Themed collection Solar energy showcase

40 items
Perspective

Updated perspective on solar steam generation application

This perspective highlights the challenges and opportunities in interfacial evaporation, heat and water management, materials synthesis, and device development for solar steam generation.

Graphical abstract: Updated perspective on solar steam generation application
From the themed collection: Solar energy showcase
Open Access Perspective

What is necessary to fill the technological gap to design sustainable dye-sensitized solar cells?

Analysis of properties and data – both known and missing – related to materials selection, life cycle assessment, and end-of-life reuse and recycling options for device components to achieve a sustainable design of dye-sensitized solar cells.

Graphical abstract: What is necessary to fill the technological gap to design sustainable dye-sensitized solar cells?
From the themed collection: Recent Open Access Articles
Open Access Review Article

All-perovskite tandem solar cells: from fundamentals to technological progress

This review provides fundamental knowledge and development directions towards the commercialising of advantageous all-perovskite tandem solar cells.

Graphical abstract: All-perovskite tandem solar cells: from fundamentals to technological progress
From the themed collection: Solar energy showcase
Review Article

Design and development of nanostructured photocatalysts for large-scale solar green hydrogen generation

Thin films mediated photocatalytic hydrogen production is the recent intriguing challenge to overcome the global energy demand. By development of fine nanomaterials and preparation of thin films hydrogen production can be increased to large scale.

Graphical abstract: Design and development of nanostructured photocatalysts for large-scale solar green hydrogen generation
From the themed collection: Solar energy showcase
Review Article

Recent developments of polymer-based encapsulants and backsheets for stable and high-performance silicon photovoltaic modules: materials nanoarchitectonics and mechanisms

This review offers a detailed look at materials in encapsulation and backsheets for crystalline silicon photovoltaic (c-Si PV) modules, along with recent research advancements for performance enhancement.

Graphical abstract: Recent developments of polymer-based encapsulants and backsheets for stable and high-performance silicon photovoltaic modules: materials nanoarchitectonics and mechanisms
Review Article

Crystalline porous materials in perovskite solar cells: a mutually beneficial marriage

Utilization of CPMs across diverse functional layers within Perovskite Solar Cells (PSCs) are systematically classified and analyzed. We scrutinize the correlation between the incorporation of CPMs and the resulting performance of PSC devices.

Graphical abstract: Crystalline porous materials in perovskite solar cells: a mutually beneficial marriage
From the themed collection: Solar energy showcase
Review Article

Dimensional diversity (0D, 1D, 2D, and 3D) in perovskite solar cells: exploring the potential of mixed-dimensional integrations

This review article includes dimensional diversity and exploring the potential of mixed-dimensional integrations to improve the stability and performance of PV devices.

Graphical abstract: Dimensional diversity (0D, 1D, 2D, and 3D) in perovskite solar cells: exploring the potential of mixed-dimensional integrations
Open Access Review Article

Multichromophoric photoswitches for solar energy storage: from azobenzene to norbornadiene, and MOST things in between

In the context of energy storage, multichromophoric systems may offer additional functionality over monosubstituted analogues due to their potential to access multiple states as well as having more attractive physical properties.

Graphical abstract: Multichromophoric photoswitches for solar energy storage: from azobenzene to norbornadiene, and MOST things in between
Open Access Review Article

A review on the advancements of graphitic carbon nitride-based photoelectrodes for photoelectrochemical water splitting

This review offers a comprehensive depiction of g-C3N4-based materials for PEC water splitting. The fundamentals of PEC water splitting, along with the applications of g-C3N4-based materials as photoanodic and photocathodic materials are discussed.

Graphical abstract: A review on the advancements of graphitic carbon nitride-based photoelectrodes for photoelectrochemical water splitting
From the themed collection: Energy Advances Recent Review Articles
Open Access Review Article

Fourth-generation solar cells: a review

Solar cells have provided a solution to the prevailing energy crisis and environmental contamination in the ongoing energy-driven era because of their potential to utilize solar energy.

Graphical abstract: Fourth-generation solar cells: a review
From the themed collection: Energy Advances Recent Review Articles
Review Article

Side-chain engineering of nonfullerene small-molecule acceptors for organic solar cells

This review summarizes the side-chain engineering of nonfullerene small-molecule acceptors (SMAs) in the field of organic solar cells, discusses the key structure–property relationships in depth and the future directions of side-chain engineering.

Graphical abstract: Side-chain engineering of nonfullerene small-molecule acceptors for organic solar cells
From the themed collection: Solar energy showcase
Open Access Review Article

Two-dimensional materials for photoelectrochemical water splitting

This review summarizes the superiorities and utilizations of 2D materials for photoelectrochemical water splitting including transition metal dichalcogenides, graphene, graphdiyne, black phosphorus, layered double hydroxides, g-C3N4, and MXenes.

