Citation:
Bai Xin, Lyu Mengjia, Wang Hanxu. The Pioneer of Isotope Tracer Method-George de Hevesy[J]. Chemistry,
;2017, 80(6): 593-599.
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The time from the late nineteenth to the early twentieth century was an important period in the development of physical chemistry and biochemistry. It was a time when the isotope tracer method received many achievements in a series of tracer experiments. It was Hungarian Swiss chemist George de Hevesy (1885-1966) who applied tracer technology to the field of biology. And his invention of the isotope tracer method made him receive the 1943 Nobel Prize in Chemistry. This paper introduces the life and academic experience of Hevesy which reflects that the growth of Hevesy is inseparable from the academic exchanges with many European scientists at the time.
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Keywords:
- Hevesy,
- The radioactive tracer method,
- Hafnium,
- The Nobel Prize
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[1]
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[2]
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[3]
G de Hevesy. Triangle:Sandoz J. Med. Sci., 1962, 6:260~264.
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[4]
G de Hevesy. Selected Papers of George Hevesy. London:Pergamon Press, 1967:1~19.
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[5]
G de Hevesy. Potassium Interchange in the Human Body. Acta Physiol. Scand., 1941, 3:123~131.
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[6]
J D Cockcroft. Biographical Memoirs of Fellows of the Royal Society, 1967, 7:123~165.
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[1]
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