期刊文献+

低能离子束辐照植物样品质量损失研究 被引量:3

MASS LOSS OF BOTANIC SAMPLES INDUCED BY LOW ENERGY N^+ IONS IRRADIATION
下载PDF
导出
摘要 采用50 keV的N+对100 滋m厚的芸豆切片和75 滋m厚的Mylar(聚乙烯对苯二酸酯)高分子膜辐照,辐照剂量从1×1015 ions/cm2到1×1017 ions/cm2。利用高灵敏度的天平测量样品辐照前后的质量,得到了辐照后样品的质量变化。结果表明,当离子剂量大于3×1016 ions/cm2时,切片样品的质量明显减少,并且质量损失随辐照剂量增加而增加;但Mylar膜样品在辐照剂量达到7×1016 ions/cm2时仍没有测量出明显的质量变化。由测量的质量损失计算出50 keV的N离子轰击切片样品时溅射产额约为560 atoms/ion。结合植物样品的结构和分子组成特性对这种辐照引起的高溅射产额现象作了分析。 The exact mass of kidney bean slices and Mylar film was measured before and after the irradiation of 50 keV N + , with doses ranging from 1×10 15 ions/cm 2 to 1×10 17 ions/cm 2 . The result shows that the mass of kidney bean slices decreased 151 μ g/cm 2 with the dose of 3×10 16 ions/cm 2 , while the Mylar films did not show visible mass loss up to the dose of 7×10 16 ions/cm 2 . The obtained sputtering yield is about 560 atoms/ion, which is much larger than the simulated result using TRIM96 Code. This high-yield sputtering phenomenon was explained according to the intrinsic structure and composition of botanic samples.
出处 《生物物理学报》 CAS CSCD 北大核心 2003年第2期189-192,共4页 Acta Biophysica Sinica
基金 国家自然科学基金重大项目(198090300)
关键词 低能离子束辐照 植物样品 质量损失 解吸 溅射 Low Energy N^+ Irradiation Botanic Material Mass Loss Sputtering Desorption
  • 相关文献

参考文献15

  • 1卞坡,霍裕平,秦广雍,赵维娟,余增亮,王相勤,詹福如,余立祥.低能离子束刻蚀番茄果皮的α透射能谱研究[J].生物物理学报,1999,15(3):551-555. 被引量:15
  • 2刘峰,王宇钢,薛建明,王思学,陈江,吕钢,杜广华,颜莎,赵渭江.低能离子在植物样品中长程穿透行为的研究[J].生物物理学报,2002,18(1):117-121. 被引量:5
  • 3Yu ZL, Deng JG, He JJ. Mutation breeding by ion implantation[.I]. Nucl Instrum Meth B, 1991,59/60:705-708.
  • 4Yu ZL, Yang JB, Wu YJ, et al. Transferring gus gene into intact rice cells by low energy ion beam[J]. Nucl Instrum Meth B, 1993,80/81:1328-1328.
  • 5Yu ZL. Ion beam application in genetic modification[J]. IEEE Transaction Plasma Science, 2000,28:128-132.
  • 6Yu ZL. Cbinan nuclear science and technology report[R],CNIC-00746, China Nuclear Information Center, 1993.
  • 7Xia YY, Tan CY, Mu YG, et al. Energy spectra of He^+ ions penetrating thick biological targets[J]. Phys Leu A, 1999,256:205-211.
  • 8Xue JM, Wang YG, Liu F, et al. Study of the penetration behavior of energetic ions in botanic materials with transmission measurement[J]. Surf Coat Tech, 2000,128:139-143.
  • 9Eriksson J, Demirev P, Hakansson P, et al. Total yield and polar-angle distributions of biomolecules sputtered by fast heavy ions[J]. Phys Rev B, 1996,54:15025-15033.
  • 10Eriksson J, Kopniczky J, Brlnlcmalm G, et al. Heavy-ion-induced sputtering and cratering of biomolecular surfaces[J].Nucl Instrum Meth B, 1995,101:142-147.

二级参考文献19

共引文献18

同被引文献42

引证文献3

二级引证文献12

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部