Themed collection Nanoscale 2023 Lunar New Year Collection

50 items
Minireview

Membranes prepared from graphene-based nanomaterials for water purification: a mini-review

Here, we present the recent progress in the synthesis, property–performance correlation, and novel work on graphene-based nanomaterials (GBnMs) in water treatment technologies, specifically nanofiltration and solar desalination applications.

Graphical abstract: Membranes prepared from graphene-based nanomaterials for water purification: a mini-review
From the themed collection: Nanoscale 2023 Emerging Investigators
Minireview

Self-supported metal–organic framework-based nanostructures as binder-free electrodes for supercapacitors

This minireview highlights the recent progress in the construction of self-supported MOF-based nanostructures including pristine MOFs, MOF composites and MOF derivative arrays, and their application in SCs.

Graphical abstract: Self-supported metal–organic framework-based nanostructures as binder-free electrodes for supercapacitors
Minireview

Recent advances in flexible and wearable sensors for monitoring chemical molecules

This review focuses on the wearability of chemical sensors and analyzes pros and cons relating to practical wearable applications. We also discuss the current challenges and outlook relating to flexible and wearable chemical sensors.

Graphical abstract: Recent advances in flexible and wearable sensors for monitoring chemical molecules
From the themed collection: Recent Review Articles
Open Access Review Article

Potential roles of hyaluronic acid in in vivo CAR T cell reprogramming for cancer immunotherapy

Hyaluronic acid-based nanoparticles can be promising tools for gene delivery in in vivo reprogramming CAR T cells, as well-designed carriers are needed for targeting and transducing circulating T cells.

Graphical abstract: Potential roles of hyaluronic acid in in vivo CAR T cell reprogramming for cancer immunotherapy
Open Access Review Article

Halide perovskite single crystals: growth, characterization, and stability for optoelectronic applications

Metal halide perovskite materials have received significant attention as promising candidates for optoelectronic applications with tremendous potential, owing to their outstanding optoelectronic properties and facile solution-processed fabrication.

Graphical abstract: Halide perovskite single crystals: growth, characterization, and stability for optoelectronic applications
From the themed collection: Recent Review Articles
Review Article

Progress in the use of organic potassium salts for the synthesis of porous carbon nanomaterials: microstructure engineering for advanced supercapacitors

Multifunctional organic potassium salts in the synthesis of porous carbon nanomaterials are elucidated and constructive viewpoints are provided for the cost-effective and molecular level engineering of porous carbon nanomaterials for supercapacitors.

Graphical abstract: Progress in the use of organic potassium salts for the synthesis of porous carbon nanomaterials: microstructure engineering for advanced supercapacitors
Review Article

Synthesis, modification and application of titanium dioxide nanoparticles: a review

This review mainly discusses the development of TiO2-based materials including synthetic methods, dopants and structural modifications, and applications. A comprehensive analysis of the different aspects of TiO2 is described.

Graphical abstract: Synthesis, modification and application of titanium dioxide nanoparticles: a review
Review Article

Application of patterned sapphire substrate for III-nitride light-emitting diodes

This review summarizes the applications of patterned sapphire substrates for III-nitride light-emitting diodes and provides an outlook of future LED development based on patterned sapphire substrates.

Graphical abstract: Application of patterned sapphire substrate for III-nitride light-emitting diodes
From the themed collection: Recent Review Articles
Communication

Ultrathin Ti-doped WO3 nanosheets realizing selective photoreduction of CO2 to CH3OH

Doping Ti atoms into ultrathin WO3 nanosheets can enhance the separation of photogenerated carriers and facilitate charge transfer, which is beneficial for CO2 activation and COOH* formation, thus promoting the formation of CH3OH.

Graphical abstract: Ultrathin Ti-doped WO3 nanosheets realizing selective photoreduction of CO2 to CH3OH
From the themed collection: CO2 capture and conversion
Open Access Paper

Tailoring the MOF structure via ligand optimization afforded a dandelion flower like CoS/Co–Nx/CoNi/NiS catalyst to enhance the ORR/OER in zinc–air batteries

Tailoring the MOF structure through ligand optimization and MOF derived electrocatalyst exhibit excellent ORR/OER kinetics and ZABs performance due to the synergetic effects of the CoNi alloys and the N and S-incorporated carbon skeleton.

