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Indium-Organic Framework with soc Topology as a Versatile Catalyst for Highly Efficient One-Pot Strecker Synthesis of α-aminonitriles.

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TLDR
In this paper, an In(III)-based metal-organic framework (MOF) with soc topology was constructed from the trigonal prismatic [In3(μ3-O)(H2O)3(O2C-)6] secondary building unit (SBU) and a custom-designed tetratopic linker H4pbpta (pbpta = 4,4',4″,4‴-(1,4-phenylenbis(pyridine-4,2,6-triyl))-tetrabenzoic acid
Abstract
An In(III) based metal-organic framework (MOF), In-pbpta, with soc topology was constructed from the trigonal prismatic [In3(μ3-O)(H2O)3(O2C-)6] secondary building unit (SBU) and a custom-designed tetratopic linker H4pbpta (pbpta = 4,4',4″,4‴-(1,4-phenylenbis(pyridine-4,2,6-triyl))-tetrabenzoic acid)). The obtained MOF shows a Brunauer-Emmett-Teller surface area of 1341 m2/g with a pore volume of 0.64 cm3/g, which is the highest among the scarcely reported In-soc-MOFs. The constructed MOF demonstrates excellent performance as a heterogeneous Lewis acid catalyst for highly efficient conversion in a one-pot multicomponent Strecker reaction for the preparation of α-aminonitriles under solvent-free conditions, which can be easy to separate and recycle without significant loss of activity for up to seven cycles. The computational modeling studies suggest the presence of the three substrates in close vicinity to the In-oxo cluster. The strong interactions of the aldehyde/ketone and the amine with the In-oxo cluster together with the readily available cyanide ion around the In-oxo cluster lead to high catalytic conversion within a short period of time for the MOF catalyst. Our work therefore lays a foundation to develop MOF as a new class of efficient heterogeneous catalyst for one-pot Strecker reaction.

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Fluorine-Functionalized NbO-Type {Cu2}-Organic Framework: Enhanced Catalytic Performance on the Cycloaddition Reaction of CO2 with Epoxides and Deacetalization-Knoevenagel Condensation.

TL;DR: In this article , the authors proposed a new solution for developing high-efficiency heterogeneous catalysts, which not only improves the functionalization strategies for nanoporous metal-organic frameworks, but also enriches the functionalisation strategies of nanoporous MOFs by introducing a strong Lewis basic group of fluorine.
Journal ArticleDOI

Nanocage-Based Tb3+-Organic Framework for Efficiently Catalyzing the Cycloaddition Reaction of CO2 with Epoxides and Knoevenagel Condensation.

TL;DR: In this article , a combination of [Tb4(μ2-OH)2(CO2)8] cluster and 2,6-bis(2,4-dicarboxylphenyl)-4-(4-carboxyl phenyl)pyridine (H5BDCP) ligand generated a highly robust nanoporous framework of {[Tb 4(BDCP]2]·3DMF·5H2O}n (NUC-58), in which each four clusters are woven together to generate an elliptical nanocage.
Journal ArticleDOI

Nanochannel {InZn}-Organic Framework with a High Catalytic Performance on CO2 Chemical Fixation and Deacetalization-Knoevenagel Condensation.

TL;DR: In this article, the rare combination of InIII 5p and ZnII 3d in the presence of a structure-oriented TDP6-ligand led to a robust hybrid material of {(Me2NH2)[InZn(TDP)(OH2)]·4DMF·4H2O}n (NUC-42) with the interlaced hierarchical nanochannels (hexagonal and cylindrical) shaped by six rows of undocumented [In Zn(CO2)6(OH 2)] clusters, which represented the first
Journal ArticleDOI

Anthraquinone-Based Metal-Organic Frameworks as a Bifunctional Photocatalyst for C-H Activation.

TL;DR: This bifunctional heterogeneous photocatalytic platform based on a heterogeneous MOF provides an available catalytic avenue to develop a scalable and sustainable synthetic strategy using green and sustainable oxygen as the potent oxidant.
Journal ArticleDOI

Unveiling the Unique Roles of Metal Coordination and Modulator in the Polymorphism Control of Metal-Organic Frameworks.

TL;DR: In this paper, a series of thorium-organic frameworks (TOFs) with a range of polymorphs was constructed, where the O atom on the capping site of the nine-coordinated actinide cation Th4+ cation can function as a bridging unit to interconnect neighboring secondary building units.
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Journal ArticleDOI

The Design and Implementation of FFTW3

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