Nanostructures in Ferroelectric Films for Energy Applications: Domains, Grains, Interfaces and Engineering Methods
暫譯: 能量應用中的鐵電薄膜納米結構:領域、晶粒、界面與工程方法

Ouyang, Jun

  • 出版商: Elsevier Science
  • 出版日期: 2019-06-07
  • 售價: $8,890
  • 貴賓價: 9.5$8,446
  • 語言: 英文
  • 頁數: 386
  • 裝訂: Quality Paper - also called trade paper
  • ISBN: 0128138564
  • ISBN-13: 9780128138564
  • 海外代購書籍(需單獨結帳)

商品描述

Nanostructures in Ferroelectric Films for Energy Applications: Grains, Domains, Interfaces and Engineering Methods presents methods of engineering nanostructures in ferroelectric films to improve their performance in energy harvesting and conversion and storage. Ferroelectric films, which have broad applications, including the emerging energy technology, usually consist of nanoscale inhomogeneities. For polycrystalline films, the size and distribution of nano-grains determines the macroscopic properties, especially the field-induced polarization response. For epitaxial films, the energy of internal long-range electric and elastic fields during their growth are minimized by formation of self-assembled nano-domains. This book is an accessible reference for both instructors in academia and R&D professionals.

  • Provides the necessary components for the systematic study of the structure-property relationship in ferroelectric thin film materials using case studies in energy applications
  • Written by leading experts in the research areas of piezoelectrics, electrocalorics, ferroelectric dielectrics (especially in capacitive energy storage), ferroelectric domains, and ferroelectric-Si technology
  • Includes a well balanced mix of theoretical design and simulation, materials processing and integration, and dedicated characterization methods of the involved nanostructures

商品描述(中文翻譯)

用於能源應用的鐵電薄膜中的奈米結構:晶粒、區域、界面及工程方法》介紹了在鐵電薄膜中工程奈米結構的方法,以提高其在能量收集、轉換和儲存方面的性能。鐵電薄膜具有廣泛的應用,包括新興的能源技術,通常由奈米尺度的不均勻性組成。對於多晶薄膜,奈米晶粒的大小和分佈決定了宏觀性質,特別是場誘導的極化響應。對於外延薄膜,在其生長過程中,內部長程電場和彈性場的能量通過自組裝奈米區域的形成而最小化。本書是學術界講師和研發專業人員的可及參考資料。

- 提供系統研究鐵電薄膜材料中結構-性質關係所需的必要組件,並使用能源應用的案例研究
- 由壓電材料、電熱材料、鐵電介質(特別是在電容能量儲存方面)、鐵電區域和鐵電-矽技術研究領域的領先專家撰寫
- 包含理論設計與模擬、材料加工與整合,以及涉及的奈米結構的專門表徵方法的良好平衡組合