Themed collection Journal of Materials Chemistry A Lunar New Year collection 2022

50 items
Perspective

In-depth understanding of the energy loss and efficiency limit of dye-sensitized solar cells under outdoor and indoor conditions

This perspective thoroughly explores the energy loss factors in DSSCs and estimates the feasible efficiency of DSSCs under outdoor and indoor conditions, and compares it with the SQ limit of an ideal solar cell.

Graphical abstract: In-depth understanding of the energy loss and efficiency limit of dye-sensitized solar cells under outdoor and indoor conditions
Review Article

Nonfullerene acceptors for P3HT-based organic solar cells

Poly(3-hexylthiophene) (P3HT) is a promising donor for the large-scale organic solar cell fabrication in a cost-effective way. A series of nonfullerene acceptors compatible with P3HT are summarized in this review.

Graphical abstract: Nonfullerene acceptors for P3HT-based organic solar cells
Review Article

Advances of the top-down synthesis approach for high-performance silicon anodes in Li-ion batteries

A comprehensive review of low-cost top-down approaches to enhance the electrochemical performance of silicon anodes, including future research directions.

Graphical abstract: Advances of the top-down synthesis approach for high-performance silicon anodes in Li-ion batteries
Open Access Review Article

Tin oxide for optoelectronic, photovoltaic and energy storage devices: a review

Tin dioxide (SnO2) used in various applications due to suitable band gap and tunable conductivity. It has excellent thermal, mechanical and chemical stability.

Graphical abstract: Tin oxide for optoelectronic, photovoltaic and energy storage devices: a review
Open Access Review Article

Recent progress in self-healing polymers and hydrogels based on reversible dynamic B–O bonds: boronic/boronate esters, borax, and benzoxaborole

Reversible boronic ester-based polymers/hydrogels achieve cutting-edge biomedical applications including drug delivery, adhesion, bioimplants, healthcare monitoring by self-healing, injectability, biocompatibility, multi-responsiveness to stimuli.

Graphical abstract: Recent progress in self-healing polymers and hydrogels based on reversible dynamic B–O bonds: boronic/boronate esters, borax, and benzoxaborole
Review Article

Recent progress in aqueous zinc-ion batteries: a deep insight into zinc metal anodes

Aqueous zinc ion batteries (AZIBs) have recently sparked an enormous surge of research attention, due to their environmental benignity, natural abundance, negligible safety issue, and exceptional electrochemical performance.

Graphical abstract: Recent progress in aqueous zinc-ion batteries: a deep insight into zinc metal anodes
From the themed collection: 10th Anniversary: Dedicated Authors
Review Article

Recent advances in transition-metal-sulfide-based bifunctional electrocatalysts for overall water splitting

This review summarizes recent advances relating to transition metal sulfide (TMS)-based bifunctional electrocatalysts, providing guidelines for the design and fabrication of TMS-based catalysts for practical application in water electrolysis.

Graphical abstract: Recent advances in transition-metal-sulfide-based bifunctional electrocatalysts for overall water splitting
Review Article

Recent progress in the development of biomass-derived nitrogen-doped porous carbon

Synthesis of biomass-derived N-doped porous carbon for energy storage and catalysis applications is a sustainable and environmentally friendly approach.

Graphical abstract: Recent progress in the development of biomass-derived nitrogen-doped porous carbon
Review Article

Interface engineering of transitional metal sulfide–MoS2 heterostructure composites as effective electrocatalysts for water-splitting

Recent progress about transitional metal sulfide–MoS2 heterostructure composites are reviewed based on the view point of interface engineering.

Graphical abstract: Interface engineering of transitional metal sulfide–MoS2 heterostructure composites as effective electrocatalysts for water-splitting
Review Article

Porous evaporators with special wettability for low-grade heat-driven water desalination

Design of novel special wettable evaporators with robust stability for high-performances porous interface distillation.

Graphical abstract: Porous evaporators with special wettability for low-grade heat-driven water desalination
Communication

Trimetallic PtNiCo branched nanocages as efficient and durable bifunctional electrocatalysts towards oxygen reduction and methanol oxidation reactions

A trimetallic PtNiCo branched nanocage was fabricated via an etching process. The optimized electronic structure with Co and Ni accelerate the sluggish kinetic process in ORR and MOR with significantly catalytic enhancement and high durability.

Graphical abstract: Trimetallic PtNiCo branched nanocages as efficient and durable bifunctional electrocatalysts towards oxygen reduction and methanol oxidation reactions
From the themed collection: Journal of Materials Chemistry A HOT Papers
Communication

Revealing the asymmetric redox dynamics of a porous bismuth anode in an efficient Ni//Bi battery

A porous Bi electrode prepared by a chemical dealloying method shows asymmetric redox dynamics and contributes to an efficient Ni//Bi battery with high specific capacity, excellent rating performance and cycling stability.

