Although several early reviews have summarized MOF-based functional materials and their energy applications, most of them focus on a certain aspect of …
Consult MoreThere are several major advantages for EFCMs in energy conversion and storage: (1) Electrospinning technology can be easily combined with other methods to prepare functional materials [28], [29], [30].
Consult MoreAll these functional materials and devices should render high efficiency during energy conversion and storage, even for long-time operations. Nowadays, the electronic appliances trend toward miniaturized, multipurpose, intelligent and therefore, the cumulative consumption of power/energy reflects an abruptly increasing trend [3], [4] .
Consult MoreAll these functional materials and devices should render high efficiency during energy conversion and storage, even for long-time operations. Nowadays, the electronic appliances trend toward miniaturized, multipurpose, intelligent and therefore, the cumulative consumption of power/energy reflects an abruptly increasing trend [3], [4] .
Consult More1 Introduction. The depletion of fossil fuel reserves, the ever-increasing energy demand, and the crisis in energy supply chains threaten our energy security and the environment, arousing intense global concerns. [] If no concrete steps are taken to offset this trend, world oil consumption will increase by 1.9 million barrels per day in 2023, with …
Consult MoreAdditionally, the design of novel energy storage materials based on natural, abundant, and renewable resources may be energy-efficient and low cost. Numerous studies have shown that carbon materials are favored for applications of energy consumption and environmental pollution because of their diverse structure, adjustable …
Consult MoreOur Review discusses MXenes and how they are involved in electrodes, electrolytes, separators, metal/metal-free anodes and functional additives in energy …
Consult MoreFunctional materials play a vital role in thermal energy conversion and storage. For example, high temperature materials can increase the efficiency of traditional power generation cycles, such as gas turbines, and solar-thermal conversion. New materials for …
Consult MoreOne of the issues addressed is the development of high energy density electric energy storage materials for future technology. 1 The Li 2 MnO 3 based layered Li-rich materials are considered to be promising cathode candidates for Li-ion batteries (LIBs) and have attracted much recent attention due mainly to their superior specific capacity …
Consult MoreAs such, the development of advanced functional materials that allow efficient conversion of solar or electrical energy into storable energy, e.g., in the form of chemical bonds (e.g., H 2) is causing great attention from scientific and industrial communities 1, 2, 3, 4,
Consult More3 · Advanced Functional Materials, part of the prestigious Advanced portfolio and a top-tier materials science journal, publishes outstanding research across the field. …
Consult MoreCarbon-based functional materials represent the most investigated ORR catalysts and electrode materials for the energy conversion and storage because they not only exhibit excellent electrochemical activity but also have other advantages, including low costs, long durability, and environmental friendliness (22–28).Typically, transition metal …
Consult MoreHis current research interests focus on advanced energy materials for energy storage. Jian Zhu is currently a professor at the College of Chemistry and Chemical Engineering, Hunan University, China. He received his PhD degree in the School of Physics and Electronics from Hunan University in 2017.
Consult MoreKey functionalization chemistry for each application is discussed and an in-depth understanding of the structure–property relationships of these functional porous materials is provided. Finally, the challenges and perspectives of emerging functional porous polymeric and carbonaceous materials for environmental treatment and …
Consult More3 · Energy Storage Materials, 60 (2023), Article 102848 View PDF View article View in Scopus Google Scholar [12] ... Advanced Functional Materials, 33 (26) (2023), Article …
Consult MoreIn this context, electrochemical devices such as rechargeable batteries and fuel cells are becoming increasingly important for energy storage and conversion, attracting considerable research ...
