Dynamic Processes on Solid Surfaces
暫譯: 固體表面的動態過程
Tamaru, Kenzi
- 出版商: Springer
- 出版日期: 2013-05-30
- 售價: $6,660
- 貴賓價: 9.5 折 $6,327
- 語言: 英文
- 頁數: 357
- 裝訂: Quality Paper - also called trade paper
- ISBN: 1489916385
- ISBN-13: 9781489916389
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商品描述
When we see a jumbo jet at the airport, we sometimes wonder how such a huge, heavy plane can fly high in the sky. To the extent that we think in a static way, it is certainly not understandable. In such a manner, dynamics yields behavior quite different from statics. When we want to prepare an iron nitride, for example, one of the most orthodox ways is to put iron in a nitrogen atmosphere under pressures higher than the dissociation pressure of the iron nitride at temperatures sufficiently high to let the nitrogen penetrate into the bulk iron. This is the way thermodynamics tells us to proceed, which requires an elaborate, expensive high-pressure apparatus, sophisticated techniques, and great efforts. However, if we flow ammonia over the iron, even under low pressures, we can easily prepare the nitride-provided the hydrogen pressure is sufficiently low. Since the nitrogen desorption rate is the determining step of the ammonia decomposition on the iron surface, the virtual pressure of nitrogen at the surface can reach an extremely high level (as is generally accepted) because, in such a dynamic system, the driving force of the ammonia decomposition reaction pushes the nitrogen into the bulk iron to form the nitride. Thus, dynamics is an approach considerably different from statics.
商品描述(中文翻譯)
當我們在機場看到一架大型噴射機時,有時會想這麼大、這麼重的飛機是如何能夠飛得這麼高的。從靜態的角度來看,這確實是難以理解的。因此,動力學所產生的行為與靜力學截然不同。例如,當我們想要製備氮化鐵時,最正統的方法之一是將鐵放置在氮氣氛中,並在高於氮化鐵解離壓力的壓力下,於足夠高的溫度下讓氮氣滲透進入鐵的內部。這是熱力學告訴我們的進行方式,這需要一套精密且昂貴的高壓設備、複雜的技術和大量的努力。然而,如果我們在鐵上流動氨氣,即使在低壓下,我們也可以輕鬆地製備氮化物,只要氫氣的壓力足夠低。由於氮的脫附速率是氨在鐵表面分解的決定性步驟,因此在這樣的動態系統中,氮在表面的虛擬壓力可以達到極高的水平(這是普遍接受的),因為氨分解反應的驅動力將氮推入鐵的內部以形成氮化物。因此,動力學是一種與靜力學相當不同的方法。