Themed collection Spotlight Collection: 2D Materials Chemistry

21 items
Perspective

Two-dimensional materials as solid-state nanopores for chemical sensing

The advances of 2D materials such as graphene, MoS2 and 2D MOF nanosheets as solid-state nanopores for analyzing biomolecules are discussed.

Graphical abstract: Two-dimensional materials as solid-state nanopores for chemical sensing
From the themed collection: 2021 Frontier and Perspective articles
Perspective

Recent progress on pristine two-dimensional metal–organic frameworks as active components in supercapacitors

Recent progress on 2D conductive MOFs and 2D layered MOFs containing pillar-layered MOFs and 2D nanosheets as electrode materials in SCs is reviewed, including synthetic design strategies, electrochemical performances, and working mechanisms.

Graphical abstract: Recent progress on pristine two-dimensional metal–organic frameworks as active components in supercapacitors
From the themed collection: Dalton Transactions up-and-coming articles
Communication

Two-dimensional metal–organic layers constructed from Hf6/Hf12-oxo clusters and a trigonal pyramidal phosphine oxide ligand

A novel free-standing MOL was synthesized with an unexpected structure containing alternative Hf6-oxo and Hf12-oxo clusters as SBUs and the tris(4-carboxylphenyl)phosphine oxide (TPO) ligand.

Graphical abstract: Two-dimensional metal–organic layers constructed from Hf6/Hf12-oxo clusters and a trigonal pyramidal phosphine oxide ligand
From the themed collection: Spotlight Collection: 2D Materials Chemistry
Paper

Tailoring spin waves in 2D transition metal phosphorus trichalcogenides via atomic-layer substitution

We investigated Janus 2D transition metal phosphorus trichalcogenides and their potential for magnonic applications.

Graphical abstract: Tailoring spin waves in 2D transition metal phosphorus trichalcogenides via atomic-layer substitution
From the themed collection: Spotlight Collection: 2D Materials Chemistry
Open Access Paper

Influence of Fe-clustering on the water oxidation performance of two-dimensional layered double hydroxides

The role of Fe-clustering on the OER performance of MgFe layered double hydroxides has been investigated. Low clustering improves the electrocatalysis using Ni foam electrodes, alerting about hidden electrode collector-electrocatalyst interactions.

Graphical abstract: Influence of Fe-clustering on the water oxidation performance of two-dimensional layered double hydroxides
From the themed collection: Spotlight Collection: 2D Materials Chemistry
Paper

A fluorinated 2D magnetic coordination polymer

Herein we show the versatility of coordination chemistry to design and expand a family of 2D materials by incorporating F groups at the surface of the layers.

Graphical abstract: A fluorinated 2D magnetic coordination polymer
From the themed collection: Spotlight Collection: 2D Materials Chemistry
Paper

Uranyl phosphonates: crystalline materials and nanosheets for temperature sensing

Uranyl phosphonates 1 and 2 were exfoliated into nanosheets of two-layer thickness and further forming 1-ns@PMMA and 2-ns@PMMA composite films. The luminescence of 1, 2 and 2-ns@PMMA is highly temperature sensitive, and can be used as thermometer.

Graphical abstract: Uranyl phosphonates: crystalline materials and nanosheets for temperature sensing
From the themed collection: Spotlight Collection: 2D Materials Chemistry
Paper

Molecular stabilization of chemically exfoliated bare MnPS3 layers

MnPS3 has been chemically exfoliated in solution as bare flakes and stabilized with capping agents, optimizing stability and catalytic activity.

Graphical abstract: Molecular stabilization of chemically exfoliated bare MnPS3 layers
From the themed collection: Spotlight Collection: 2D Materials Chemistry
Paper

A new cobalt(II) complex nanosheet as an electroactive medium for plasmonic switching on Au nanoparticles

A new electroactive bottom-up nanosheet is constructed by the coordination between a terpyridine ligand and Co(II) ions through a facile interface-assisted synthesis. By applying it as a medium material, the LSPR switching on Au NPs is achieved.

Graphical abstract: A new cobalt(ii) complex nanosheet as an electroactive medium for plasmonic switching on Au nanoparticles
From the themed collection: Spotlight Collection: 2D Materials Chemistry
Paper

Reduced graphene oxide-decorated CdS/ZnO nanocomposites for photoreduction of hexavalent chromium and photodegradation of methylene blue

Graphene oxide decorated CdS and ZnO nanocomposites for waste water treatment and their plausible mechanism for photo-degradation and photo-reduction.

Graphical abstract: Reduced graphene oxide-decorated CdS/ZnO nanocomposites for photoreduction of hexavalent chromium and photodegradation of methylene blue
From the themed collection: Spotlight Collection: 2D Materials Chemistry
Paper

Periodic charge matching driven immobilization of gentamicin in nanoclays for stable and long-term antibacterial coating

Gentamicin was stabilized in a bentonite clay via periodic charge–charge interaction and was successfully incorporated into a polymer film for long-term sustained antibacterial coating.

Graphical abstract: Periodic charge matching driven immobilization of gentamicin in nanoclays for stable and long-term antibacterial coating
From the themed collection: Spotlight Collection: 2D Materials Chemistry
Paper

A comparative study of honeycomb-like 2D π-conjugated metal–organic framework chemiresistors: conductivity and channels

Honeycomb-like 2D π-conjugated conductive metal–organic framework gas sensors with channel sizes <2 nm and broad conductivity range are studied with low conductivity facilitating response, multi-porosity and short channel resulting in fast speed.

Graphical abstract: A comparative study of honeycomb-like 2D π-conjugated metal–organic framework chemiresistors: conductivity and channels
From the themed collection: Spotlight Collection: 2D Materials Chemistry
Paper

Thin ZIF-8 nanosheets synthesized in hydrophilic TRAPs

Several nm thick ZIF-8 nanosheets can be synthesized from multiple hydrophilic precursors in the hydrophilic space inside bilayers in a decane solution of the amphiphile Brij L4.