Graphical abstract: Revealing the asymmetric redox dynamics of a porous bismuth anode in an efficient Ni//Bi battery
Communication

Concomitant shape and palladium engineering of hollow conjugated microporous photocatalysts to boost visible light-induced hydrogen evolution

Hollow conjugated microporous polymer photocatalysts bearing Pd nanoparticles were engineered to show visible light-induced HERs up to 7100 μmol h−1 g−1 and AQYs up to 3.72% (@420 nm).

Graphical abstract: Concomitant shape and palladium engineering of hollow conjugated microporous photocatalysts to boost visible light-induced hydrogen evolution
Communication

Direct synthesis of barium titanium oxyhydride for use as a hydrogen permeable electrode

Barium titanium oxyhydride BaTiO3−xHx with H/e mixed conductivity was directly synthesized by a mechanochemical method, and its function as a hydrogen permeable electrode was confirmed.

Graphical abstract: Direct synthesis of barium titanium oxyhydride for use as a hydrogen permeable electrode
Open Access Communication

Oriented growth of semiconducting TCNQ@Cu3(BTC)2 MOF on Cu(OH)2: crystallographic orientation and pattern formation toward semiconducting thin-film devices

Oriented film and pattern of TCNQ@Cu3(BTC)2(HKUST-1) fabricated via epitaxial growth exhibit anisotropic electrical properties toward MOF-based (flexible) thin-film smart device applications, such as transistors and thermoelectric thin films.

Graphical abstract: Oriented growth of semiconducting TCNQ@Cu3(BTC)2 MOF on Cu(OH)2: crystallographic orientation and pattern formation toward semiconducting thin-film devices
From the themed collection: Journal of Materials Chemistry A HOT Papers
Open Access Communication

Why is the O3 to O1 phase transition hindered in LiNiO2 on full delithiation?

The O1 phase transition is suppressed by Ni migration to tetrahedral sites in NiO2.

Graphical abstract: Why is the O3 to O1 phase transition hindered in LiNiO2 on full delithiation?
Communication

A programmable powerful and ultra-fast water-driven soft actuator inspired by the mutable collagenous tissue of the sea cucumber

Composition/dimensional adjustment of a bulk PNIPAAm-based water-driven soft actuator tuned actuation force/speed in wide ranges at maximum of 2 N and 3 s−1, respectively, demonstrating immediate potentials in soft robotics and biomedical appliance.

Graphical abstract: A programmable powerful and ultra-fast water-driven soft actuator inspired by the mutable collagenous tissue of the sea cucumber
Communication

Boosting reverse water-gas shift reaction activity of Pt nanoparticles through light doping of W

We report PtW solid-solution alloy nanoparticles (NPs) as a reverse water-gas shift (RWGS) reaction catalyst for the first time. Atomic-level alloying of Pt and W significantly enhanced the RWGS reaction activity of Pt NPs.

Graphical abstract: Boosting reverse water-gas shift reaction activity of Pt nanoparticles through light doping of W
Communication

Environmentally friendly thermoelectric sulphide Cu2ZnSnS4 single crystals achieving a 1.6 dimensionless figure of merit ZT

A record high dimensionless figure of merit ZT = 1.6 has been achieved in totally environmentally benign Cu2ZnSnS4 (CZTS) single crystal.

Graphical abstract: Environmentally friendly thermoelectric sulphide Cu2ZnSnS4 single crystals achieving a 1.6 dimensionless figure of merit ZT
Communication

Alkylthiol surface engineering: an effective strategy toward enhanced electrocatalytic N2-to-NH3 fixation by a CoP nanoarray

Building a hydrophobic self-assembled monolayer of octadecanethiol on a CoP nanoarray on a titanium mesh (C18@CoP/TM) greatly enhances the N2 reduction activity with an NH3 yield of 1.44 × 10−10 mol s−1 cm−2 and a FE of 14.03% in 0.1 M Na2SO4.

Graphical abstract: Alkylthiol surface engineering: an effective strategy toward enhanced electrocatalytic N2-to-NH3 fixation by a CoP nanoarray
Communication

Triboelectric energy harvesting using conjugated microporous polymer nanoparticles in polyurethane films

Conjugated microporous polymers offer potential as triboelectrification materials for triboelectric nanogenerators.

