石墨
中尺度气象学
辐照
材料科学
退火(玻璃)
Crystal(编程语言)
化学物理
辐射
纳米-
纳米
热的
分子物理学
凝聚态物理
原子物理学
纳米技术
物理
热力学
核物理学
复合材料
气象学
程序设计语言
计算机科学
作者
M. I. Heggie,C. D. Latham
出处
期刊:The Royal Society of Chemistry eBooks
[The Royal Society of Chemistry]
日期:2011-06-21
卷期号:: 377-413
被引量:1
标识
DOI:10.1039/bk9781849731331-00377
摘要
A rich variety of phenomena are observed when graphite is exposed to high doses of radiation from energetic particles. Most notably, the crystals expand along their c-axes, and dimension changes of tens of percent or even more are easily achieved. There are significant changes to the thermal and electrical properties of the material as well. When irradiation occurs below about 400 K, energy accumulates in the material, and the amount can be large in proportion to the specific heat. Known as Wigner energy, this is released by annealing, and is accompanied by a partial reversal of the initial changes, including conservation of the crystal volume. Nevertheless, the original dimensions of the crystals are not restored. The origins of this behaviour are spread over the atomic, nanometre, and mesoscale. They lie in the generation of Frenkel pairs and, we argue, dislocations. Models based on density functional theory provide insight into the likely nature and evolution of the defect structure during and after radiation.
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