Graphical abstract: Tailoring the MOF structure via ligand optimization afforded a dandelion flower like CoS/Co–Nx/CoNi/NiS catalyst to enhance the ORR/OER in zinc–air batteries
From the themed collection: Nanoscale 2023 Lunar New Year Collection
Paper

In situ generated Cu–Co–Zn trimetallic sulfide nanoflowers on copper foam: a highly efficient OER electrocatalyst

The prepared CuCoZn–S-3 electrode has a unique nanoflower-like structure and exhibits excellent electrocatalytic performance and durability under alkaline conditions.

Graphical abstract: In situ generated Cu–Co–Zn trimetallic sulfide nanoflowers on copper foam: a highly efficient OER electrocatalyst
Paper

Enhancement of self-trapped excitons and near-infrared emission in Bi3+/Er3+ co-doped Cs2Ag0.4Na0.6InCl6 double perovskite

Self-trapped exciton-derived energy transfer is a possible strategy to enhance the emission of Er at 1540 nm in lead-free double perovskite structures.

Graphical abstract: Enhancement of self-trapped excitons and near-infrared emission in Bi3+/Er3+ co-doped Cs2Ag0.4Na0.6InCl6 double perovskite
From the themed collection: Halide Perovskite Optoelectronics
Paper

Highly luminescent dual-phase CsPbBr3/Cs4PbBr6 microcrystals for a wide color gamut for backlight displays

Ultrasonication-assisted, ligand-free synthesis of CsPbBr3/Cs4PbBr6 dual-phase MCs exhibit diverse morphologies, confirming that CsPbBr3 NCs are the photoluminescent sites with PLQY of 82.7%.

Graphical abstract: Highly luminescent dual-phase CsPbBr3/Cs4PbBr6 microcrystals for a wide color gamut for backlight displays
From the themed collection: Nanoscale 2023 Lunar New Year Collection
Paper

Nanomolar LL-37 induces permeability of a biomimetic mitochondrial membrane

Single-molecule observations show that nanomolar LL-37 can directly permeate the lipid membrane in a lipid-specific and protein-independent manner.

Graphical abstract: Nanomolar LL-37 induces permeability of a biomimetic mitochondrial membrane
From the themed collection: Nanoscale 2023 Lunar New Year Collection
Paper

Green synthesis of highly stable CsPbBr3 perovskite nanocrystals using natural deep eutectic solvents as solvents and surface ligands

Perovskite nanocrystals (PNCs) have attracted widespread attention as promising materials for the optoelectronic field due to their remarkable photophysical properties and structural tunability.

Graphical abstract: Green synthesis of highly stable CsPbBr3 perovskite nanocrystals using natural deep eutectic solvents as solvents and surface ligands
Paper

Hydrogel-based printing strategy for high-performance flexible thermoelectric generators

The hydrogel-based printing strategy was proposed to fabricate the high-performance flexible thermoelectric generators with the high-power density, where the stable water-locking network can limit the fluidity of the pastes.

Graphical abstract: Hydrogel-based printing strategy for high-performance flexible thermoelectric generators
From the themed collection: Nanomaterials for printed electronics
Paper

Core–satellite–satellite hierarchical nanostructures: assembly, plasmon coupling, and gap-selective surface-enhanced Raman scattering

We perform hierarchical assembly of gold nanoparticles into core–satellite–satellite nanostructures that possess two different types of controllable nanogaps. We investigate their plasmon coupling properties and nanogap-dependent SERS enhancements.

Graphical abstract: Core–satellite–satellite hierarchical nanostructures: assembly, plasmon coupling, and gap-selective surface-enhanced Raman scattering
From the themed collection: Nanoscale 2023 Lunar New Year Collection
Paper

Decoupling of CVD-grown epitaxial graphene using NaCl intercalation

Intercalation of one monolayer of NaCl film leads to efficient geometric and electronic decoupling of single-layer graphene from the supporting Cu substrate.