Graphical abstract: Triboelectric energy harvesting using conjugated microporous polymer nanoparticles in polyurethane films
From the themed collection: Journal of Materials Chemistry A HOT Papers
Open Access Communication

Computational design of a switchable heterostructure electrocatalyst based on a two-dimensional ferroelectric In2Se3 material for the hydrogen evolution reaction

The theoretical design of an ON–OFF switchable HER catalyst based on the two-dimensional ferroelectric material In2Se3 and transition metal cobalt.

Graphical abstract: Computational design of a switchable heterostructure electrocatalyst based on a two-dimensional ferroelectric In2Se3 material for the hydrogen evolution reaction
Communication

Soft template-mediated coupling construction of sandwiched mesoporous PPy/Ag nanoplates for rapid and selective NH3 sensing

We propose a facile soft template-mediated coupling construction strategy for one-step fabrication of sandwiched mesoporous PPy/Ag nanoplates at the liquid interface, and the hybrid showed great chemical sensing performance for NH3 gas.

Graphical abstract: Soft template-mediated coupling construction of sandwiched mesoporous PPy/Ag nanoplates for rapid and selective NH3 sensing
Communication

Atomic-thin hexagonal CuCo nanocrystals with d-band tuning for CO2 reduction

Hexagonal CuCo nanocrystals are exploited for CO2 reduction at high faradaic efficiency. Density functional theory calculates the structure-oriented binding energy of intermediates for catalyst optimization.

Graphical abstract: Atomic-thin hexagonal CuCo nanocrystals with d-band tuning for CO2 reduction
Communication

High-density monolithic pellets of double-sided graphene fragments based on zeolite-templated carbon

High-density and highly porous graphene-based pellets with anomalous gas densification property and glass-like hardness have been fabricated by using zeolite-templated carbon and reduced graphene oxide.

Graphical abstract: High-density monolithic pellets of double-sided graphene fragments based on zeolite-templated carbon
Communication

Semitransparent organic solar cells exhibiting 13.02% efficiency and 20.2% average visible transmittance

The PCEs of OSCs and AVTs of corresponding blend films can be continuously optimized by adjusting D18-Cl:Y6-1O ratios and introducing Y6 as the third component. 13.02% PCE and 20.2% AVT are achieved in the semitransparent ternary OSCs.

Graphical abstract: Semitransparent organic solar cells exhibiting 13.02% efficiency and 20.2% average visible transmittance
From the themed collection: Journal of Materials Chemistry A HOT Papers
Communication

Electrocatalytic hydrogen peroxide production in acidic media enabled by NiS2 nanosheets

NiS2 acts as an active and selective electrocatalyst for the two-electron O2 reduction reaction in acids, achieving a selectivity of up to 99% and a H2O2 yield rate of 109 ppm h−1. The catalytic mechanism is further investigated by theoretical calculations.

Graphical abstract: Electrocatalytic hydrogen peroxide production in acidic media enabled by NiS2 nanosheets
Communication

Order-disorder transition-induced band nestification in AgBiSe2–CuBiSe2 solid solutions for superior thermoelectric performance

The AgBiSe2–CuBiSe2 system shows band nestification at high temperatures, resulting in heavy DOS effective mass while preserving electron mobility.

Graphical abstract: Order-disorder transition-induced band nestification in AgBiSe2–CuBiSe2 solid solutions for superior thermoelectric performance
Communication

Boosting the stability and photoelectrochemical activity of a BiVO4 photoanode through a bifunctional polymer coating

A bifunctional polyimide (PI) film serving as the catalyst and protective layer on a BiVO4 photoanode not only improves the photoelectrochemical performance, but also enhances the stability of the photoanode in strongly alkaline electrolytes.

Graphical abstract: Boosting the stability and photoelectrochemical activity of a BiVO4 photoanode through a bifunctional polymer coating
Communication

A magnetron sputtered Mo3Si thin film: an efficient electrocatalyst for N2 reduction under ambient conditions

Mo3Si is a superior catalyst for electrochemical N2 reduction in 0.1 M Na2SO4, offering a large NH3 yield of 2 × 10−10 mol s−1 cm−2 and a high Faraday efficiency of 6.69% at −0.4 V and −0.3 V vs. a reversible hydrogen electrode, respectively.

Graphical abstract: A magnetron sputtered Mo3Si thin film: an efficient electrocatalyst for N2 reduction under ambient conditions
Communication

Ultrathin MoS2 flakes embedded in nanoporous graphene films for a multi-functional electrode

The ultrathin few-layer MoS2 sheets directly grown on a nanoporous graphene film (MoS2/NGF), which successfully addressed the shortcomings of bulk MoS2 for multi-functional electrodes.

