Themed collection 2023 Journal of Materials Chemistry C Most Popular Articles

30 items
Review Article

Phthalocyanines, porphyrins and other porphyrinoids as components of perovskite solar cells

This review highlights the most relevant works on phthalocyanines, porphyrins and other porphyrinoids as components of perovskite solar cells from the last four years acting as hole transporting materials, additives, and interlayers.

Graphical abstract: Phthalocyanines, porphyrins and other porphyrinoids as components of perovskite solar cells
Review Article

Amorphous carbon material of daily carbon ink: emerging applications in pressure, strain, and humidity sensors

In this review, the state-of-the-art advances in amorphous carbon materials of the daily carbon ink for pressure, strain, and humidity sensors are presented and discussed.

Graphical abstract: Amorphous carbon material of daily carbon ink: emerging applications in pressure, strain, and humidity sensors
Review Article

Recent advances in the development of phenothiazine and its fluorescent derivatives for optoelectronic applications

Phenothiazine is one of the most extensively investigated aromatic compounds owing to its unique optical and electronic properties. This review highlighted the recent advances in the development of phenothiazine-based fluorescent materials for applications in various fields.

Graphical abstract: Recent advances in the development of phenothiazine and its fluorescent derivatives for optoelectronic applications
Communication

Mechanophotonics: fabrication of a 2 × 2 hybrid directional coupler from flexible organic crystals

A miniature, multifunctional hybrid organic directional coupler (HDC), constructed from two different flexible organic crystals, splits the optical signal and delivers input-dependent optical outputs.

Graphical abstract: Mechanophotonics: fabrication of a 2 × 2 hybrid directional coupler from flexible organic crystals
Communication

Hydrothermal synthesis of stable lead-free Cs4MnBi2Cl12 perovskite single crystals for efficient photocatalytic degradation of organic pollutants

For the first time, Cs4MnBi2Cl12 single crystals were employed for photocatalytic degradation of organic pollutants. Joint experiment–theory characterizations reveal the good stability, high recovery and utilization rates of Cs4MnBi2Cl12.

Graphical abstract: Hydrothermal synthesis of stable lead-free Cs4MnBi2Cl12 perovskite single crystals for efficient photocatalytic degradation of organic pollutants
Communication

Circularly polarized luminescent organogels based on fluorescence resonance energy transfer in an achiral polymer system

Circularly polarized luminescent chiral organogels based on fluorescence resonance energy transfer are fabricated by supramolecular co-assembly in an achiral polymer system, in which a wavelength shift and amplified glum are achieved.

Graphical abstract: Circularly polarized luminescent organogels based on fluorescence resonance energy transfer in an achiral polymer system
Open Access Communication

Solvent-free temperature gradient melt formation of efficient visible-to-UV photon upconversion organic films with subsolar threshold and over 100 h photostability in air

Organic films formed by temperature-gradient solidification up-convert visible light of subsolar intensity into UV light in air with record-long photostability.

Graphical abstract: Solvent-free temperature gradient melt formation of efficient visible-to-UV photon upconversion organic films with subsolar threshold and over 100 h photostability in air
Open Access Paper

Molecular properties controlling chirality transfer to halide perovskite: computational insights

Computationally investigate chirality transfer effect from chiral ligands bound to the surface of a lead-halide perovskite nanomaterial. By changing the molecular polarity of the chiral molecules, the chirality of the system can be tuned.

Graphical abstract: Molecular properties controlling chirality transfer to halide perovskite: computational insights
From the themed collection: #MyFirstJMCC
Open Access Paper

Band gap tuning through cation and halide alloying in mechanochemically synthesized Cs3(Sb1−xBix)2Br9 and Cs3Sb2(I1−xBrx)9 solid solutions

Modulation of the optical properties of lead-free defective perovskites can contribute to the design of optimized materials for several applications ranging from photodetection to photocatalysis.

Graphical abstract: Band gap tuning through cation and halide alloying in mechanochemically synthesized Cs3(Sb1−xBix)2Br9 and Cs3Sb2(I1−xBrx)9 solid solutions
Open Access Paper

Multifunctional flexible ferroelectric thick-film structures with energy storage, piezoelectric and electrocaloric performance

Flexible ferroelectric PMN–35PT thick film structures with energy storage, piezoelectric and electrocaloric performance were prepared by the room-temperature aerosol deposition method.

