Themed collection 2026 Chinese New Year and Lunar New Year Collection

115 items - Showing page 1 of 2
Open Access Minireview

Lithium aluminum titanium phosphate (LATP) composite solid-state electrolytes: progress and prospects for all-solid-state batteries

This review summarizes the research progress of LATP-based polymer composite solid electrolytes (CSEs), providing a reference for future research directions.

Graphical abstract: Lithium aluminum titanium phosphate (LATP) composite solid-state electrolytes: progress and prospects for all-solid-state batteries
Minireview

Advancements in separator materials for aqueous zinc batteries

Aqueous zinc (Zn) batteries (AZBs) are becoming promising candidates for grid-scale energy storage because of their inherent safety, cost-effectiveness, and high theoretical capacity.

Graphical abstract: Advancements in separator materials for aqueous zinc batteries
Minireview

Fullerene-driven photocarrier processes in perovskite solar cells: recent advances

Recent advances in understanding photocarrier dynamics of fullerenes in PSCs, focusing on charge transport, interfacial interactions, and the impact of functionalized derivatives on efficiency and stability.

Graphical abstract: Fullerene-driven photocarrier processes in perovskite solar cells: recent advances
Open Access Minireview

Recent progress in the synthesis of nanostructured Ti3C2Tx MXene for energy storage and wastewater treatment: a review

MXene-based functional 2D materials hold significant potential for addressing global challenges related to energy and water crises.

Graphical abstract: Recent progress in the synthesis of nanostructured Ti3C2Tx MXene for energy storage and wastewater treatment: a review
Open Access Minireview

Iron-based nanozymes induced ferroptosis for tumor therapy

This review highlights iron-based nanozymes including iron oxides, single-atom nanozymes, and MOFs that induce ferroptosis via ROS generation and Fenton chemistry, achieved by POD-, CAT-, OXD- and SOD-like activities.

Graphical abstract: Iron-based nanozymes induced ferroptosis for tumor therapy
Minireview

Cu-based bimetallic catalysts for electrochemical CO2 reduction: before and beyond the tandem effect

Cu-based bimetallic catalysts show enhanced electrochemical CO2 reduction performance via the tandem effect. This review traces their progress, highlighting design advances, mechanisms, and challenges to guide efficient CO2 conversion.

Graphical abstract: Cu-based bimetallic catalysts for electrochemical CO2 reduction: before and beyond the tandem effect
Open Access Minireview

Advances in integrated power supplies for self-powered bioelectronic devices

The emerging integrated power supplies for self-powered bioelectronic devices over the past few years are summarized. Additionally, the challenges and future perspectives in self-powered device design and manufacturing are also indicated.

Graphical abstract: Advances in integrated power supplies for self-powered bioelectronic devices
Minireview

Organic semiconductor bulk heterojunctions for solar-to-chemical conversion: recent advances and challenges

This minireview highlights recent progress in BHJ-based photoelectrochemical cells and photocatalysts for solar-to-chemical conversions.

Graphical abstract: Organic semiconductor bulk heterojunctions for solar-to-chemical conversion: recent advances and challenges
Open Access Review Article

Novel advancements in nanomaterials-based contrast agents across multimodal imaging and theranostic applications

Schematic illustration of theranostic nanoparticle (NP)-based contrast agents for multimodal imaging, depicting major NP categories used across different imaging modalities and disease-specific theranostics.

Graphical abstract: Novel advancements in nanomaterials-based contrast agents across multimodal imaging and theranostic applications
Open Access Review Article

Laser-induced graphene for biomedical applications: innovations in health monitoring and diagnostics

This review explores laser-induced graphene as a versatile sensing material for multifunctional biomedical sensors, emphasizing its synthesis, properties, and advances in health monitoring and diagnostics.

Graphical abstract: Laser-induced graphene for biomedical applications: innovations in health monitoring and diagnostics
Review Article

Advances in aptamer-based electrochemical biosensors for disease diagnosis: integration of DNA and nanomaterials

Aptamer-based electrochemical biosensors (AEBs) have emerged as a highly promising platform for disease diagnostics, offering high specificity, sensitivity, and real-time detection capabilities.

