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Multiple rotational rates in a guest-loaded, amphidynamic zirconia metal-organic framework.
Torres-Huerta, Aaron; Galicia-Badillo, Dazaet; Aguilar-Granda, Andrés; Bryant, Jacob T; Uribe-Romo, Fernando J; Rodríguez-Molina, Braulio.
Afiliação
  • Torres-Huerta A; Instituto de Química, Universidad Nacional Autónoma de México, Circuito Exterior, Ciudad Universitaria 04510 Ciudad de México Mexico brodriguez@iquimica.unam.mx.
  • Galicia-Badillo D; Instituto de Química, Universidad Nacional Autónoma de México, Circuito Exterior, Ciudad Universitaria 04510 Ciudad de México Mexico brodriguez@iquimica.unam.mx.
  • Aguilar-Granda A; Instituto de Química, Universidad Nacional Autónoma de México, Circuito Exterior, Ciudad Universitaria 04510 Ciudad de México Mexico brodriguez@iquimica.unam.mx.
  • Bryant JT; Department of Chemistry and Renewable Energy and Chemical Transformations Cluster, University of Central Florida 4111 Libra Drive, Room 251 PSB 32816-2366 Orlando Florida USA fernando@ucf.edu.
  • Uribe-Romo FJ; Department of Chemistry and Renewable Energy and Chemical Transformations Cluster, University of Central Florida 4111 Libra Drive, Room 251 PSB 32816-2366 Orlando Florida USA fernando@ucf.edu.
  • Rodríguez-Molina B; Instituto de Química, Universidad Nacional Autónoma de México, Circuito Exterior, Ciudad Universitaria 04510 Ciudad de México Mexico brodriguez@iquimica.unam.mx.
Chem Sci ; 11(42): 11579-11583, 2020 Sep 24.
Article em En | MEDLINE | ID: mdl-34094404
Amphidynamic motion in metal-organic frameworks (MOFs) is an intriguing emergent property, characterized by high rotational motion of the phenylene rings that are embedded within an open, rigid framework. Here, we show how the phenylene rings in the organic linkers of the water stable MOF PEPEP-PIZOF-2 exhibit multiple rotational rates as a result of the electronic structure of the linker, with and without the presence of highly interacting molecular guests. By selective 2H enrichment, we prepared isotopologues PIZOF-2d4 and PIZOF-2d8 and utilized solid-state 13C and 2H NMR to differentiate the dynamic behavior of specific phenylenes in the linker at room temperature. A difference of at least one order of magnitude was observed between the rates of rotation of the central and outer rings at room temperature, with the central phenylene ring, surrounded by ethynyl groups, undergoing ultrafast 180° jumps with frequencies higher than 10 MHz. Moreover, loading tetracyanoquinodimethane (TCNQ) within the pores produced significant changes in the MOF's electronic structure, but very small changes were observed in the rotational rates, providing an unprecedented insight into the effects that internal dynamics have on guest diffusion. These findings would help elucidate the in-pore guest dynamics that affect transport phenomena in these highly used MOFs.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2020 Tipo de documento: Article