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Hexagonal Prismatic Siloxanes Functionalized with Organosilyl Groups as Building Blocks of Nanoporous Materials.

Taiki HayashiMiharu KikuchiNanako MuraseTakamichi MatsunoNatsuhiko SugimuraKazuyuki KurodaAtsushi Shimojima
Published in: Chemistry (Weinheim an der Bergstrasse, Germany) (2024)
Utilization of well-defined siloxane molecules allows for the construction of functional siloxane-based nanoporous materials based on the molecular design. Herein, a novel class of siloxane-based porous materials is synthesized via cross-linking of dimethylsilyl- and dimethylvinylsilyl-functionalized cage siloxanes with double-6-ring (D6R) geometry. Compared with the conventional double-4-ring cage siloxane, this study highlights the characteristics of D6R siloxanes as building blocks, demonstrating their high surface area and chemical stability. Furthermore, density functional theory calculations show their unique cation encapsulation ability.
Keyphrases
  • density functional theory
  • molecular dynamics
  • metal organic framework
  • quantum dots
  • molecularly imprinted
  • molecular dynamics simulations
  • ionic liquid
  • high resolution