Graphical abstract: Advances in aptamer-based electrochemical biosensors for disease diagnosis: integration of DNA and nanomaterials
Review Article

Specific detectivity-oriented low-noise management in organic photodetectors

This study establishes a mechanism-driven framework that guides material and device design strategies aimed at suppressing noise. This approach leads to substantial enhancement in detectivity for high-performance organic photodetectors.

Graphical abstract: Specific detectivity-oriented low-noise management in organic photodetectors
Review Article

Smart wearable fibers and textiles: status and prospects

Smart wearable fibers and textiles: status and prospects.

Graphical abstract: Smart wearable fibers and textiles: status and prospects
Review Article

Strategically engineering 2D MXene-based advanced adsorbents for sustainable wastewater remediation of dyes

Mxene nanosorbents engineered via surface, defect, bandgap, and doping modifications offer high adsorption, tunable bandgap, flexibility and sustainability, enabling efficient wastewater remediation and advancing One Health management.

Graphical abstract: Strategically engineering 2D MXene-based advanced adsorbents for sustainable wastewater remediation of dyes
Open Access Review Article

The synergy of metal–organic frameworks and biomaterials for bone tissue engineering: recent advances, challenges, and future recommendations

This review provides an overview of recent progress, challenges, and future directions in the application of MOFs and MOF-based composites for bone tissue engineering.

Graphical abstract: The synergy of metal–organic frameworks and biomaterials for bone tissue engineering: recent advances, challenges, and future recommendations
Review Article

2D material-based infrared photodetectors: recent progress, challenges, and perspectives

2D materials-based infrared (IR) photodetectors are essential for a wide range of applications, including optical communication, night vision, and environmental monitoring; graphical images reproduced with permission; full details in paper.

Graphical abstract: 2D material-based infrared photodetectors: recent progress, challenges, and perspectives
Open Access Review Article

AI-integrated wearable strain sensors: advances in e-skin, robotics, and personalized health monitoring

Flexible, skin-like wearable sensor (e-skin) for health monitoring dashboard (e.g., heart rate, muscle activity, motion tracking) neural network nodes, medical, robotics, sports/fitness.

Graphical abstract: AI-integrated wearable strain sensors: advances in e-skin, robotics, and personalized health monitoring
Open Access Review Article

Recent advances in graphitic carbon nitride-based composites for enhanced photocatalytic degradation of rhodamine B: mechanism, properties and environmental applications

This review explores g-C3N4 modifications to boost photocatalysis for rhodamine B degradation, analyzing key factors, reactive oxygen species and charge transfer mechanisms, and environmental applications, challenges, prospects.

Graphical abstract: Recent advances in graphitic carbon nitride-based composites for enhanced photocatalytic degradation of rhodamine B: mechanism, properties and environmental applications
Review Article

A review: metal and metal oxide nanoparticles for environmental applications

Environmental applications of metal and metal oxide nanoparticles primarily comprise contaminant adsorbents, catalysts, and sensors for hazardous substances, etc.

Graphical abstract: A review: metal and metal oxide nanoparticles for environmental applications
Open Access Review Article

Synthesis methods, structure, and recent trends of ZIF-8-based materials in the biomedical field

ZIF-8 offers exceptional structural properties and high drug-loading capacities beneficial for drug delivery systems. Herein, the synthesis methods and multifunctional applications of ZIF-8-based biomaterials in biomedical engineering are discussed.

Graphical abstract: Synthesis methods, structure, and recent trends of ZIF-8-based materials in the biomedical field
Open Access Review Article

Unique advantages and applications of polysaccharide microneedles as drug delivery materials and in treatment of skin diseases

Owing to its non-invasive nature, painless drug delivery, and controlled drug loading capacity, the microneedle (MN) technology has recently garnered significant attention in clinical practice.

