Construction
of porous photoactive MOF-based composite systems
is regarded as one of the most effective strategies to improve light
harvesting, increase the surface area, provide plenty of exposed active
sites, and promote the reduction and oxidation abilities of some organic
photocatalytic reactions. Herein, we synthesized porous CdS@Zr-MOF
photocatalysts based on the representative photocatalyst CdS and crystalline
Zr-MOFs, such as MOF-808, NU-1000, and PCN-222, to illustrate their
excellent photocatalytic performance for the synthesis of imines in
air. The morphology and composition of these photocatalysts were investigated
by X-ray powder diffraction (XRD), inductively coupled plasma-atomic
emission spectrometry (ICP-AES), scanning electron microscopy (SEM),
transmission electron microscopy (TEM), and X-ray photoelectron spectroscopy
(XPS), indicating their crystallinity, high porosity, and interfacial
interaction between constituents. Compared with individual components,
these porous CdS@Zr-MOF composites could remarkably promote photocatalytic
activity for the oxidative coupling of amines under air and visible-light
conditions. The photocatalytic reaction showed broad substrate suitability.
More importantly, the conversion yield reached up to 95% for the inactive
aliphatic amines, and imines were formed as the single product. The
improvement of the photocatalytic performance of CdS@Zr-MOF composites
can be mainly ascribed to their high surface areas, more exposed active
sites, excellent dispersion of CdS, and special porous photocatalytic
systems, which tune the band gap, broaden the light response range,
and facilitate the carrier separation.
Porous two-dimensional metal-organic frameworks (2D-MOFs) nanosheets Zr-BTB-H4TBAPy and PCN-134-2D were synthesized and characterized by X-ray diffraction (XRD), N2 adsorption-desorption, scanning electron microscope (SEM), transmission electron microscopy (TEM), atomic force microscope...
Herein, a series of crystalline Z-scheme photocatalytic heterojunctions BiOI@PCN-222 (BP-X, X donates Zr6:Bi, X = 1, 3 and 5) is constructed by highly dispersed integration of BiOI into the channel...
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