Graphical abstract: Ultrathin MoS2 flakes embedded in nanoporous graphene films for a multi-functional electrode
Communication

Carbothermal conversion of boric acid into boron-oxy-carbide nanostructures for high-power supercapacitors

In this study, we report a facile carbothermal method for the preparation of boron-oxy-carbide (BOC) nanostructures and explore their properties towards electrochemical energy storage devices.

Graphical abstract: Carbothermal conversion of boric acid into boron-oxy-carbide nanostructures for high-power supercapacitors
Paper

Phase-junction engineering boosts the performance of CoSe2 for efficient sodium/potassium storage

The phase-junction engineering of CoSe2 on SiC NWs boosts its performance for efficient sodium/potassium storage.

Graphical abstract: Phase-junction engineering boosts the performance of CoSe2 for efficient sodium/potassium storage
From the themed collection: Journal of Materials Chemistry A HOT Papers
Paper

Spin unlocking oxygen evolution reaction on antiperovskite nitrides

The spin state change of Fe3+ ions induced the paramagnetic Fe0.5Ni0.5OOH shell on the ferromagnetic Cu0.5NFe3Ni0.5 core via superexchange interaction, facilitating charge transfer and oxygen species ad(de)sorption for boosted OER performance.

Graphical abstract: Spin unlocking oxygen evolution reaction on antiperovskite nitrides
From the themed collection: Journal of Materials Chemistry A HOT Papers
Paper

Covalent organic framework hydrogels for synergistic seawater desalination and uranium extraction

CPP with capillary microporous channels for rapid diffusion of uranyl ions and adequate water transport, and good photothermal effect can realize synergistic freshwater collection and uranium extraction.

Graphical abstract: Covalent organic framework hydrogels for synergistic seawater desalination and uranium extraction
Paper

Nitride MXenes as sulfur hosts for thermodynamic and kinetic suppression of polysulfide shuttling: a computational study

The modulation effect of surface terminating groups of nitride MXenes on the thermodynamic and kinetic suppression of polysulfide shuttling is studied by theoretical calculations.

Graphical abstract: Nitride MXenes as sulfur hosts for thermodynamic and kinetic suppression of polysulfide shuttling: a computational study
From the themed collection: Journal of Materials Chemistry A HOT Papers
Paper

Bio-based, robust, shape memory, self-healing and recyclable elastomers based on a semi-interpenetrating dynamic network

By using sustainable Eucommia ulmoides gum as a raw material, a robust, shape memory, self-healing and recyclable elastomer was fabricated based on a new strategy – a semi-interpenetrating dynamic network.

Graphical abstract: Bio-based, robust, shape memory, self-healing and recyclable elastomers based on a semi-interpenetrating dynamic network
From the themed collection: Journal of Materials Chemistry A HOT Papers
Paper

Well-defined Fe–Cu diatomic sites for efficient catalysis of CO2 electroreduction

A facile and scalable synthesis of N4Fe–CuN3 diatomic sites on N-doped carbon frameworks. The CO Faraday efficiency is >95% at −0.4 to −1.1 V with an overpotential of 50 mV.

Graphical abstract: Well-defined Fe–Cu diatomic sites for efficient catalysis of CO2 electroreduction
Paper

A very mechanically strong and stretchable liquid-free double-network ionic conductor

In this paper, we first report very mechanically strong and stretchable liquid-free double-network ionic conductors (LFDNICs), which solve the trade-off between high mechanical strength and stretchability in a liquid-free ionic conductor.

Graphical abstract: A very mechanically strong and stretchable liquid-free double-network ionic conductor
Paper

Tuning the molar mass of P3HT via direct arylation polycondensation yields optimal interaction and high efficiency in nonfullerene organic solar cells

The application and the molar mass dependence of P3HT via direct arylation polycondensation are explored in fullerene-free solar cells. The medium molar mass batch delivered a top efficiency of ∼10%.

Graphical abstract: Tuning the molar mass of P3HT via direct arylation polycondensation yields optimal interaction and high efficiency in nonfullerene organic solar cells
Paper

Improved stability and efficiency of perovskite/organic tandem solar cells with an all-inorganic perovskite layer

This work presents high-performance and stable all-inorganic perovskite/organic tandem solar cells with a champion efficiency of 18.06% and excellent stability under light and thermal conditions.

Graphical abstract: Improved stability and efficiency of perovskite/organic tandem solar cells with an all-inorganic perovskite layer
Paper

Highly tough, freezing-tolerant, healable and thermoplastic starch/poly(vinyl alcohol) organohydrogels for flexible electronic devices

Herein, the preparation of a highly tough, freezing-tolerant, healable and thermoplastic starch/poly(vinyl alcohol) organohydrogel for flexible electronic devices is presented.