Graphical abstract: Unique advantages and applications of polysaccharide microneedles as drug delivery materials and in treatment of skin diseases
Review Article

Research progress of transition metal catalysts for electrocatalytic EG oxidation

The synthesis method and properties of electrocatalysts for EGOR reaction are described. Images reproduced with permission; see Acknowledgements for details.

Graphical abstract: Research progress of transition metal catalysts for electrocatalytic EG oxidation
Review Article

Advancements in MOF-based resistive gas sensors: synthesis methods and applications for toxic gas detection

Gas sensors are essential tools for safeguarding public health and safety because they allow the detection of hazardous gases.

Graphical abstract: Advancements in MOF-based resistive gas sensors: synthesis methods and applications for toxic gas detection
Open Access Review Article

Advances in core technologies for semiconductor manufacturing: applications and challenges of atomic layer etching, neutral beam etching and atomic layer deposition

Revolutionizing semiconductor fabrication, ALD, ALE, and NBE deliver atomic-scale precision, driving unprecedented performance and scalability in next-generation miniaturized devices.

Graphical abstract: Advances in core technologies for semiconductor manufacturing: applications and challenges of atomic layer etching, neutral beam etching and atomic layer deposition
Open Access Review Article

Biotransformation and biological fate of magnetic iron oxide nanoparticles for biomedical research and clinical applications

Safe implementation of nanotechnology-based products in biomedical applications necessitates an extensive understanding of the (bio)transformations that nanoparticles undergo in living organisms.

Graphical abstract: Biotransformation and biological fate of magnetic iron oxide nanoparticles for biomedical research and clinical applications
Open Access Review Article

Research progress on the epitaxial growth of hexagonal boron nitride on different substrates by the CVD method

This article details the synthesis methodologies and research progress of h-BN epitaxial growth on solid transition metal, liquid metal, alloy, sapphire/metal and semiconductor substrates.

Graphical abstract: Research progress on the epitaxial growth of hexagonal boron nitride on different substrates by the CVD method
Review Article

Development and challenges of polarization-sensitive photodetectors based on 2D materials

Polarization-sensitive photodetectors based on two-dimensional (2D) materials have garnered significant research attention owing to their distinctive architectures and exceptional photophysical properties.

Graphical abstract: Development and challenges of polarization-sensitive photodetectors based on 2D materials
Review Article

Recent advances in functional lipid-based nanomedicines as drug carriers for organ-specific delivery

The review highlights lipid-based nanomedicines (LBNs) for organ-specific delivery, focusing on functionalization strategies to improve target specificity, drug stability, therapeutic outcomes, and reduce side effects in clinical applications.

Graphical abstract: Recent advances in functional lipid-based nanomedicines as drug carriers for organ-specific delivery
Open Access Review Article

Understanding the interplay between pH and charges for theranostic nanomaterials

Nanotechnology enables targeted theranostics by enhancing imaging and therapy. This review explores advances in pH-induced charge-switchable nanomaterials, their role in drug delivery and imaging contrast, and future directions in the field.

Graphical abstract: Understanding the interplay between pH and charges for theranostic nanomaterials
Review Article

Semiconductor photocatalytic antibacterial materials and their application for bone infection treatment

This review discusses commonly used semiconductor photocatalytic antibacterial materials, methods for improving their photocatalysis performance and their application for bone infection treatment.

Graphical abstract: Semiconductor photocatalytic antibacterial materials and their application for bone infection treatment
Review Article

Engineering the next generation of MXenes: challenges and strategies for scalable production and enhanced performance

Optimization strategy of MXene scale preparation.

Graphical abstract: Engineering the next generation of MXenes: challenges and strategies for scalable production and enhanced performance
Open Access Review Article

Nanomaterial-enabled anti-biofilm strategies: new opportunities for treatment of bacterial infections

Scheme of nano-delivery systems in anti-biofilm application. Created with BioRender.com.

