]
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n
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9 Li
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(1−,2−)
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10m1 Li
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6986320435297400000♠200(40) keV
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6979370000000000000♠3.7(15)×10−21 s
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1+
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10m2 Li
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6986769044713760000♠480(40) keV
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6979135000000000000♠1.35(24)×10−21 s
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2+
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11 Li [n 7]
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3
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8
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7001110437980000000♠11.043798(21)
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6997875000000000000♠8.75(14) ms
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β−, n (84.9%)
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10 Be
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3/2−
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β− (8.07%)
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11 Be
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β−, 2n (4.1%)
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9 Be
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β−, 3n (1.9%)
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8 Be [n 8]
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β−, α (1.0%)
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7 He , 4 He
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β−, SF (.014%)
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8 Li , 3 H
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β−, SF (.013%)
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9 Li , 2 H
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12 Li
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3
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9
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7001120537800000000♠12.05378(107)#
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<6992100000000000000♠10 ns
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n
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11 Li
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13 Li [7]
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3
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10
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(13)#
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註釋
- ^ 畫上#號的數據代表沒有經過實驗的証明,僅為理論推測。
- ^ 2.0 2.1 2.2 2.3 用括號括起來的數據代表不確定性。
- ^ 穩定的衰變產物以粗體表示。
- ^ Produced in 太初核合成
- ^ Immediately decays into two 4He atoms for a net reaction of 8Li → 24He + e−
- ^ Immediately decays into two 4He atoms for a net reaction of 9Li → 24He + 1n + e−
- ^ Has 2 halo neutrons
- ^ Immediately decays into two 4He atoms for a net reaction of 11Li → 24He + 31n + e−
參考文獻
- ^ Meija, Juris; et al. Atomic weights of the elements 2013 (IUPAC Technical Report). Pure and Applied Chemistry. 2016, 88 (3): 265–91. doi:10.1515/pac-2015-0305.
- ^ Mao-Yong He, Chong-Guang Luo, Hong-Jun Yang, Fan-Cui Kong, Yu-Long Li, Li Deng, Xi-Ying Zhang, Kai-Yuan Yang,
Sources and a proposal for comprehensive exploitation of lithium brine deposits in the Qaidam Basin on the northern Tibetan Plateau, China: Evidence from Li isotopes,
Ore Geology Reviews,
Volume 117,
2020,
103277,
ISSN 0169-1368,
https://doi.org/10.1016/j.oregeorev.2019.103277.
(https://www.sciencedirect.com/science/article/pii/S0169136819304925)
- ^ Universal Nuclide Chart. Nucleonica. [2012-09-27]. (原始内容存档于2017-02-19).
- ^ Kondev, F. G.; Wang, M.; Huang, W. J.; Naimi, S.; Audi, G. The NUBASE2020 evaluation of nuclear properties (PDF). Chinese Physics C. 2021, 45 (3): 030001. doi:10.1088/1674-1137/abddae.
- ^ Atomic Weight of Lithium. ciaaw.org. [2021-10-21]. (原始内容存档于2021-09-19).
- ^ Isotopes of Lithium. [20 October 2013]. (原始内容存档于2018-01-03).
- ^ Brookhaven National Laboratory Interactive Table of Nuclides (页面存档备份,存于互联网档案馆) nndc.bnl.gov [2015-9-14]
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穩定9個
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穩定6個
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穩定5個
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穩定4個
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穩定3個
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穩定2個
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穩定1個
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1億年〜
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1万年〜
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10年〜
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100日〜
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1日〜
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1時〜
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10分〜
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1分〜
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10秒〜
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1秒〜
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不到1秒
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幻數
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穩定9個
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穩定6個
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穩定5個
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穩定4個
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穩定3個
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穩定2個
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穩定1個
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1億年〜
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1万年〜
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10年〜
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100日〜
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1日〜
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1時〜
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10分〜
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1分〜
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10秒〜
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1秒〜
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不到1秒
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幻數
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