Themed collection 2025 Inorganic Chemistry Frontiers HOT articles

156 items - Showing page 1 of 3
Review Article

BiOBr-based catalysts for photocatalytic nitrogen fixation: an overview from the perspective of structural design

This review examines BiOBr photocatalysts for N2 fixation from a structural design perspective, covering defect engineering, single-atom sites, heterojunctions, NH3 quantification challenges, in situ techniques, and future sustainable routes.

Graphical abstract: BiOBr-based catalysts for photocatalytic nitrogen fixation: an overview from the perspective of structural design
Review Article

The rise of functional organoarsenic chemistry

Functional organoarsenic chemistry has advanced remarkably in the past decade. This review highlights the pivotal synthetic strategies that initiated this growth and surveys the wide range of developments that have since emerged.

Graphical abstract: The rise of functional organoarsenic chemistry
Open Access Review Article

Transition-metal-free approaches to poly(aminoboranes) and poly(phosphinoboranes): mechanisms, advances, and future directions

The transition-metal-free syntheses of poly(aminoboranes) and poly(phosphinoboranes) are reviewed. These strategies focus on the generation of reactive aminoboranes or phosphinoboranes in situ, which then undergo polymerization.

Graphical abstract: Transition-metal-free approaches to poly(aminoboranes) and poly(phosphinoboranes): mechanisms, advances, and future directions
From the themed collection: Frontiers in Main Group Chemistry
Accepted Manuscript - Review Article

Advances in solvent-free microwave synthesis of carbon and carbon/metal composite nanomaterials for electrocatalytic applications

Review Article

Rare earth metal-based oxygen electrocatalysts: insights from mechanisms and designs to applications

This paper summarizes the research progress of rare earth metal-based oxygen electrocatalysts, and introduces their synthesis strategies, evaluation metrics, design strategies as well as application.

Graphical abstract: Rare earth metal-based oxygen electrocatalysts: insights from mechanisms and designs to applications
Open Access Review Article

Mesoionic imines: strong N-donors, electronic ambivalence and applications in catalysis

Mesoionic imines (MIIs) based on a 1,2,3-triazole core have been popularized in the past ca. 5 years.

Graphical abstract: Mesoionic imines: strong N-donors, electronic ambivalence and applications in catalysis
Review Article

Frontiers in single-crystal covalent organic frameworks resolved by single crystal X-ray diffraction

This review systematically summarizes the key control parameters involved in the formation process of single-crystal COFs and discusses the challenges and opportunities of single-crystal COFs in various applications.

Graphical abstract: Frontiers in single-crystal covalent organic frameworks resolved by single crystal X-ray diffraction
Review Article

Multimetallenes and their electrocatalytic applications

This review focuses on multimetallene electrocatalytic materials, summarizing synthesis strategies, multidimensional structural optimization, and applications in high-current-density oxygen reduction and overall water splitting.

Graphical abstract: Multimetallenes and their electrocatalytic applications
Review Article

Advancing photocatalysis through efficient fabrication of morphology-engineered photonic crystals

Advancing photocatalysis through efficient fabrication of morphology-engineered photonic crystals helps the practical application of photocatalytic technology.

Graphical abstract: Advancing photocatalysis through efficient fabrication of morphology-engineered photonic crystals
Review Article

Progress in porous carbon-based adsorbents for the removal of dyes from single and binary systems and their adsorption mechanism – a review

This review discusses the research progress on dye removal from single and binary systems using porous carbon-based adsorbents, along with a detailed analysis of their removal mechanisms.

Graphical abstract: Progress in porous carbon-based adsorbents for the removal of dyes from single and binary systems and their adsorption mechanism – a review
Review Article

Research progress of g-C3N4-based photocatalytic anticorrosion coatings

g-C3Nemerges as a key photocatalytic anticorrosion filler due to its eco-friendly nature, 2D structure, and active protection. This review highlights the latest research progress of g-C3N4-based photocatalytic anti-corrosion coating.