Graphical abstract: Decoupling of CVD-grown epitaxial graphene using NaCl intercalation
From the themed collection: Nanoscale 2023 Lunar New Year Collection
Paper

Highly-efficient radiative thermal rectifiers based on near-field gap variations

A schematic diagram of the proposed design scheme for highly-efficient radiative thermal rectifiers based on thermally-induced near-field gap variations.

Graphical abstract: Highly-efficient radiative thermal rectifiers based on near-field gap variations
From the themed collection: Nanoscale quantum technologies
Paper

A covalent organic framework/graphene aerogel electrocatalyst for enhanced overall water splitting

The in situ growth of covalent organic frameworks at the macroscale on graphene aerogel surfaces for enhanced electrochemical water splitting.

Graphical abstract: A covalent organic framework/graphene aerogel electrocatalyst for enhanced overall water splitting
From the themed collection: Nanoscale 2023 Lunar New Year Collection
Paper

Programmable precise kinetic control over crystal phase, size, and equilibrium in spontaneous metathesis reaction for Cs–Pb–Br nanostructure patterns at room temperature

Growth kinetics involved in spontaneous random clustering of perovskite precursors to a particular cesium–lead–bromide (Cs–Pb–Br) nanocrystal (NC) is a poorly understood phenomenon and its spectroscopic investigation is highly challenging.

Graphical abstract: Programmable precise kinetic control over crystal phase, size, and equilibrium in spontaneous metathesis reaction for Cs–Pb–Br nanostructure patterns at room temperature
From the themed collection: Nanoscale 2023 Lunar New Year Collection
Open Access Paper

Parallel DNA circuits by autocatalytic strand displacement and nanopore readout

Parallel DNA circuits are constructed using autocatalytic strand displacement reactions and measured using a nanopore multiplexed sensing platform.

Graphical abstract: Parallel DNA circuits by autocatalytic strand displacement and nanopore readout
Paper

Heterojunction MnO2-nanosheet-decorated Ag nanowires with enhanced oxidase-like activity for the sensitive dual-mode detection of glutathione

The biocatalytic design of nanomaterials with enzyme-like activity is considered a reliable and promising toolkit for the generation of diagnostic agents in complex biological microenvironments.

Graphical abstract: Heterojunction MnO2-nanosheet-decorated Ag nanowires with enhanced oxidase-like activity for the sensitive dual-mode detection of glutathione
From the themed collection: Nanoscale 2023 Lunar New Year Collection
Paper

An inflammation-targeted nanoparticle with bacteria forced release of polymyxin B for pneumonia therapy

PMB-HA nanoparticles constructed by self-assembly of hyaluronic acid and polymyxin B can precisely target the CD44 receptors over-expressed in pneumonia region and kill bacteria through the competitive binding of polymyxin B and lipopolysaccharide.

Graphical abstract: An inflammation-targeted nanoparticle with bacteria forced release of polymyxin B for pneumonia therapy
From the themed collection: Nanoscale 2023 Lunar New Year Collection
Open Access Paper

Nanoenzyme–chitosan hydrogel complex with cascade catalytic and self-reinforced antibacterial performance for accelerated healing of diabetic wounds

A multifunctional hydrogel complex consisting of the GCNE composite and thermo-responsive chitosan can perform cascade catalytic reactions to continuously supply oxygen and strengthen the antibacterial activities in diabetic wound healing.

Graphical abstract: Nanoenzyme–chitosan hydrogel complex with cascade catalytic and self-reinforced antibacterial performance for accelerated healing of diabetic wounds
From the themed collection: Nanoscale 2023 Emerging Investigators
Open Access Paper

Nanoparticle-induced chemoresistance: the emerging modulatory effects of engineered nanomaterials on human intestinal cancer cell redox metabolic adaptation

Exposure to non-cytotoxic doses of engineered nanomaterials induce reactive oxygen species stress response cascades in human intestinal cancer cells to resist chemotherapeutics.