Graphical abstract: Thin ZIF-8 nanosheets synthesized in hydrophilic TRAPs
From the themed collection: Spotlight Collection: 2D Materials Chemistry
Open Access Paper

Hybrid MoS2/PEDOT:PSS transporting layers for interface engineering of nanoplatelet-based light-emitting diodes

The incorporation of MoS2 nanosheets in well-known PEDOT:PSS water solution, and used as a hole transporting layer in nanocrystal light-emitting diodes, works as a performance booster in unpackaged devices under ambient conditions.

Graphical abstract: Hybrid MoS2/PEDOT:PSS transporting layers for interface engineering of nanoplatelet-based light-emitting diodes
From the themed collection: Spotlight Collection: 2D Materials Chemistry
Paper

Two-dimensional MAX-derived titanate nanostructures for efficient removal of Pb(II)

Two-dimensional (2D) nanomaterials have been identified as one of the promising materials due to their great promise for waste treatment.

Graphical abstract: Two-dimensional MAX-derived titanate nanostructures for efficient removal of Pb(ii)
From the themed collection: Spotlight Collection: 2D Materials Chemistry
Paper

Two-dimensional porous cuprous oxide nanoplatelets derived from metal–organic frameworks (MOFs) for efficient photocatalytic dye degradation under visible light

Two-dimensional porous N-doped Cu2O/carbon nanoplatelets derived from metal–organic frameworks (MOFs) exhibited very high photocatalytic activity for dye degradation under visible light.

Graphical abstract: Two-dimensional porous cuprous oxide nanoplatelets derived from metal–organic frameworks (MOFs) for efficient photocatalytic dye degradation under visible light
From the themed collection: Spotlight Collection: 2D Materials Chemistry
Paper

Neutral ligand TIPA-based two 2D metal–organic frameworks: ultrahigh selectivity of C2H2/CH4 and efficient sensing and sorption of Cr(VI )

Two 2D porous frameworks are synthesized base on tri(4-imidazolylphenyl)amine. Compound 1 exhibits that the ultrahigh selectivity of C2H2/CH4, the highest one reported to date. Compound 2 combines the ultrahigh sensitivity and trapping for Cr2O72− in aqueous solution.

Graphical abstract: Neutral ligand TIPA-based two 2D metal–organic frameworks: ultrahigh selectivity of C2H2/CH4 and efficient sensing and sorption of Cr(vi )
From the themed collection: Spotlight Collection: 2D Materials Chemistry
Paper

Few-layered MoSe2 nanosheets as an advanced electrode material for supercapacitors

Few-layered MoSe2 nanosheets are synthesized via a facile hydrothermal method. A symmetric two-electrode device consisting of MoSe2 nanosheets showed enhanced performance and good capacitance retention over 10 000 cycles.

Graphical abstract: Few-layered MoSe2 nanosheets as an advanced electrode material for supercapacitors
From the themed collection: Spotlight Collection: 2D Materials Chemistry
Paper

Effect of flexible bis-pyridyl-bis-amide ligands and dicarboxylates on the assembly and properties of multifunctional Cu(II) metal–organic coordination polymers

Seven Cu(II) coordination polymers based on flexible bis-pyridyl-bis-amide and aromatic dicarboxylate mixed ligands have been synthesized. The properties of complexes 1–7 have also been investigated..

Graphical abstract: Effect of flexible bis-pyridyl-bis-amide ligands and dicarboxylates on the assembly and properties of multifunctional Cu(ii) metal–organic coordination polymers
From the themed collection: Spotlight Collection: 2D Materials Chemistry
Paper

Layered inorganic–organic frameworks based on the 2,2-dimethylsuccinate ligand: structural diversity and its effect on nanosheet exfoliation and magnetic properties

A family of layered frameworks has been created in which the topological diversity affects the size of nanosheets obtained by exfoliation; their layered structures support strongly coupled two-dimensional antiferromagnets.

Graphical abstract: Layered inorganic–organic frameworks based on the 2,2-dimethylsuccinate ligand: structural diversity and its effect on nanosheet exfoliation and magnetic properties
From the themed collection: Spotlight Collection: 2D Materials Chemistry
Paper

2D Coordination polymers of macrocyclic oxamide with polycarboxylates: syntheses, crystal structures and magnetic properties

Five coordination polymers: CoCu (1), MnNi (2), Cu2 (3), Mn6Ni6 (4), Cu2 (5) have been synthesized, structurally determined and magnetically studied.

Graphical abstract: 2D Coordination polymers of macrocyclic oxamide with polycarboxylates: syntheses, crystal structures and magnetic properties
From the themed collection: Spotlight Collection: 2D Materials Chemistry
21 items

About this collection

Two-dimensional (2D) materials have fascinated scientists for more than a decade. While most work has been devoted to inorganic systems, there has been a distinct increase in metal-organic 2D materials. This themed collection will provide a brief overview of the latest developments of the inorganic and metal-organic 2D materials. It covers everything from synthetic strategies, chemical design, the variety of electronic, chemical and optical properties to applications in catalysis, sensors, energy storage and conversion, electronics and other related areas.

This collection is guest edited by Dalton Transactions Associate Editor Li-Min Zheng (Nanjing University) alongside Eugenio Coronado (University of Valencia) and Hua Zhang (City University of Hong Kong).

Articles will be added to this themed collection as soon as possible after they are published. Please return to this page frequently to see the collection grow.

If you would like to contribute an article to this collection, please contact the Editorial Office at dalton-rsc@rsc.org with your proposed topic.

Spotlight

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