Graphical abstract: Research progress of g-C3N4-based photocatalytic anticorrosion coatings
Review Article

Role and advances in nonmetal doping of electrocatalysts for the hydrogen evolution reaction: a review

This review summarizes the synthesis, modification, and characterization of nonmetal-doped HER electrocatalysts. Reported catalysts are categorized by dopant type, and future prospects for non-metal doping strategies are discussed.

Graphical abstract: Role and advances in nonmetal doping of electrocatalysts for the hydrogen evolution reaction: a review
Review Article

Dehydrogenation of sodium borohydride and ammonia borane over cobalt-based catalysts: advances and prospects

Co-based metal nanocatalysts have been thoroughly summarized as economical and efficient catalysts for hydrogen evolution from sodium borohydride and ammonia borane.

Graphical abstract: Dehydrogenation of sodium borohydride and ammonia borane over cobalt-based catalysts: advances and prospects
Review Article

Ultra-high-entropy alloy nanoparticles: beyond five components

The recent research progress on high-entropy alloy nanoparticles composed of six or more elements is reviewed, and their theoretical aspects, synthetic methods and critical applications are examined.

Graphical abstract: Ultra-high-entropy alloy nanoparticles: beyond five components
Review Article

Geometric and electronic perspectives on dual-atom catalysts for advanced oxidation processes

This review aims to bridge the gap in the applications of DACs by presenting a thorough and multidimensional analysis of DACs in advanced oxidation processes, a pivotal area in addressing environmental and energy challenges.

Graphical abstract: Geometric and electronic perspectives on dual-atom catalysts for advanced oxidation processes
Review Article

Innovations in scintillator materials for X-ray detection

We review the latest developments in scintillator materials for X-ray detection thoroughly, including perovskites, nano-clusters, organic and rare-earth-doped compounds and specialized structures, and provide an in-depth insight for future prospects.

Graphical abstract: Innovations in scintillator materials for X-ray detection
Review Article

Designing biomimetic catalytic systems for CO2 reduction to formate using NAD(P)H

This review article focuses on current achievements and identifies future research directions by designing biomimetic catalytic systems for CO2 reduction to formate using NAD(P)H.

Graphical abstract: Designing biomimetic catalytic systems for CO2 reduction to formate using NAD(P)H
Open Access Review Article

Metal–coumarin derivatives as promising photosensitizers: unlocking their cancer phototherapy potential

Metal–coumarin photosensitizers enhance ROS generation and phototoxicity, offering promising solutions for cancer phototherapy.

Graphical abstract: Metal–coumarin derivatives as promising photosensitizers: unlocking their cancer phototherapy potential
Review Article

Toward highly durable aqueous zinc ion batteries: a review of MOFs/MOF-derived cathode materials

The authors summarize recent research progress on pristine MOFs and their derivatives for high-performance AZIBs and discuss the energy storage mechanisms.

Graphical abstract: Toward highly durable aqueous zinc ion batteries: a review of MOFs/MOF-derived cathode materials
Review Article

Engineered molybdenum disulfide-based nanomaterials for capacitive deionization applications

This review summarized the methods for synthesizing MoS2-based nanomaterials and their application in capacitive deionization.

Graphical abstract: Engineered molybdenum disulfide-based nanomaterials for capacitive deionization applications
Open Access Review Article

Comprehensive coordination chemistry of iminophosphonamides

This review summarizes the reported iminophosphonamide complexes of s-block, p-block, transition and f-block metals. Furthermore, the recent development in the field of chiral iminophosphonamide metal complexes is also discussed.

Graphical abstract: Comprehensive coordination chemistry of iminophosphonamides
Open Access Review Article

Investigation of metallodrug/protein interaction by X-ray crystallography and complementary biophysical techniques

Selected studies carried out in the field of protein metalation, where the structural information achieved by X-ray crystallography has been complemented by other biophysical techniques, are described.