Graphical abstract: Nanoparticle-induced chemoresistance: the emerging modulatory effects of engineered nanomaterials on human intestinal cancer cell redox metabolic adaptation
From the themed collection: Nanoscale 2023 Emerging Investigators
Paper

Synergistic doping and structural engineering over dendritic NiMoCu electrocatalyst enabling highly efficient hydrogen production

A dendritic solid solution electrocatalyst, NiMoCu-NF, was fabricated, in which synergistic bimetal doping and a nanostructure-induced “Gas Microfluidic Pumping” effect ensure its considerable HER and UOR electrocatalytic performance.

Graphical abstract: Synergistic doping and structural engineering over dendritic NiMoCu electrocatalyst enabling highly efficient hydrogen production
From the themed collection: Nanoscale 2023 Lunar New Year Collection
Open Access Paper

Machine learning ensures rapid and precise selection of gold sea-urchin-like nanoparticles for desired light-to-plasmon resonance

Machine learning ensures rapid and precise selection of gold sea-urchin-like nanoparticles for anticipated light-to-plasmon resonance.

Graphical abstract: Machine learning ensures rapid and precise selection of gold sea-urchin-like nanoparticles for desired light-to-plasmon resonance
From the themed collection: Nanoscale 2023 Lunar New Year Collection
Paper

Theoretical insights into the electroreduction of nitrate to ammonia on graphene-based single-atom catalysts

The catalytic mechanism, activity trend, and activity origin of electroreduction of nitrate to ammonia on graphene-based single-atom catalysts was systematically studied and unrevealed.

Graphical abstract: Theoretical insights into the electroreduction of nitrate to ammonia on graphene-based single-atom catalysts
From the themed collection: Nanoscale 2023 Lunar New Year Collection
Paper

Facile fabrication of hierarchical textures for substrate-independent and durable superhydrophobic surfaces

We propose a facile femtosecond laser technology to achieve superhydrophobicity on various substrate surfaces with anti-friction ability.

Graphical abstract: Facile fabrication of hierarchical textures for substrate-independent and durable superhydrophobic surfaces
From the themed collection: Nanoscale 2023 Lunar New Year Collection
Paper

Cracking enabled unclonability in colloidal crystal patterns authenticated with computer vision

The first physically-unclonable colloidal-crystal pattern enabled by the random micro-cracks, which are verifiable with convenient and accurate computer vision, has been demonstrated.

Graphical abstract: Cracking enabled unclonability in colloidal crystal patterns authenticated with computer vision
From the themed collection: Nanoscale 2023 Lunar New Year Collection
Paper

Prediction of 2D IV–VI semiconductors: auxetic materials with direct bandgap and strong optical absorption

Auxetic materials are highly desirable for advanced applications because of their negative Poisson's ratios, which are rather scarce in two-dimensional materials.

Graphical abstract: Prediction of 2D IV–VI semiconductors: auxetic materials with direct bandgap and strong optical absorption
From the themed collection: Nanoscale 2023 Lunar New Year Collection
Paper

Regulating the electronic and magnetic properties of 1T′-ReS2 by fabricating nanoribbons and transition-metal doping: a theoretical study

Regulation of the electronic and magnetic properties of 1T′-ReS2 through fabricating nanoribbons and transition-metal doping was systematically studied by density functional theoretical simulations.

Graphical abstract: Regulating the electronic and magnetic properties of 1T′-ReS2 by fabricating nanoribbons and transition-metal doping: a theoretical study
From the themed collection: Nanoscale 2023 Lunar New Year Collection
Paper

Novel MOF-derived 3D hierarchical needlelike array architecture with excellent EMI shielding, thermal insulation and supercapacitor performance

Novel 3D hierarchical needlelike array architecture integrates excellent EMI shielding, thermal insulation and supercapacitor performance, which offers a new inspiration for the design and construction of portable intelligent devices.

Graphical abstract: Novel MOF-derived 3D hierarchical needlelike array architecture with excellent EMI shielding, thermal insulation and supercapacitor performance
From the themed collection: Nanoscale 2023 Lunar New Year Collection
Paper

Nonlinear plexcitons: excitons coupled with plasmons in two-photon absorption

The strong excitons of donor–acceptor system in two-photon absorption are strongly enhanced by local surface plasmon resonance excited by two-photon, which reveals strong nonlinear plexciton properties.