Graphical abstract: Two-dimensional materials for photoelectrochemical water splitting
From the themed collection: Solar energy showcase
Critical Review

Sunlight-driven photocatalytic conversion of furfural and its derivatives

Sunlight-driven photocatalytic conversion of furfural and its derivatives enables activation and transformation of the target chemical bonds under very mild conditions using photoexcited charge carriers or photogenerated reactive species.

Graphical abstract: Sunlight-driven photocatalytic conversion of furfural and its derivatives
From the themed collection: 2024 Green Chemistry Reviews
Open Access Critical Review

Graphitic carbon nitride (g-C3N4) as an emerging photocatalyst for sustainable environmental applications: a comprehensive review

g-C3N4: a sustainable game-changer in photocatalysis. This work explores synthesis, properties, mechanisms, and applications, addresses challenges, and charts future trends.

Graphical abstract: Graphitic carbon nitride (g-C3N4) as an emerging photocatalyst for sustainable environmental applications: a comprehensive review
From the themed collection: RSC Sustainability Recent Review Articles
Paper

Enhancing electron transport through metal oxide adjustments in perovskite solar cells and their suitability for X-ray detection

Inverted planar perovskite solar cells with PCBM ETL have poor film formation and charge transfer. Adding MgO improves photoluminescence, carrier lifetime, and efficiency to 15.12%, and enhances X-ray detector performance.

Graphical abstract: Enhancing electron transport through metal oxide adjustments in perovskite solar cells and their suitability for X-ray detection
From the themed collection: Solar energy showcase
Paper

Two-dimensional Janus antimony chalcohalides for efficient energy conversion applications

Specific functionalities at the nanoscale can emerge from the broken inversion symmetry in two-dimensional (2D) Janus monolayers.

Graphical abstract: Two-dimensional Janus antimony chalcohalides for efficient energy conversion applications
Paper

Donor–acceptor hetero[6]radialene-based three-dimensional covalent organic frameworks for organic pollutant adsorption, photocatalytic degradation, and hydrogen production activity

By investigating the effects of electron donor topology and the hetero[6]radialene structure on the 3D COF photocatalytic activity, a twisted BF structure was found to improve organic pollutant degradation and water hydrogen production.

Graphical abstract: Donor–acceptor hetero[6]radialene-based three-dimensional covalent organic frameworks for organic pollutant adsorption, photocatalytic degradation, and hydrogen production activity
From the themed collection: Solar energy showcase
Open Access Paper

Triple-junction perovskite–perovskite–silicon solar cells with power conversion efficiency of 24.4%

Key advances on triple-junction perovskite–perovskite–Si solar cells with an unprecedented efficiency of 24.4% and enhanced long-term thermal stability are reported via the development of high-performance middle perovskite solar cell.

Graphical abstract: Triple-junction perovskite–perovskite–silicon solar cells with power conversion efficiency of 24.4%
From the themed collection: Recent Open Access Articles
Open Access Paper

Bimetallic and plasmonic Ag and Cu integrated TiO2 thin films for enhanced solar hydrogen production in direct sunlight

Plasmonic metal nanoparticle integrated mesoporous TiO2 nanocomposites (Ag/TiO2, Cu/TiO2 and Ag–Cu/TiO2), prepared by a simple chemical reduction method, have been demonstrated to show superior activity in thin-film form for solar H2 generation.

Graphical abstract: Bimetallic and plasmonic Ag and Cu integrated TiO2 thin films for enhanced solar hydrogen production in direct sunlight
Paper

Engineering of a hierarchical S-scheme 2D/3D heterojunction with graphdiyne (g-CnH2n−2) coated 3D porous CoAl2O4 nanoflowers for highly efficient photocatalytic H2 evolution

In this work, a novel 2D/3D hierarchical architecture graphdiyne/CoAl2O4 (GCA) S-scheme heterojunction was successfully constructed by coupling graphdiyne (GDY) nanosheets onto porous CoAl2O4 nanoflowers.

Graphical abstract: Engineering of a hierarchical S-scheme 2D/3D heterojunction with graphdiyne (g-CnH2n−2) coated 3D porous CoAl2O4 nanoflowers for highly efficient photocatalytic H2 evolution
From the themed collection: Solar energy showcase
Paper

A high-efficiency and stable organic solar cell with balanced crystallization kinetics

In this work, we present a conceptual strategy based on multi-acceptor components to realize balanced crystallization kinetics in organic solar cells (OSC) that deliver a 19.35% power conversion efficiency with superior photostability.