Graphical abstract: Investigation of metallodrug/protein interaction by X-ray crystallography and complementary biophysical techniques
Review Article

Structural diversity and photocurrent responses of multi-component chalcogenidometalates

This review offers an overview of recent advancements in novel multi-component chalcogenidometalates, emphasizing the intrinsic relationships between composition, structure, and photocurrent properties.

Graphical abstract: Structural diversity and photocurrent responses of multi-component chalcogenidometalates
Review Article

Selenoborates: a latent structure resource for infrared functional crystal materials

This work reviews selenoborates, categorizing them by structure, synthesis methods, and highlighting their bandgaps, nonlinear optical properties, and potential as IR functional materials.

Graphical abstract: Selenoborates: a latent structure resource for infrared functional crystal materials
Review Article

Review on Ti3C2 MXene-based binary and ternary composites for photocatalytic applications

Ti3C2/TiO2 and C@TiO2 based composites for photocatalytic applications.

Graphical abstract: Review on Ti3C2 MXene-based binary and ternary composites for photocatalytic applications
Review Article

Design strategies and applications of electrochemiluminescence from metal nanoclusters

We summarize the design strategies for improving the ECL of metal nanoclusters, including 1. aggregation-induced emission; 2. anodic pre-oxidation; 3. aggregation-induced self-loading; 4. Anionic substitution; 5. ion doping; 6. valence engineering.

Graphical abstract: Design strategies and applications of electrochemiluminescence from metal nanoclusters
Review Article

Bi2MO6 (M = Mo, W) Aurivillius oxides for efficient photocatalytic N2-to-NH3 conversion: a perspective review

This summary describes and elucidates an enhanced strategy for photocatalytic nitrogen fixation over Bi2MO6 (M = Mo, W)-based catalysts and points out the development prospects of photocatalytic nitrogen fixation.

Graphical abstract: Bi2MO6 (M = Mo, W) Aurivillius oxides for efficient photocatalytic N2-to-NH3 conversion: a perspective review
Open Access Review Article

Recent advances in computational modelling of mononuclear actinide single molecule magnets

In this review, we have highlighted computational studies on actinide-based mononuclear single-molecule magnets, focusing on compounds containing the elements U, Np, Pu, and Cf.

Graphical abstract: Recent advances in computational modelling of mononuclear actinide single molecule magnets
Research Article

Long-range disordered MoZn electrocatalyst with a synergistic AEM-LOM mechanism for efficient oxygen evolution

A highly efficient OER electrocatalyst (MoZn/NF) was synthesized via a facile one-step corrosion method, showing superior activity and stability due to the AEM-LOM synergy and unique structure.

Graphical abstract: Long-range disordered MoZn electrocatalyst with a synergistic AEM-LOM mechanism for efficient oxygen evolution
Research Article

Mn2+-doping and vacancy engineering induce a phase transition with an ultrahigh dielectric switching ratio in lead chloride hybrids

Vacancy-induced ionic conduction across a thermotropic phase transition enables an ultrahigh dielectric switching ratio (DSR) in a lead halide hybrid.

Graphical abstract: Mn2+-doping and vacancy engineering induce a phase transition with an ultrahigh dielectric switching ratio in lead chloride hybrids
Open Access Research Article

Construction of carbon nanotube-supported CuO–Fe3O4 dual-site catalysts for ambient electrosynthesis of ammonia

The in-situ reconstructed CuO–Fe3O4 dual-site catalyst synergistically enhances nitrate reduction by utilizing Cu sites for NO3 adsorption/conversion while employing Fe sites for water splitting.

Graphical abstract: Construction of carbon nanotube-supported CuO–Fe3O4 dual-site catalysts for ambient electrosynthesis of ammonia
Research Article

Realizing large birefringence via S-substitution and anisotropic arrangement optimization

The substitution of sulfur (S) (from 1 to 2) and the optimized arrangement of functional groups (from 2 to 3) can effectively promote enhancement in birefringence.

Graphical abstract: Realizing large birefringence via S-substitution and anisotropic arrangement optimization
Research Article

Promotion of acetylene semi-hydrogenation by oxide–oxide interactions in FeOX/TiO2 catalysts

Schematic illustration of semi-hydrogenation of acetylene over FeOX/TiO2.