Graphical abstract: Nanomaterial-enabled anti-biofilm strategies: new opportunities for treatment of bacterial infections
Review Article

Bioactive surface-functionalized MXenes for biomedicine

This work reviews the surface modification strategies and biomedical applications of MXene, discusses the challenges, trends and prospects of MXenes nanomaterials, which provides information for enhancing the clinical translation of nanomedicine.

Graphical abstract: Bioactive surface-functionalized MXenes for biomedicine
Review Article

Emerging 2D materials hardware for in-sensor computing

This review covers recent advancements and future directions in 2DM-based devices for in-sensor computing, focusing on unique physical mechanisms for sensory responses, biomimetic synaptic features, and potential applications.

Graphical abstract: Emerging 2D materials hardware for in-sensor computing
Review Article

Recent advances in biotin-based therapeutic agents for cancer therapy

Biotin binds to drugs in two main modes: SMBCs and NBCs. Tumor cells have more biotin receptors than normal cells, allowing for greater biotin uptake, which can enhance drug delivery to tumors.

Graphical abstract: Recent advances in biotin-based therapeutic agents for cancer therapy
Review Article

Patterning technologies of quantum dots for color-conversion micro-LED display applications

A comprehensive summary of patterning technologies of quantum dots for construction of color-conversion layers in full-color micro-LED displays is provided.

Graphical abstract: Patterning technologies of quantum dots for color-conversion micro-LED display applications
Open Access Review Article

Advanced mechanisms and applications of microwave-assisted synthesis of carbon-based materials: a brief review

This review explores microwave interaction with carbon materials, focusing on heat generation, plasma excitation, reactor design, and applications, along with challenges and future prospects for synthesis in lab and industry.

Graphical abstract: Advanced mechanisms and applications of microwave-assisted synthesis of carbon-based materials: a brief review
Open Access Review Article

Recent advances in irradiation-mediated synthesis and tailoring of inorganic nanomaterials for photo-/electrocatalysis

In this review, the mechanisms and applications of radiation technology in the development of inorganic photo-/electrocatalysts are summarized, and its recent research progress, challenges, and future development prospects are further explored.

Graphical abstract: Recent advances in irradiation-mediated synthesis and tailoring of inorganic nanomaterials for photo-/electrocatalysis
Review Article

Recent progress in two-dimensional Bi2O2Se and its heterostructures

Overview of the key aspects of 2D Bi2O2Se and representative schematic diagrams.

Graphical abstract: Recent progress in two-dimensional Bi2O2Se and its heterostructures
Communication

Chemically anchored metal–hydrogel bilayers for ultrasoft and metallic biointerfaces

Chemically anchored, metal–hydrogel bilayers for soft, conductive and tissue-adhesive biointerfaces for next-generation bioelectronics.

Graphical abstract: Chemically anchored metal–hydrogel bilayers for ultrasoft and metallic biointerfaces
Communication

Complementary chemical adsorption of iodine species on MXene/carboxylated CNTs for high loading zinc–iodine batteries

In this work, a MXene/carboxylated CNT composite is prepared as an iodine host for high-loading zinc–iodine batteries. MXene binds I3 and c-MCNTs bind I, suppressing the shuttle effect and enabling high capacity and stable cycling.

Graphical abstract: Complementary chemical adsorption of iodine species on MXene/carboxylated CNTs for high loading zinc–iodine batteries
Communication

MoS2/Au–Ag@PEG nanosheets with plasmonic coupling effect-enhanced NIR-II photothermal therapy and silver ion release for combined treatment of MRSA infection

In this study, MoS2/Au–Ag@PEG nanosheets (MAAP NSs) with superior NIR-II photothermal properties and controlled silver ions release were prepared to treat methicillin-resistant Staphylococcus aureus (MRSA) wound and implant infections.

Graphical abstract: MoS2/Au–Ag@PEG nanosheets with plasmonic coupling effect-enhanced NIR-II photothermal therapy and silver ion release for combined treatment of MRSA infection
Open Access Communication

Investigating the impact of 3D trench structures on HfO2-based ferroelectric capacitors

3D trench HfO2-based ferroelectric capacitors demonstrate robust switching and reliability across varying hole diameters and temperatures, with minimal strain impact, advancing high-density non-volatile memory integration.