Graphical abstract: Nonlinear plexcitons: excitons coupled with plasmons in two-photon absorption
From the themed collection: Nanoscale 2023 Lunar New Year Collection
Paper

Computational screening of single-atom catalysts supported by VS2 monolayers for electrocatalytic oxygen reduction/evolution reactions

Single Ni atom anchored on pristine and N-doped VS2 monolayer can perform as bifunctional catalyst for ORR and OER.

Graphical abstract: Computational screening of single-atom catalysts supported by VS2 monolayers for electrocatalytic oxygen reduction/evolution reactions
Paper

Nanostructured chromium-based broadband absorbers and emitters to realize thermally stable solar thermophotovoltaic systems

The efficiency of traditional solar cells is constrained due to the Shockley–Queisser limit, to circumvent this theoretical limit, the concept of solar thermophotovoltaics (STPVs) has been introduced.

Graphical abstract: Nanostructured chromium-based broadband absorbers and emitters to realize thermally stable solar thermophotovoltaic systems
Paper

Ruthenium nanoparticles integrated bimetallic metal–organic framework electrocatalysts for multifunctional electrode materials and practical water electrolysis in seawater

There is still a significant technical hurdle in the integration of better electrocatalysts with coordinated functional units and morphological integrity that improves reversible electrochemical activity, electrical conductivity, and mass transport capabilities.

Graphical abstract: Ruthenium nanoparticles integrated bimetallic metal–organic framework electrocatalysts for multifunctional electrode materials and practical water electrolysis in seawater
From the themed collection: Nanoscale 2023 Lunar New Year Collection
Paper

Robust multifunctional fluorine-free superhydrophobic fabrics for high-efficiency oil–water separation with ultrahigh flux

SiO2–TiO2/PDMS-coated superhydrophobic fabrics with excellent durability are fabricated by the combination of micron-sized silica and nano-sized titanium dioxide, which can be used in water-proofing, UV-protection and oil–water separation.

Graphical abstract: Robust multifunctional fluorine-free superhydrophobic fabrics for high-efficiency oil–water separation with ultrahigh flux
From the themed collection: Nanoscale 2023 Lunar New Year Collection
Paper

An in situ generated 3D porous nanostructure on 2D nanosheets to boost the oxygen evolution reaction for water-splitting

Superhydrophilic 2D nanosheets decorated with a 3D porous nanostructure exhibit outstanding electrocatalytic activity and stability toward OER and overall water-splitting.

Graphical abstract: An in situ generated 3D porous nanostructure on 2D nanosheets to boost the oxygen evolution reaction for water-splitting
From the themed collection: Nanoscale 2023 Lunar New Year Collection
Paper

Fast and recoverable NO2 detection achieved by assembling ZnO on Ti3C2Tx MXene nanosheets under UV illumination at room temperature

The excellent conductivity of Ti3C2Tx and the rich charge carriers of ZnO under UV illumination can endow the gas sensors with greatly enhanced performances in response/recovery speed, sensitivity and cycle stability toward NO2 at room temperature.

Graphical abstract: Fast and recoverable NO2 detection achieved by assembling ZnO on Ti3C2Tx MXene nanosheets under UV illumination at room temperature
From the themed collection: Nanoscale 2023 Lunar New Year Collection
Paper

A voltage-controllable VO2 based metamaterial perfect absorber for CO2 gas sensing application

A voltage-controllable VO2 based metamaterial perfect absorber (MPA) is proposed for CO2 gas sensing application.

Graphical abstract: A voltage-controllable VO2 based metamaterial perfect absorber for CO2 gas sensing application
From the themed collection: Nanoscale 2023 Lunar New Year Collection
Paper

Cerium oxide nanozyme attenuates periodontal bone destruction by inhibiting the ROS–NFκB pathway

A detailed anti-inflammatory mechanism study of CeO2 nanozymes with reactive oxygen species scavenging abilities toward periodontitis treatment advances future nanozyme-based clinical applications.

