Chlorine Recognized as a New Element: Breakthrough in Paradigmatic Constraints (1774–1810)
- Corresponding author: Zhao Wei, 51397192@qq.com
Citation:
Gongjian Chen, Zhao Wei. Chlorine Recognized as a New Element: Breakthrough in Paradigmatic Constraints (1774–1810)[J]. University Chemistry,
;2026, 41(2): 420-428.
doi:
10.12461/PKU.DXHX202502081
Goldschmidt, V. M. Geochemistry. Oxford: Clarendon Press, 1958: 584.
Porter, G. Chlorine: an introduction. Pure and applied chemistry, 1996: 1683–1687.
Baldwin, R.T. J. Chem. Educ. 1927, 4 (3), 313.
Wisniak, J. Indian J. Chem. Technol. 2002, 9 (5), 450.
Scheele, C. W. Konig Vetensd Akad Stockholm 1774, 35, 89.
Partington, J. R. A History of Chemistry, Vol. 3. London: MacMillan, 1962: 493.
Lavoisier, A. L. Traite Elementaire de Chimie. Paris 1789, 5, 28.
Berthollet, C. L. Mem Acad Royale des Sciences. 1785, 276.
Henry, W. Phil Trans. 1800, 90, 188.
Henry, W. Phil Trans. 1812, 101, 238.
Wisniak, J. Chem Educator 2001, 6, 62.
Gay-Lussac, J. L.; Thenard, L. J. Mem Soc Arcueil 1809, (2), 295.
Davy, H. Phil Trans. 1809, 99, 231.
Davy, H. Phil Trans. 1810, 100, 450.
Davy, H. Phil Trans. 1811, 101, 155.
Berzelius, J. J. Thomsen’s Ann Phil. 1813, 2, 254.
Wisniak, J. Chem Educator 2000, 5, 343.
Greenwood, N. N.; Earnshaw, A. Chemistry of the elements. Reed Educational and Professional Publishing Ltd. 1997: 809.
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