Graphical abstract: Investigating the impact of 3D trench structures on HfO2-based ferroelectric capacitors
Communication

Multifunctional electronic skin integrating dual-mode optical and pressure sensors for caregiving robots

Multifunctional robotic e-skin with vertically-integrated optical and pressure sensor arrays enables dual-mode operation for caregiving applications.

Graphical abstract: Multifunctional electronic skin integrating dual-mode optical and pressure sensors for caregiving robots
Communication

A long-staple design approach towards the scalable production of scaffolded DNA origami

This study demonstrates that scaffolded DNA origami can be successfully assembled using significantly elongated staple strands, thereby enabling the effective integration of enzymatic DNA production methods into DNA nanotechnology.

Graphical abstract: A long-staple design approach towards the scalable production of scaffolded DNA origami
Communication

A core–shell Cu2O@Cu-MOF for electromagnetic wave absorption and selective shielding

We synthesized a core–shell Cu2O@conductive MOF (Cu-HHTP) with thickness-insensitive EM wave absorption and frequency-selective shielding capabilities and designed an EM energy conversion device.

Graphical abstract: A core–shell Cu2O@Cu-MOF for electromagnetic wave absorption and selective shielding
Communication

Strong electric field enhancement near an amorphous silicon metasurface with non-vertical symmetry

The electric field and normalized intensity enhancement of a hybrid MD mode in a metasurface.

Graphical abstract: Strong electric field enhancement near an amorphous silicon metasurface with non-vertical symmetry
Communication

Graphene oxide/DNA-aerogel pressure and acoustic sensor

We present a flexible, biodegradable graphene aerogel sensor using graphene oxide and DNA, with high sensitivity (1.74 kPa⁻¹) at 0–130 Pa, suitable for wearable electronics, biomedical diagnostics, and soft robotics.

Graphical abstract: Graphene oxide/DNA-aerogel pressure and acoustic sensor
Open Access Communication

Multifunctional Ti3C2Tx-alginate foams for energy harvesting and fire warning

Ti3C2Tx is a versatile filler for biopolymer foams, introducing complementary functionalities like triboelectricity, thermal insulation and fire retardancy that can be exploited in energy and safety applications.

Graphical abstract: Multifunctional Ti3C2Tx-alginate foams for energy harvesting and fire warning
Communication

Biogenic fluorescent carbon dot-decorated mesoporous organosilica nanoparticles for enhanced bioimaging and chemotherapy

Biogenic fluorescent carbon dot-coated mesoporous organosilica nanoparticles show high porosity, strong luminescence, low cytotoxicity, enhanced drug loading, and selective cancer cell toxicity, offering promise for bioimaging and drug delivery applications.

Graphical abstract: Biogenic fluorescent carbon dot-decorated mesoporous organosilica nanoparticles for enhanced bioimaging and chemotherapy
Open Access Communication

Motion image feature extraction through voltage modulated memory dynamics in an IGZO thin-film transistor

We propose an IGZO TFT enabling efficient motion history image preprocessing through voltage-modulated fading memory dynamics.

Graphical abstract: Motion image feature extraction through voltage modulated memory dynamics in an IGZO thin-film transistor
Communication

Regulation of closed pores in hard carbon for enhanced electrochemical sodium storage

Hard carbon materials with high closed pores content and suitable microstructure were prepared by using the template method and acid treatment, which improved sodium-ion storage.

Graphical abstract: Regulation of closed pores in hard carbon for enhanced electrochemical sodium storage
Open Access Communication

Tunable magnetoelectricity and polarity in van der Waals antiferromagnetic CuCr1−xFexP2S6

Magnetoelectricity coupling is realized in the van der Waals CuCrP2S6 system by doping.