Graphical abstract: Multifunctional flexible ferroelectric thick-film structures with energy storage, piezoelectric and electrocaloric performance
Open Access Paper

Influence of excitation and detection geometry on optical temperature readouts – reabsorption effects in luminescence thermometry

Influence of excitation and detection geometry on optical temperature readouts – reabsorption effects in luminescence thermometry.

Graphical abstract: Influence of excitation and detection geometry on optical temperature readouts – reabsorption effects in luminescence thermometry
Open Access Paper

Color tuning of multi-resonant thermally activated delayed fluorescence emitters based on fully fused polycyclic amine/carbonyl frameworks

Two newly developed carboynyl-based multi-resonant TADF show bright green-yellow emission. These were used as emitters in both OLEDs, and LECs.

Graphical abstract: Color tuning of multi-resonant thermally activated delayed fluorescence emitters based on fully fused polycyclic amine/carbonyl frameworks
From the themed collection: #MyFirstJMCC
Open Access Paper

Simulation of polymeric mixed ionic and electronic conductors with a combined classical and quantum mechanical model

We present a model enabling the simulation of doped polymers in the vicinity of water and ions taking into account large electronic rearrangements coupled with slow dynamics.

Graphical abstract: Simulation of polymeric mixed ionic and electronic conductors with a combined classical and quantum mechanical model
From the themed collection: Journal of Materials Chemistry C HOT Papers
Open Access Paper

The fluorination effect: the importance of backbone planarity in achieving high performance ambipolar field effect transistors

Understanding the strategy of fluorination to control π-conjugation and intra and interchain interactions for the rational design of improved semiconducting polymers.

Graphical abstract: The fluorination effect: the importance of backbone planarity in achieving high performance ambipolar field effect transistors
Open Access Paper

Thermal quenching of lanthanide luminescence via charge transfer states in inorganic materials

The thermal quenching data of 5d emission from Eu2+ and Ce3+ and 4f emission from Pr3+, Eu3+, and Tb3+ are shown to be consistent with vacuum referred binding energy schemes. The scheme construction parameters of 170 different compounds are provided.

Graphical abstract: Thermal quenching of lanthanide luminescence via charge transfer states in inorganic materials
Paper

Sublimable complexes with spin switching: chemical design, processing as thin films and integration in graphene-based devices

Chemical design of complexes with thermal- and light-induced spin switching and integration as thin films in graphene-based devices by sublimation.

Graphical abstract: Sublimable complexes with spin switching: chemical design, processing as thin films and integration in graphene-based devices
Paper

Mn2+-doped Cs2ZnBr4 scintillator for X-ray imaging

Cs2ZnBr4:Mn2+ and its composite film demonstrate good X-ray scintillation performances with a spatial resolution of 5.06 lp mm−1 in X-ray imaging.

Graphical abstract: Mn2+-doped Cs2ZnBr4 scintillator for X-ray imaging
Paper

Aggregation effects on the one- and two-photon excited fluorescence performance of regioisomeric anthraquinone-substituted perylenediimide

The isomerism effect on the aggregate emission properties of perylene diimide derivatives is studied. Banking on their bright emission, a cellular imaging test based on their nanoparticles is also conducted.

Graphical abstract: Aggregation effects on the one- and two-photon excited fluorescence performance of regioisomeric anthraquinone-substituted perylenediimide
Paper

Superior high temperature performance of 8 kV NiO/Ga2O3 vertical heterojunction rectifiers

NiO/Ga2O3 heterojunction rectifiers were measured over a temperature range up to 600 K and found to exhibit a near-temperature independent breakdown voltage of >7 kV, far in excess of previous Schottky rectifier results.

Graphical abstract: Superior high temperature performance of 8 kV NiO/Ga2O3 vertical heterojunction rectifiers
Paper

Highly efficient near-infrared thermally activated delayed fluorescence organic light-emitting diodes with emission beyond 800 nm

Near-infrared emission was achieved via the intermolecular through-space electronic coupling and intramolecular charge transfer.

Graphical abstract: Highly efficient near-infrared thermally activated delayed fluorescence organic light-emitting diodes with emission beyond 800 nm
Paper

Antimony doped tin(IV) hybrid metal halides with high-efficiency tunable emission, WLED and information encryption

Efficient tunable emission in (C13H30N)2SnCl6:Sb can be applied in WLEDs, information encryption, etc., which originates from DAP transitions, and SbCl6, and SbCl5 clusters in crystals.