Graphical abstract: Highly tough, freezing-tolerant, healable and thermoplastic starch/poly(vinyl alcohol) organohydrogels for flexible electronic devices
Paper

Unravelling the origin of bifunctional OER/ORR activity for single-atom catalysts supported on C2N by DFT and machine learning

A group of bifunctional oxygen evolution/reduction reaction single-atom catalysts supported on C2N, is proposed. The origin of their high catalytic activity is elucidated by density functional theory calculations and machine learning modelling.

Graphical abstract: Unravelling the origin of bifunctional OER/ORR activity for single-atom catalysts supported on C2N by DFT and machine learning
Paper

NiCo2O4 nanosheets as a novel oxygen-evolution-reaction cocatalyst in situ bonded on the g-C3N4 photocatalyst for excellent overall water splitting

NiCo2O4 is in situ assembled on g-C3N4 and works as a novel oxygen-evolution-reaction cocatalyst to promote photocatalytic O2-evolution reaction, then Pt–NiCo2O4 dual cocatalyst loaded g-C3N4 achieves photocatalytic overall water splitting.

Graphical abstract: NiCo2O4 nanosheets as a novel oxygen-evolution-reaction cocatalyst in situ bonded on the g-C3N4 photocatalyst for excellent overall water splitting
Paper

Rationally designed hierarchical N-doped carbon nanotubes wrapping waxberry-like Ni@C microspheres for efficient microwave absorption

The enhanced microwave absorption performance of composites benefits from simultaneous rational microstructure design and chemical composition modulation.

Graphical abstract: Rationally designed hierarchical N-doped carbon nanotubes wrapping waxberry-like Ni@C microspheres for efficient microwave absorption
Paper

Inverse desert beetle-like ZIF-8/PAN composite nanofibrous membrane for highly efficient separation of oil-in-water emulsions

An inverse desert beetle-like ZIF-8/PAN membrane with the ability of “oil capture in water” can achieve oil-in-water emulsion separation.

Graphical abstract: Inverse desert beetle-like ZIF-8/PAN composite nanofibrous membrane for highly efficient separation of oil-in-water emulsions
Paper

Synthesis of core–shell Co@S-doped carbon@ mesoporous N-doped carbon nanosheets with a hierarchically porous structure for strong electromagnetic wave absorption

Electromagnetic wave absorbents with hierarchically porous and core–shell structures have significantly positive influence on the electromagnetic wave absorption because of the enhanced interfacial polarization.

Graphical abstract: Synthesis of core–shell Co@S-doped carbon@ mesoporous N-doped carbon nanosheets with a hierarchically porous structure for strong electromagnetic wave absorption
Paper

Electrostatically self-assembled two-dimensional magnetized MXene/hollow Fe3O4 nanoparticle hybrids with high electromagnetic absorption performance and improved impendence matching

Two-dimensional magnetized MXene-based hybrids, obtained by electrostatic self-assembly of Ti3C2Tx with hollow Fe3O4 nanoparticles, achieved high electromagnetic absorption performance.

Graphical abstract: Electrostatically self-assembled two-dimensional magnetized MXene/hollow Fe3O4 nanoparticle hybrids with high electromagnetic absorption performance and improved impendence matching
Paper

Boron “gluing” nitrogen heteroatoms in a prepolymerized ionic liquid-based carbon scaffold for durable supercapacitive activity

Doped boron atoms are bridged to glue more electroactive nitrogen sites on the carbon surface, and the high binding energy of the consequent B–C bonds further consolidates the porous carbon scaffold for durable ion/electron transfer.

Graphical abstract: Boron “gluing” nitrogen heteroatoms in a prepolymerized ionic liquid-based carbon scaffold for durable supercapacitive activity
Paper

Mo2B2 MBene-supported single-atom catalysts as bifunctional HER/OER and OER/ORR electrocatalysts

Ni@Mo2B2 can be used as a HER/OER bifunctional electrocatalyst while Cu@Mo2B2 can be used as an OER/ORR bifunctional electrocatalyst.

Graphical abstract: Mo2B2 MBene-supported single-atom catalysts as bifunctional HER/OER and OER/ORR electrocatalysts
50 items

About this collection

To mark the Lunar New Year, this web collection features the top 50 most popular articles published in Journal of Materials Chemistry A in 2021 by corresponding authors based in Asia.

Congratulations to all of the authors whose articles have been featured!


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