Graphical abstract: Tunable magnetoelectricity and polarity in van der Waals antiferromagnetic CuCr1−xFexP2S6
Communication

Spillover of active oxygen intermediates of binary RuO2/Nb2O5 nanowires for highly active and robust acidic oxygen evolution

Spillover of active oxygen species from the Ru site to the Nb site in binary RuO2/Nb2O5 electrocatalysts enables highly active and robust performance for the acidic oxygen evolution reaction.

Graphical abstract: Spillover of active oxygen intermediates of binary RuO2/Nb2O5 nanowires for highly active and robust acidic oxygen evolution
Open Access Communication

Giant anisotropic piezoresponse of layered ZrSe3

The anisotropic piezoresponse of a ZrSe3 device under tensile strain along different angles, with gauge factors GFb-axis = 68 and GFa-axis = 4. Leading to an exceptionally high anisotropy ratio of AR ≈ 90%.

Graphical abstract: Giant anisotropic piezoresponse of layered ZrSe3
Open Access Communication

Unraveling energetics and states of adsorbing oxygen species with MoS2 for modulated work function

Oxygen doping on MoS2 provides a promising method for sulfur vacancy healing, carrier mass controlling, contact resistance reduction, and anchoring of surface electron dopants.

Graphical abstract: Unraveling energetics and states of adsorbing oxygen species with MoS2 for modulated work function
Communication

Edge-doped substituents as an emerging atomic-level strategy for enhancing M–N4–C single-atom catalysts in electrocatalysis of the ORR, OER, and HER

Study on edge-doped M–N4–C catalysts (MN4) reveals substituent effects (including electronic effects and structural effects) on ORR, OER, HER activities.

Graphical abstract: Edge-doped substituents as an emerging atomic-level strategy for enhancing M–N4–C single-atom catalysts in electrocatalysis of the ORR, OER, and HER
Paper

Nanoscale carbonaceous materials via element hyperaccumulation for electrochemical desalination application

A new and green biosynthesis path of a nanoscale carbon for electrochemical desalination application.

Graphical abstract: Nanoscale carbonaceous materials via element hyperaccumulation for electrochemical desalination application
Open Access Paper

Enhancement of deep ultraviolet chiral molecular sensing performance by collective lattice resonances of diamond nanostructure arrays

Simulation reveals that diamond nanodisk arrays support deep ultraviolet collective resonances with electric and magnetic nature. Their coupling generates greatly enhanced non-local superchiral nearfields that boost chiral molecule sensing.

Graphical abstract: Enhancement of deep ultraviolet chiral molecular sensing performance by collective lattice resonances of diamond nanostructure arrays
Paper

Ligand-controlled Fe3O4 nanoparticles as reusable adsorbents for dye removal in the chemical recycling of coloured polyester textiles

Magnetically retrievable hydrophobic-ligand Fe3O4 nanoadsorbents rapidly decolorize PET depolymerization products, enabling recovery of high-purity monomer.

Graphical abstract: Ligand-controlled Fe3O4 nanoparticles as reusable adsorbents for dye removal in the chemical recycling of coloured polyester textiles
Paper

Magnetic alignment of carbon nanotubes in polymers for enhanced thermal conductivity

Preparation of thermally conductive materials with low filler contents using a magnetic field.

Graphical abstract: Magnetic alignment of carbon nanotubes in polymers for enhanced thermal conductivity
Paper

Design of an RSM-optimized magnetic–fluorescent nanoprobe utilizing geothermal silica for enhanced bacterial sensing

RSM-optimized geothermal silica nanocomposites synergize magnetic and fluorescent functionalities for ultra-sensitive, rapid detection of Staphylococcus aureus, paving a sustainable path in biosensor engineering.

Graphical abstract: Design of an RSM-optimized magnetic–fluorescent nanoprobe utilizing geothermal silica for enhanced bacterial sensing
Open Access Paper

Architecturally robust design of ethylenediamine-assisted polyaniline/MXene nanohybrids for symmetric pouch-cell supercapacitors

The effective integration of EDA-intercalated MXene with in situ polymerized PANI successfully overcomes typical MXene challenges, resulting in enhanced supercapacitor capacitive performance which could be beneficial for real-time usage.