Graphical abstract: Cerium oxide nanozyme attenuates periodontal bone destruction by inhibiting the ROS–NFκB pathway
Paper

A biopolymer-gated ionotronic junctionless oxide transistor array for spatiotemporal pain-perception emulation in nociceptor network

A 5 × 5 ionotronic junctionless indium-tin oxide (ITO) transistor array is reported for emulating a nociceptor network based on controlling the gate-to-channel distance.

Graphical abstract: A biopolymer-gated ionotronic junctionless oxide transistor array for spatiotemporal pain-perception emulation in nociceptor network
From the themed collection: Nanoscale 2023 Lunar New Year Collection
Paper

Synthesis of Co/CeO2 hetero-particles with abundant oxygen-vacancies supported by carbon aerogels for ORR and OER

We present a hybrid composed of CeO2 decorated Co nanoparticles supported on 3D porous carbon aerogels (Co-CeO2/C aerogels) with superior electrocatalytic performance towards the both ORR and OER by CeCl3/K3Co(CN)6-chitosan hydrogels derived method.

Graphical abstract: Synthesis of Co/CeO2 hetero-particles with abundant oxygen-vacancies supported by carbon aerogels for ORR and OER
Paper

Bimetal metal–organic framework domino micro-reactor for synergistic antibacterial starvation/chemodynamic therapy and robust wound healing

We devised a domino micro-reactor (BMOF-DMR) for long-term anti-infection and robust wound healing, which is achieved through sequences of domino reactions specifically triggered by an infectious microenvironment.

Graphical abstract: Bimetal metal–organic framework domino micro-reactor for synergistic antibacterial starvation/chemodynamic therapy and robust wound healing
From the themed collection: Nanoscale 2023 Lunar New Year Collection
Paper

One-step fabrication of eco-friendly superhydrophobic fabrics for high-efficiency oil/water separation and oil spill cleanup

Using 1,4-conjugate addition reaction, PEI/TMSPA/SiO2/DTMS fabrics with excellent superhydrophobic property are fabricated, which can be used for high-efficiency oil/water separation and oil spill cleanup.

Graphical abstract: One-step fabrication of eco-friendly superhydrophobic fabrics for high-efficiency oil/water separation and oil spill cleanup
From the themed collection: Nanoscale 2023 Lunar New Year Collection
Paper

Integration of a capacitor to a 3-D DNA walker and a biofuel cell-based self-powered system for ultrasensitive bioassays of microRNAs

A self-powered microRNA biosensor with triple signal amplification systems was assembled through the integration of three-dimensional DNA walkers, enzymatic biofuel cells and a capacitor.

Graphical abstract: Integration of a capacitor to a 3-D DNA walker and a biofuel cell-based self-powered system for ultrasensitive bioassays of microRNAs
Paper

Improved zT in Nb5Ge3–GeTe thermoelectric nanocomposite

Doping high electrical conductivity Nb5Ge3 precipitates into GeTe results in nanoprecipitates phonon scattering, while retaining electrical mobility. As a result, thermoelectric zT of GeTe is drastically enhanced to 2.0 at 723 K.

Graphical abstract: Improved zT in Nb5Ge3–GeTe thermoelectric nanocomposite
From the themed collection: Nanoscale 2023 Lunar New Year Collection
Paper

Engineering the oxygen vacancies of rocksalt-type high-entropy oxides for enhanced electrocatalysis

A new type of high-entropy oxides was synthesized by a modified solid-state reaction. The oxygen vacancies in the bulk determine the electrical conductivity, which is a key factor for the electrocatalytic performance.

Graphical abstract: Engineering the oxygen vacancies of rocksalt-type high-entropy oxides for enhanced electrocatalysis
From the themed collection: Nanoscale 2023 Lunar New Year Collection
50 items

About this collection

To mark the Lunar New Year, this web collection features 50 of the most popular articles published in Nanoscale in 2022 by corresponding authors based in countries celebrating the Lunar New Year.

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

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