Graphical abstract: A high-efficiency and stable organic solar cell with balanced crystallization kinetics
From the themed collection: Solar energy showcase
Paper

Benzotrifuran-based donor–acceptor covalent organic frameworks for enhanced photocatalytic hydrogen generation

A novel benzotrifuranyl COF with excellent photovoltaic properties and low exciton binding energy was successfully constructed and used for efficient photolysis of water.

Graphical abstract: Benzotrifuran-based donor–acceptor covalent organic frameworks for enhanced photocatalytic hydrogen generation
From the themed collection: Solar energy showcase
Open Access Paper

A universal ligand for lead coordination and tailored crystal growth in perovskite solar cells

Phenylguanidine, a strong ligand in the precursor solution, retards crystallization to enlarge grain sizes and reduce defect density of a perovskite film, demonstrating excellent universality across various compositions.

Graphical abstract: A universal ligand for lead coordination and tailored crystal growth in perovskite solar cells
From the themed collection: Recent Open Access Articles
Paper

Modulation of intermolecular interactions in hole transporting materials for improvement of perovskite solar cell efficiency: a strategy of trifluoromethoxy isomerization

A trifluoromethoxy isomerization strategy to modulate intermolecular interactions is proposed to balance the intermolecular interactions of hole transport materials and their interface interactions with perovskites.

Graphical abstract: Modulation of intermolecular interactions in hole transporting materials for improvement of perovskite solar cell efficiency: a strategy of trifluoromethoxy isomerization
Open Access Paper

Cuttlefish ink nanoparticles-integrated aerogel membranes for efficient solar steam generation

Cuttlefish inks offer nano-solar-absorbers for obtaining freshwater through interfacial evaporation.

Graphical abstract: Cuttlefish ink nanoparticles-integrated aerogel membranes for efficient solar steam generation
From the themed collection: Solar energy showcase
Open Access Paper

Strategies to improve the mechanical robustness of metal halide perovskite solar cells

We demonstrate the fragility of perovskite solar cells is typically in the small molecule electron transport layer and show strategies for designing more mechanically and operationally robust devices by improving the layers and interfaces.

Graphical abstract: Strategies to improve the mechanical robustness of metal halide perovskite solar cells
From the themed collection: Solar energy showcase
Open Access Paper

Full-spectrum utilization of solar energy for simultaneous CO2 reduction and seawater desalination

To address the underutilization of infrared light in photocatalysis, a synergistic CO2 photoreduction and seawater desalination system was developed, which exhibited a good bifunctional performance.

Graphical abstract: Full-spectrum utilization of solar energy for simultaneous CO2 reduction and seawater desalination
From the themed collection: Solar energy showcase
Open Access Paper

Role of antisolvent temperature and quaternary ammonium cation-based ionic liquid engineering in the performance of perovskite solar cells processed under air ambient conditions

Low-temperature of the chlorobenzene antisolvent and trimethylpropylammonium bis(trifluoromethanesulfonyl)imide ionic liquid at the TiO2/perovskite interface improves the device efficiency and stability.

Graphical abstract: Role of antisolvent temperature and quaternary ammonium cation-based ionic liquid engineering in the performance of perovskite solar cells processed under air ambient conditions
From the themed collection: Solar energy showcase
Paper

Isomerization strategy on a non-fullerene guest acceptor for stable organic solar cells with over 19% efficiency

Isomeric non-fullerene acceptor guest with large π-conjugation skeleton is used to construct stable organic solar cells with efficiencies over 19%.

Graphical abstract: Isomerization strategy on a non-fullerene guest acceptor for stable organic solar cells with over 19% efficiency
From the themed collection: Solar energy showcase
Paper

Machine learning-based q-RASPR modeling of power conversion efficiency of organic dyes in dye-sensitized solar cells

The novel quantitative read-across structure–property relationship approach was used to model the power conversion efficiency of four classes of organic dyes.

Graphical abstract: Machine learning-based q-RASPR modeling of power conversion efficiency of organic dyes in dye-sensitized solar cells
From the themed collection: Solar energy showcase
Paper

Refined molecular microstructure and optimized carrier management of multicomponent organic photovoltaics toward 19.3% certified efficiency

Molecular microstructure and carrier management were optimized and correlated, and double-channel recombination suppression enabled a record certified efficiency of 19.3% for asymmetric acceptor-based organic photovoltaics.

