Assembled Lanthanide Complexes with Advanced Photophysical Properties
暫譯: 組裝的鑭系金屬複合物及其先進的光物理特性

Hirai, Yuichi

  • 出版商: Springer
  • 出版日期: 2019-02-01
  • 售價: $4,990
  • 貴賓價: 9.5$4,741
  • 語言: 英文
  • 頁數: 124
  • 裝訂: Quality Paper - also called trade paper
  • ISBN: 9811342776
  • ISBN-13: 9789811342776
  • 海外代購書籍(需單獨結帳)

商品描述

This thesis provides essential information on the systematic design of assembled lanthanide complexes for functional luminescent materials. It discusses the relationships between assembled structures and photo, thermal, and mechanical properties on the basis of crystallography, spectroscopy, and thermodynamics. The described guidelines for assembled structures will be extremely valuable, both for industrial applications and for readers' fundamental understanding of solid-state photophysics and materials chemistry.

Luminescent lanthanide complexes are promising candidates for lighting devices, lasers, and bio-probes owing to their line-like and long-lived emission arising from characteristic 4f-4f transitions. Low-vibrational and asymmetrical coordination structures around lanthanide ions have been introduced to achieve strong luminescence, using specific organic ligands. Recently, assembled lanthanide complexes including coordination polymers and metal organic frameworks have increasingly attracted attention as a new class of luminescent materials offering thermal stability and color tunability. However, improving the luminescence efficiencies of these compounds remains a challenge, and specific molecular designs to control assembled structures and yield additional physical properties have not been established. The author provides a group of bent-angled bridging ligands to boost photoluminescence efficiency, and successfully introduces for the first time glass formability and strong triboluminescence properties.

商品描述(中文翻譯)

這篇論文提供了有關組裝鑭系金屬配合物系統設計的基本資訊,以用於功能性發光材料。它基於結晶學、光譜學和熱力學,討論了組裝結構與光學、熱學和機械性質之間的關係。所描述的組裝結構指導將對工業應用以及讀者對固態光物理學和材料化學的基本理解極具價值。

發光鑭系金屬配合物因其特有的4f-4f躍遷所產生的線狀和長壽命的發射,成為照明設備、激光器和生物探針的有前景候選者。為了實現強發光,已引入低振動和不對稱的配位結構,並使用特定的有機配體。最近,組裝鑭系金屬配合物,包括配位聚合物和金屬有機框架,作為一類新型發光材料,因其熱穩定性和顏色可調性而受到越來越多的關注。然而,提升這些化合物的發光效率仍然是一個挑戰,尚未建立特定的分子設計來控制組裝結構並產生額外的物理性質。作者提供了一組彎角橋接配體,以提高光致發光效率,並首次成功引入了玻璃成形性和強摩擦發光性質。