Graphical abstract: Promotion of acetylene semi-hydrogenation by oxide–oxide interactions in FeOX/TiO2 catalysts
Research Article

Subgrid cage confinement engineering enabled ultra-efficient near-infrared Cr3+–Ln3+ co-doped phosphors

This work introduces a subgrid cage confinement strategy within GdAl1.5Ga1.5(BO3)4 to precisely control energy transfer, achieving outstanding PLQY and superior thermal stability, show great potential in bioimaging and non-destructive testing.

Graphical abstract: Subgrid cage confinement engineering enabled ultra-efficient near-infrared Cr3+–Ln3+ co-doped phosphors
Research Article

Thermoelectric performance of a copper-doped nickel benzene-1,3,5-tricarboxylate metal–organic framework

A hollow Cu-doped NiBTC MOF optimized electrical conductivity and thermal conductivity, achieving a high figure of merit of 0.571 at 473 K.

Graphical abstract: Thermoelectric performance of a copper-doped nickel benzene-1,3,5-tricarboxylate metal–organic framework
Open Access Research Article

A low-valent alkali metal doping strategy for enhanced performance of high-entropy oxide catalysts in reverse water–gas shift reactions

In the classical high-entropy oxide (Mg1Co1Ni1Cu1Zn1)Ox (J14), doping Li replacing preserves the rock salt phase structure. For RWGS catalysis, moderate Li doping notably enhances activity while excessive doping promotes CH4 byproduct formation.

Graphical abstract: A low-valent alkali metal doping strategy for enhanced performance of high-entropy oxide catalysts in reverse water–gas shift reactions
Open Access Research Article

Chiral molecular 4f qubits by post functionalization

A pair of enantiomerically pure YbIII complexes are synthesised and pulse EPR Rabi nutations and phase memory times show the complexes are suitable for coherent spin manipulation.

Graphical abstract: Chiral molecular 4f qubits by post functionalization
Research Article

Energy-transfer enhanced Cr3+/Ni2+ co-doped tantalate phosphors for broadband NIR pc-LED applications

This study synthesized Cr3+/Ni2+ co-doped Mg2LaTaO6 NIR phosphors. The energy transfer from Cr3+ to Ni2+ enhanced NIR-II emission, showing potential applications in fruit freshness detection, information encryption, and biological imaging.

Graphical abstract: Energy-transfer enhanced Cr3+/Ni2+ co-doped tantalate phosphors for broadband NIR pc-LED applications
Research Article

Dual-functional zincophilic–hydrophobic interfacial layer enables highly stable Zn metal anodes

A zincophilic–hydrophobic STA-ZnO protective layer is in situ constructed on Zn surfaces to suppress water-induced side reactions and regulate Zn2+ deposition behavior for achieving Zn anodes with high reversibility and stability.

Graphical abstract: Dual-functional zincophilic–hydrophobic interfacial layer enables highly stable Zn metal anodes
Research Article

Pentacosaple-CO32− bridged hexacontaoctanuclear lanthanide-alkali barrels derived from octacosanuclear discs

The stepwise assembly of Ln16K12 discs and Ln24Na44 barrels utilizing carbonates, phosphonates, and C2-symmetric ligands represents an efficient method for developing novel three-shell compounds for magnetic studies.

Graphical abstract: Pentacosaple-CO32− bridged hexacontaoctanuclear lanthanide-alkali barrels derived from octacosanuclear discs
Research Article

Coordination-induced spin-state memory via cooperative binding

CISSS molecules are embedded in soft porous crystals to build bistable magnetic frameworks. Gate-opening behavior enables spin-state memory at room temperature, achieving non-volatile magnetic bistability.

Graphical abstract: Coordination-induced spin-state memory via cooperative binding
Open Access Research Article

Chemical characterization of localized radicals in closo-borate anion derivatives

The chemical character of closo-borate radical anions is investigated and compared to electrophilic and nucleophilic organic radicals.