Graphical abstract: Refined molecular microstructure and optimized carrier management of multicomponent organic photovoltaics toward 19.3% certified efficiency
From the themed collection: Solar energy showcase
Paper

Solar energy driven C–C bond cleavage in a lignin model compound with a D–π–A organic dye-sensitized photoanode

This study reports the solar light-driven activation of a bicyclic aminoxyl mediator to achieve C–C bond cleavage of a lignin model compound at room temperature using a donor–π-conjugated bridge–acceptor organic dye-based photoelectrochemical system.

Graphical abstract: Solar energy driven C–C bond cleavage in a lignin model compound with a D–π–A organic dye-sensitized photoanode
From the themed collection: Biorefining
Paper

3D acceptors with multiple A–D–A architectures for highly efficient organic solar cells

Efficient 3D NFAs through central unit connection blaze a new trail in further molecular structural optimization of state-of-the-art NFAs.

Graphical abstract: 3D acceptors with multiple A–D–A architectures for highly efficient organic solar cells
From the themed collection: Solar energy showcase
Paper

Suppressing the energetic disorder of all-polymer solar cells enables over 18% efficiency

By designing new terpolymers, we tuned the molecular orientation to obtain an ordered morphology with suppressed energetic disorder. Thus, we boost the PCE of all-PSCs to over 18%.

Graphical abstract: Suppressing the energetic disorder of all-polymer solar cells enables over 18% efficiency
From the themed collection: Solar energy showcase
Paper

Stable FAPbI3 hydrate structure by kinetics negotiation for solar cells

A stable ε-FAPbI3 hydrate was formed and precipitated only at the grain boundary area by controlling moisture partial pressure. Such a kinetic negotiation strategy enables stable and efficient perovskite solar cells.

Graphical abstract: Stable FAPbI3 hydrate structure by kinetics negotiation for solar cells
From the themed collection: Solar energy showcase
Open Access Paper

Methane dry reforming via a ceria-based redox cycle in a concentrating solar tower

Solar-driven methane dry reforming via a ceria-based thermochemical redox cycle in a concentrating solar tower to produce solar syngas with a solar-to-fuel energy efficiency of 27%.

Graphical abstract: Methane dry reforming via a ceria-based redox cycle in a concentrating solar tower
From the themed collection: Recent Open Access Articles
Paper

Construction of strongly coupled 2D–2D SnS2/CdS S-scheme heterostructures for photocatalytic hydrogen evolution

2D–2D S-scheme SnS2/CdS heterostructures have been constructed, with close face-to-face contact and strongly coupled interactions to improve the charge transfer kinetics, which exhibit excellent photocatalytic hydrogen evolution activity.

Graphical abstract: Construction of strongly coupled 2D–2D SnS2/CdS S-scheme heterostructures for photocatalytic hydrogen evolution
From the themed collection: Solar energy showcase
Open Access Paper

Low-intensity low-temperature analysis of perovskite solar cells for deep space applications

Perovskite solar cells (PSCs) are studied in low-intensity low-temperature (LILT) conditions before and after low energy proton irradiation to characterize device performance at deep space mission-relevant light intensities and temperatures.

Graphical abstract: Low-intensity low-temperature analysis of perovskite solar cells for deep space applications
From the themed collection: Solar energy showcase
Open Access Paper

Interfacial band alignment and photoelectrochemical properties of all-sputtered BiVO4/FeNiOx and BiVO4/FeMnOx p–n heterojunctions

This work introduces FeMnOx as a novel effective cocatalyst for PEC water oxidation and provides simple tools for comprehending how interfacial effects influence the PEC performance of all-sputtered BiVO4/FeNiOx and BiVO4/FeMnOx p–n heterojunctions.

Graphical abstract: Interfacial band alignment and photoelectrochemical properties of all-sputtered BiVO4/FeNiOx and BiVO4/FeMnOx p–n heterojunctions
From the themed collection: Solar energy showcase
Open Access Paper

Effect of charge selective contacts on the quasi Fermi level splitting of CuGa3Se5 thin film photocathodes for hydrogen evolution and methylviologen reduction

The defect-copper chalcopyrite CuGa3Se5 is a promising photocathode material for solar hydrogen generation. Here we assess its performance with photoelectrochemical measurements and vibrating Kelvin probe surface photovoltage spectroscopy.

Graphical abstract: Effect of charge selective contacts on the quasi Fermi level splitting of CuGa3Se5 thin film photocathodes for hydrogen evolution and methylviologen reduction
From the themed collection: Solar energy showcase
40 items

About this collection

Our authors examine how we can improve conversion efficiency, reduce production costs and integrate with the energy grid. This collection covers photovoltaic cells, solar thermal systems, materials science and energy conversion efficiency.

Spotlight

Advertisements