Graphical abstract: Architecturally robust design of ethylenediamine-assisted polyaniline/MXene nanohybrids for symmetric pouch-cell supercapacitors
Open Access Paper

A portable and versatile rGO-Co3O4-Pt nanocomposite-based electrochemical sensor for ex vivo and in vivo cardiac oxidative stress monitoring

The excessive production of reactive oxygen species (ROS) disrupts redox homeostasis, contributing to the development of cardiovascular diseases.

Graphical abstract: A portable and versatile rGO-Co3O4-Pt nanocomposite-based electrochemical sensor for ex vivo and in vivo cardiac oxidative stress monitoring
Paper

Reductant-selected formation of copper nanoclusters with crystallization-induced emission enhancement performance

This work reported the reductant-selected formation of structurally comparable Cu nanoclusters with different photoluminescence behaviours in the crystalline state.

Graphical abstract: Reductant-selected formation of copper nanoclusters with crystallization-induced emission enhancement performance
Paper

Formamidinium-based Pb–Sn mixed-halide perovskite solar cells with near-optimal bandgap: FAPb1−xSnx(I0.8Br0.2)3

FA-based Pb–Sn binary perovskites with I–Br blend were developed via compositional engineering, demonstrating bandgaps close to the ideal range for single-junction solar cells.

Graphical abstract: Formamidinium-based Pb–Sn mixed-halide perovskite solar cells with near-optimal bandgap: FAPb1−xSnx(I0.8Br0.2)3
Open Access Paper

Method of high-order advanced lithography overlay correction to enhance the manufacturing performance of integrated circuits

High-order overlay correction in advanced lithography using piezoelectric actuators, thermal control units, and micro-mechanical clamps to regulate stress and temperature for effective compensation of high-order overlay errors.

Graphical abstract: Method of high-order advanced lithography overlay correction to enhance the manufacturing performance of integrated circuits
Open Access Paper

Synthesis of carbon quantum dots based on hemp leaves and cysteamine for latent fingerprint detection and their potential therapeutic anticancer application

The synthesis of HC-CQDs from Hemp leaves and cysteamine hydrochloride utilized to detect LFPs and possibly used for against lung cancer cells.

Graphical abstract: Synthesis of carbon quantum dots based on hemp leaves and cysteamine for latent fingerprint detection and their potential therapeutic anticancer application
Open Access Paper

Report on the relevance of perovskite module outdoor ageing performance and indoor UV degradation trend

Perovskite solar cells achieve outstanding efficiencies, yet limited durability hinders their commercial promise. Here we present a three-year study that relates UV-induced accelerated ageing to the outdoor performance of perovskite modules.

Graphical abstract: Report on the relevance of perovskite module outdoor ageing performance and indoor UV degradation trend
Open Access Paper

NiFe-LDH as a bifunctional electrocatalyst for efficient water and seawater electrolysis: enhanced oxygen evolution and hydrogen evolution reactions

In this work, NiFe-LDH nanospheres were prepared by a simple hydrothermal synthesis method. The synthesized product can be directly used as a dual functional electrocatalyst for efficient water and seawater electrolysis.

Graphical abstract: NiFe-LDH as a bifunctional electrocatalyst for efficient water and seawater electrolysis: enhanced oxygen evolution and hydrogen evolution reactions
115 items - Showing page 1 of 2

About this collection

To celebrate the start of the Year of the Horse and mark the Chinese New Year and Lunar New Year, this post-publication collection features some of the most popular articles published in Nanoscale Horizons, Nanoscale and Nanoscale Advances in 2025 by corresponding authors based in countries and regions celebrating Chinese New Year or the Lunar New Year.

Congratulations to all of the authors whose articles have been featured, and we wish you a happy, healthy and prosperous year of the horse!


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