Graphical abstract: Chemical characterization of localized radicals in closo-borate anion derivatives
Research Article

Hydroxyl-induced structural reconstruction: two new potassium hepta-borates with deep-UV transparency and enhanced birefringence

Two new potassium hepta-borates deep-UV birefringent crystals, KB7O9(OH)4 and KB7O10(OH)2, exhibit deep-UV transparency and enhanced birefringence due to structural reconstruction ([B7O10(OH)4] to [B7O12(OH)2]) of functional basic units.

Graphical abstract: Hydroxyl-induced structural reconstruction: two new potassium hepta-borates with deep-UV transparency and enhanced birefringence
Research Article

A pair of diphosphine-protected gold nanoclusters differing by a single gold atom on the kernel surface

Atomic-level tailoring exerted on the kernel surface of a gold NC without altering the other parts was successfully implemented, which effectively improves their electrocatalytic CO2RR performance.

Graphical abstract: A pair of diphosphine-protected gold nanoclusters differing by a single gold atom on the kernel surface
Research Article

Pyrolyzed cyanide-bridged Ni–Fe MOFs for oxygen evolution: inactivation pathways and enhancement mechanisms

This study reveals the deactivation mechanism of cyanide-bridged Ni–Fe MOFs during high-temperature pyrolysis, proposes a strategy using high-concentration MWCNTs to enhance performance, offering new insights for efficient OER electrocatalysts.

Graphical abstract: Pyrolyzed cyanide-bridged Ni–Fe MOFs for oxygen evolution: inactivation pathways and enhancement mechanisms
Open Access Accepted Manuscript - Research Article

Aromatic Diamine Constructed Lead-Free Polar Perovskite Towards Stable Self-Driven X-Ray Detection

Open Access Accepted Manuscript - Research Article

Acidity/hydridicity evaluation of Sb-H bonds and formation of a new Group 15 metal cluster topology

Research Article

A high-performance IR nonlinear optical material Sr3MnGe2S8 achieved via partial cation substitution-induced structural transformation

A novel quaternary non-centrosymmetric Mn-based chalcogenide, Sr3MnGe2S8, has been rationally designed via partial cation substitution from centrosymmetric Sr2GeS4, achieving well-balanced IR-NLO performance.

Graphical abstract: A high-performance IR nonlinear optical material Sr3MnGe2S8 achieved via partial cation substitution-induced structural transformation
Accepted Manuscript - Research Article

Alkyne Coupling Enabled by Actinide-Transition Metal Cooperativity

Research Article

Simultaneous emission and thermal stability enhancement of long-wavelength NIR luminescence of Cr3+ ions in spinel phosphors via pivot-polyhedron linkage engineering

Crystal field engineering is currently the most significant method for enhancing the near-infrared (NIR) emission intensity and thermal stability of Cr3+ ions.

Graphical abstract: Simultaneous emission and thermal stability enhancement of long-wavelength NIR luminescence of Cr3+ ions in spinel phosphors via pivot-polyhedron linkage engineering
Research Article

Ba3S[SnOS3] and [Ba2Sn]S[Ge2O7]: two antiperovskite oxychalcogenides with good IR nonlinear optical performances

Two new antiperovskite-type oxychalcogenides Ba3S[SnOS3] and [Ba2Sn]S[Ge2O7] with good infrared nonlinear optical properties have been successfully synthesized.

Graphical abstract: Ba3S[SnOS3] and [Ba2Sn]S[Ge2O7]: two antiperovskite oxychalcogenides with good IR nonlinear optical performances
Accepted Manuscript - Research Article

Achieving 57.15% EQE in Mn4+ Non-equivalent Doped Fluoride Single Crystals via a Rapid Synthesis for Next-Generation Display Lighting

Accepted Manuscript - Research Article

Insight into the role of Cd atoms in clusters for the oxidation reaction of styrene

Research Article

Polyoxoniobates with the long-sought feature of face-sharing octahedra stabilized by Te(IV): a synthetic analogue of natural minerals

The first polyoxoniobate featuring the long-sought face-sharing octahedra, as observed in natural minerals, has been successfully synthesized using highly charged Te(IV) ions.