Graphical abstract: Antimony doped tin(iv) hybrid metal halides with high-efficiency tunable emission, WLED and information encryption
From the themed collection: Journal of Materials Chemistry C HOT Papers
Paper

Tuning the mechanoresponsive luminescence of rotaxane mechanophores by varying the stopper size

The efficiency of force-induced dethreading of rotaxane mechanophores is controlled by the stopper size.

Graphical abstract: Tuning the mechanoresponsive luminescence of rotaxane mechanophores by varying the stopper size
From the themed collection: Journal of Materials Chemistry C HOT Papers
Open Access Paper

Two-dimensional borocarbonitrides for photocatalysis and photovoltaics

We have designed 2D borocarbonitrides with outstanding material properties and potential applications in a variety of important technological fields, including nano-mechanics, electronics, photocatalysis, and photovoltaics.

Graphical abstract: Two-dimensional borocarbonitrides for photocatalysis and photovoltaics
Open Access Paper

Orthorhombic undoped κ-Ga2O3 epitaxial thin films for sensitive, fast, and stable direct X-ray detectors

X-ray photoresponse of κ-Ga2O3 is investigated for the first time. Results show that κ-Ga2O3 is a versatile material for the development of high-performance direct X-ray detectors.

Graphical abstract: Orthorhombic undoped κ-Ga2O3 epitaxial thin films for sensitive, fast, and stable direct X-ray detectors
From the themed collection: Journal of Materials Chemistry C HOT Papers
Paper

Boosted charge transfer and CO2 photoreduction by construction of S-scheme heterojunctions between Cs2AgBiBr6 nanosheets and two-dimensional metal–organic frameworks

An inorganic/organic CABB/Ni-MOF hybrid photocatalyst was fabricated. Due to the efficient charge separation, high reduction potential preservation, and the improved CO2 adsorption, the CABB/Ni-MOF hybrid showed high CO2 photoreduction activity.

Graphical abstract: Boosted charge transfer and CO2 photoreduction by construction of S-scheme heterojunctions between Cs2AgBiBr6 nanosheets and two-dimensional metal–organic frameworks
From the themed collection: Journal of Materials Chemistry C HOT Papers
Paper

High-power piezoelectric behavior of acceptor-doped 〈001〉 and 〈111〉 textured piezoelectric ceramics

The high-power piezoelectric properties of MnO2-doped 〈001〉 and 〈111〉 textured 0.24PIN–0.42PMN–0.34PT ceramics are compared to understand the orientation dependence.

Graphical abstract: High-power piezoelectric behavior of acceptor-doped 〈001〉 and 〈111〉 textured piezoelectric ceramics
Paper

Mode-locking pulse generation based on lead-free halide perovskite CsCu2I3 micro-rods with high stability

A CsCu2I3 SA-based passively mode-locking fiber laser was demonstrated. The fiber laser could operate stably for at least five months, which will potentially unlock the pathways for ultrafast photonics based on lead-free halide perovskites.

Graphical abstract: Mode-locking pulse generation based on lead-free halide perovskite CsCu2I3 micro-rods with high stability
Open Access Paper

Raman spectra of 2D titanium carbide MXene from machine-learning force field molecular dynamics

MXenes are 2D materials with many promising applications, but their Raman spectra is still poorly understood. We developed a computational method to simulate Raman spectra of MXenes accounting for temperature, surface composition, and defects.

Graphical abstract: Raman spectra of 2D titanium carbide MXene from machine-learning force field molecular dynamics
Paper

Facile dimerization strategy for producing narrowband green multi-resonance delayed fluorescence emitters

A facile dimerization strategy for producing narrowband green multi-resonance thermally activated delayed fluorescence (MR-TADF) materials is reported.

Graphical abstract: Facile dimerization strategy for producing narrowband green multi-resonance delayed fluorescence emitters
Open Access Paper

Ultra-fast low temperature scintillation and X-ray luminescence of CsPbCl3 crystals

CsPbCl3 crystal is found to be a promising material for the detection of ionising radiation at low temperatures.

Graphical abstract: Ultra-fast low temperature scintillation and X-ray luminescence of CsPbCl3 crystals
30 items

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This web collection features the top 30 most cited, most downloaded or most shared articles published in Journal of Materials Chemistry C in 2023.

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