CrystEngComm is the forum for the design and understanding of crystalline materials. It publishes studies on the investigation of molecular behaviour within crystals, control of nucleation and crystal growth, engineering of crystal structures, and construction of crystalline materials with tuneable properties and functions. All papers should involve the use or development of a design or optimisation strategy.
Digital Discovery welcomes both experimental and computational work on all topics related to the acceleration of discovery such as screening, robotics, databases and advanced data analytics, broadly defined, but anchored in chemistry. The journal welcomes Artificial intelligence and data science methodologies for chemical, materials science, biochemical, biomedical or biophysical sciences including Computer-assisted retrosynthesis, Generative models for scientific design, Machine learning classification and regression models, Modern molecular, materials, and biological representations, Methods for Bayesian optimization and design of experiments, Advances and applications of interpretable models, Image recognition, Natural language processing, Literature mining tools, Advanced data workflows, Advances in robotics for science, Experimental control software, Databases, New robotic setups, New automated sensors, Novel synthetic methodologies and workflows, High-throughput computational science, Directed or accelerated evolution, DNA Encoded Library Technology, Cryptochemistry, and Blockchain-enabled science.
EES Batteries is a premier journal, publishing exceptional battery and energy storage focused research. Delivering the same influence and reputation for quality which researchers associate with companion journal Energy & Environmental Science, EES Batteries is strongly interdisciplinary, welcoming influential, high impact and quality research across all scientific disciplines including chemistry, physics, materials science, engineering, computational/theoretical studies, and policy.
Exceptional research of significant and notable interest to the batteries research communities is welcomed. This includes but is not limited to:
• New battery concepts, materials, and systems
• Battery electrochemistry
• Electrode materials and composites
• Battery interfaces and interphases
• Advanced characterization tools and techniques
• Modelling, simulation and theoretical studies
• AI empowered battery science, technologies, and applications
• System integrations and applications with batteries
• Battery manufacturing, recycling, and scalability
• Safety, stability, and performance optimization
• Policy work and technoeconomic analyses
Research related to batteries in conjunction with fuel cells, supercapacitors, or capacitors is also within the scope of the journal.
EES Solar is a premier interdisciplinary journal dedicated to publishing high-impact research focused on solar energy and photovoltaics. Building on the reputation of companion journal Energy & Environmental Science for high quality and influence, EES Solar aims to be a leading publication for groundbreaking studies that span a wide range of scientific disciplines, all connected by the thread of solar. The journal welcomes studies and analyses at all scales, from groundbreaking fundamental advances to interdisciplinary research across chemistry, physics, materials science, engineering, theory, and policy and technoeconomic analyses, for advancing the field of solar energy. Research that utilizes green materials and sustainable practices, championing developments that minimize environmental impact while achieving high performance is particularly encouraged.
EES Solar is the home for exceptional research that pushes the boundaries of solar research and its applications. This includes, but is not limited to:
• Solar cell and photovoltaic research
• Solar fuels and artificial photosynthesis
• Photocatalysts for energy and environmental applications
• Photothermal and photoelectrochemical solar energy conversion
• Photonics
• Light-matter interaction and spectroscopy
• Photovoltaic system design, solar power systems, and integration
• Modelling, simulation, and theoretical studies including AI and machine learning
• Policy work and technoeconomic analyses
Faraday Discussions covers a variety of topics in rapidly developing areas of the physical sciences, with a focus on physical chemistry and its interfaces with other scientific disciplines. The journal publishes the papers presented and a record of the questions, discussion and debate that took place at the corresponding Faraday Discussions meeting; and provides an important record of current international knowledge and opinions in the relevant field. Each Faraday Discussion covers a topic in a rapidly developing area of chemistry, and will be of interest to academic and industrial chemists across all areas of the chemical sciences. Topical coverage includes: • Spectroscopy • Dynamics • Kinetics • Statistical mechanics • Thermodynamics • Electrochemistry • Catalysis • Surface science • Quantum mechanics • Quantum computing • Machine learning • Polymers and soft matter • Materials • Quantum Materials • Nanoscience • Energy • Surfaces/interfaces • Biophysical chemistry • Atmospheric Chemistry • Astrochemistry
Green Chemistry provides a unique forum for the publication of innovative research on the development of alternative green and sustainable technologies. Based on the, but not limited to, the twelve principles of green chemistry defined by Anastas and Warner (Green Chemistry: Theory and Practice, P T Anastas and J C Warner, Oxford University Press, Oxford, 1998). Green chemistry is, by definition, a continuously-evolving frontier. Therefore, the inclusion of a particular material or technology does not, of itself, guarantee that a paper is suitable for the journal. To be suitable, the novel advance should have the potential for reduced environmental impact relative to the state of the art. Green Chemistry does not normally deal with research associated with 'end-of-pipe' or remediation issues.
Physical Chemistry Chemical Physics (PCCP) is an international journal co-owned by 19 physical chemistry and physics societies from around the world. This journal publishes original, cutting-edge research in physical chemistry, chemical physics and biophysical chemistry. To be suitable for publication in PCCP, articles must include significant innovation and/or insight into physical chemistry; this is the most important criterion that reviewers and Editors will judge against when evaluating submissions. The journal has a broad scope and welcomes contributions spanning experiment, theory, computation and data science. Articles are welcomed if they demonstrate significant innovation and/or insight into physical chemistry. Joined experimental/theoretical studies are particularly appreciated when complementary and based on up-to-date approaches. Topical coverage includes: • Spectroscopy • Dynamics • Kinetics • Statistical mechanics • Thermodynamics • Electrochemistry • Catalysis • Surface science • Quantum mechanics • Quantum computing • Machine learning • Polymers and soft matter • Materials • Quantum Materials • Nanoscience • Energy • Surfaces/interfaces • Biophysical chemistry • Atmospheric Chemistry • Astrochemistry