Graphical abstract: Polyoxoniobates with the long-sought feature of face-sharing octahedra stabilized by Te(iv): a synthetic analogue of natural minerals
Open Access Research Article

Exploring the interactions of N7-platinated guanosines with the hCNT3 transporter: a molecular dynamics study

Transport of three platinated-nucleosides through hCNT3 membrane protein was investigated in the framework of molecular dynamics simulations. Results are in agreement with the available experimental data on HeLa cells.

Graphical abstract: Exploring the interactions of N7-platinated guanosines with the hCNT3 transporter: a molecular dynamics study
Open Access Research Article

Y(C6H5SO3)3·9H2O: strategic integration of ligand substitution and π-conjugated group linkage in sulfates for enhanced ultraviolet nonlinear optical properties

By employing the strategic integration of ligand substitution and π-conjugated group linkage, the first UV NLO benzenesulfonate, i.e. Y(C6H5SO3)3·9H2O, have been synthesized and reported with comprehensive performance.

Graphical abstract: Y(C6H5SO3)3·9H2O: strategic integration of ligand substitution and π-conjugated group linkage in sulfates for enhanced ultraviolet nonlinear optical properties
Research Article

Constructing core–shell SiC@C nanofiber network structures to enhance conductive loss for efficient microwave absorption

The hollow core–shell structure was formed by controlling the carbon thermal reduction temperature to achieve the diffusion reaction between carbon and SiO2, which synergistically improved the impedance matching of the composite with SiO2.

Graphical abstract: Constructing core–shell SiC@C nanofiber network structures to enhance conductive loss for efficient microwave absorption
Research Article

Exploring ultra-high optical anisotropy in polyiodides

This work describes the synthesis of three novel organic–inorganic hybrid polyiodide compounds, C4H6N3I2, (C5H7N2)I·I3, and (C5H6NO)2I4, which exhibit significant birefringence.

Graphical abstract: Exploring ultra-high optical anisotropy in polyiodides
Open Access Research Article

Accessing phosphonioacetylide chemistry: isolable alkali metal precursors for rod-shaped carbon donor complexes

The high reactivity of a sterically accessible phosphonioacetylide was tamed via alkali metal coordination. The resulting complexes are precursors for introducing the rod-shaped, strongly electron-donating ligand into transition metal complexes.

Graphical abstract: Accessing phosphonioacetylide chemistry: isolable alkali metal precursors for rod-shaped carbon donor complexes
Research Article

High-nuclearity Ag-substituted tetrameric sandwich-type polyoxometalates for excellent catalytic performance in C–C bond formation

A tetrameric sandwich-type high-nuclearity substituted silver cluster with Lewis acid–base sites was synthesized and demonstrated outstanding catalytic performance in C–C bond formation for the Knoevenagel condensation and cyanosilylation reactions.

Graphical abstract: High-nuclearity Ag-substituted tetrameric sandwich-type polyoxometalates for excellent catalytic performance in C–C bond formation
Research Article

A novel zero-dimensional germanium-based ferroelectric hybrid material with dual phase transitions

A novel zero-dimensional hybrid ferroelectric [(CH3)4N]GeBr3 (1) with was successfully obtained. Compound 1 undergoes a mmmFmm2-type ferroelectric transition at 236 K, and a reconfiguration transition accompanied by a dimensional change at 453 K.

Graphical abstract: A novel zero-dimensional germanium-based ferroelectric hybrid material with dual phase transitions
Research Article

Morphological transformation of Pt nanocrystals by an electrochemical method in alkaline media and performance of ethanol electrooxidation

Study on the morphological transformation of Pt NCs in alkaline media and the electrochemical oxidation performance of ethanol.