Consult MoreThermal energy storage technologies based on phase‐change materials (PCMs) have received tremendous attention in recent years. These materials are capable of reversibly storing large amounts of thermal energy during the isothermal phase transition and offer enormous potential in the development of state‐of‐the‐art renewable energy …
Consult MoreThe research progress in the preparation of waste-derived carbon-based functional materials is summarized, along with their applications in water remediation and energy storage; challenges and future research directions in this emerging research field are also discussed. Carbon‐based functional materials hold the key for solving global …
Consult MoreUp to now, numerous researchers have utilized different functional materials including two-dimensional (2D) materials, MXenes, metal oxides, metal phosphides, metal sulfides, metal–organic framework, etc., as the …
Consult MoreAdvanced Functional Materials, part of the prestigious Advanced portfolio and a top-tier materials science journal, publishes outstanding research across the field. Abstract Interlayer transport of charges and carriers of 2D nanomaterials is a critical parameter that governs the material and device performance in energy storage …
Consult MoreRedox flow batteries (RFBs) are promising electrochemical energy storage systems, offering vast potential for large-scale applications. Their unique configuration allows energy and power to be decoupled, making them highly scalable and flexible in design. Aqueous RFBs stand out as the most promising technolo
Consult MoreCarbon composite nanofibers are attractive functional materials for a wide range of applications, including energy storage and conversion, sensing, …
Consult MoreAccordingly, the flexible, functional, and reliable electrochemical energy storage (EES) equipment is required to power emerging electronics. [ 4, 5 ] In particular, the global society is facing a series of challenges, such as global warming, resource scarcity, and severe environmental pollution, so that it is of great interest to fabricate low-cost and eco-friendly …
Consult MoreAdvanced Functional Materials, part of the prestigious Advanced portfolio and a top-tier materials science journal, publishes outstanding research across the field. Abstract The booming development of electronics, electric vehicles, and grid storage stations has led to a high demand for advanced energy-storage devices (ESDs) and …
Consult MoreIn this review, we summarize different applications of GPEs in energy storage devices, highlighting many valuable properties and emphasizing their …
Consult MoreAdvanced Functional Materials, part of the prestigious Advanced portfolio and a top-tier materials science journal, publishes outstanding research across the field. Abstract Halide perovskites, traditionally a solar-cell material that exhibits superior energy conversion properties, have recently been deployed in energy storage systems such as …
Consult More1 Introduction The multitude of compositions and structures of 2D layered materials render promise for next-generation energy storage, [] thermoelectric, [] catalytic, [] and memory devices. [] Recently, atomically laminated ceramics, known as MAX phases, [] have garnered increased attention due to the discovery of so-called MXenes. [] ...
Consult MoreCarbon-based functional materials represent the most investigated ORR catalysts and electrode materials for the energy conversion and storage because they not only exhibit excellent electrochemical activity but …
Consult MoreAdvanced Functional Materials, part of the prestigious Advanced portfolio and a top-tier materials science journal, publishes outstanding research across the field. Abstract Interlayer transport of charges and carriers of 2D nanomaterials is a critical parameter that governs the material and device performance in energy storage …
Consult MoreThermal energy storage technologies based on phase‐change materials (PCMs) have received tremendous attention in recent years. These materials are capable of reversibly storing large amounts of thermal energy during the isothermal phase transition and offer enormous potential in the development of state‐of‐the‐art renewable energy infrastructure.
Consult MoreWith many apparent advantages including high surface area, tunable pore sizes and topologies, and diverse periodic organic–inorganic ingredients, metal–organic frameworks (MOFs) have been identified as versatile precursors or sacrificial templates for preparing functional materials as advanced electrodes or high-efficiency catalysts for …
Consult MoreEdited by Toshio Naito, a prominent materials scientist, this book will appeal to anyone interested in solid-state chemistry, organic and inorganic semiconductors, low-temperature physics, or the development of functional materials, including advanced undergraduate- and graduate-level students of solid-state properties and researchers in …
Consult MoreAbstract. Vacancies exist throughout nature and determine the physical properties of materials. By manipulating the density and distribution of vacancies, it is possible to influence their physical properties such as band-gap, conductivity, magnetism, etc. This can generate exciting applications in the fields of water treatment, energy …
Consult MorePart four considers functional materials for demand reduction and energy storage, before the book concludes in part five with an investigation into computer simulation studies of functional materials.With its distinguished editors and international team of expert contributors, Functional materials for sustainable energy applications is an ...
Consult MoreAdvanced Functional Materials, part of the prestigious Advanced portfolio and a top-tier materials science journal, publishes outstanding research across the field. Abstract The anode materials for sodium-ion batteries (SIBs) such as soft carbon, hard carbon, or alloys suffer from low specific capacity, poor rate capability, and high cost.
Consult MoreAcademic research regarding polymeric materials has been of great interest. Likewise, polymer industries are considered as the most familiar petrochemical industries. Despite the valuable and continuous advancements in various polymeric material technologies over the last century, many varieties and advances related to the field of …
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