Graphical abstract: Morphological transformation of Pt nanocrystals by an electrochemical method in alkaline media and performance of ethanol electrooxidation
Research Article

Enhancing the efficiency of the photocatalytic hydrogen evolution half-reaction via disruption of the rigid H-bond network at the RuS2/ZnCdS interface

Design and realization of reconstructed interfacial H-bond networks in catalysts for enhanced sustainable photocatalytic water splitting H2 evolution activity.

Graphical abstract: Enhancing the efficiency of the photocatalytic hydrogen evolution half-reaction via disruption of the rigid H-bond network at the RuS2/ZnCdS interface
Research Article

Dual function of additives in controlling Al siting and nanocrystal assembly of MEL zeolites for enhanced methanol-to-olefins performance

Tailoring MEL zeolite properties via controlled synthesis with organic additives enhances its catalytic performance in the methanol-to-olefins reaction.

Graphical abstract: Dual function of additives in controlling Al siting and nanocrystal assembly of MEL zeolites for enhanced methanol-to-olefins performance
Research Article

Smart tri-mode imaging material for on-demand visual encryption and dynamic displays

A flexible BaMgP2O7:Sm@PDMS composite film combines real-time imaging, delayed imaging and stable information storage within a single material. This tri-mode luminescent composite is a novel and versatile platform for developing cutting-edge devices.

Graphical abstract: Smart tri-mode imaging material for on-demand visual encryption and dynamic displays
Open Access Research Article

Fe(II) bidentate complexes with long-lived triplet states

The excitation of bidentate quinoline/quinoxaline-NHC iron(II) complexes at 530 nm produced 3MC/3MLCT mixed excited states with lifetimes up to 74 ps.

Graphical abstract: Fe(ii) bidentate complexes with long-lived triplet states
Research Article

High-efficient separation of photogenerated carriers in S-scheme BiOI@TpPa-1 heterojunction for enhanced photocatalytic CO2 reduction: crystal face engineering and DFT calculations

Two novel BiOI@TpPa-1 COF S-scheme p–n heterojunctions have been successfully synthesized. In S-scheme heterojunctions, the interfacial electric field (IEF) and the crystal surface effect promote charge separation efficiently.

Graphical abstract: High-efficient separation of photogenerated carriers in S-scheme BiOI@TpPa-1 heterojunction for enhanced photocatalytic CO2 reduction: crystal face engineering and DFT calculations
Research Article

Enhancing edge chemistry in HCP-Ru catalysts through crystalline domain engineering for efficient alkaline hydrogen evolution

MgO-templated domain engineering generates edge-rich Ru nanocrystals with abundant low-coordination sites, dramatically enhancing alkaline HER performance.

Graphical abstract: Enhancing edge chemistry in HCP-Ru catalysts through crystalline domain engineering for efficient alkaline hydrogen evolution
Research Article

Construction of synergistic binding sites in a robust MOF for excellent C2H4 purification and C3H6 recovery performance

A robust Ni-MOF with synergistic supramolecular binding sites was constructed for the efficient purification of C2H4 from a C3H6/C2H4 mixture.

Graphical abstract: Construction of synergistic binding sites in a robust MOF for excellent C2H4 purification and C3H6 recovery performance
Research Article

A Z-scheme Ba2AgIO6/C3N4 heterojunction enabling efficient visible-light photocatalytic H2O2 production via the direct one-step two-electron O2 reduction reaction

Novel Ba2AgIO6/C3N4 Z-scheme heterojunction regulates photocatalytic H2O2 production reaction pathway, achieving 535.9 μmol g−1 h−1 yield under visible light (8.8× pure C3N4), highlighting pathway modulation's critical role for efficient catalysts.

Graphical abstract: A Z-scheme Ba2AgIO6/C3N4 heterojunction enabling efficient visible-light photocatalytic H2O2 production via the direct one-step two-electron O2 reduction reaction
156 items - Showing page 1 of 3

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Read our on-going collection of the hottest research published as advance article from Inorganic Chemistry Frontiers in 2025. These articles are recommended by reviewers as being of significant novelty and interest. Congratulations to all the authors whose articles are featured!

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