2026 · 碳中和与 CCUS · Aqueous batteries have played a pivotal yet fluctuating role in the evolution of electrochemical energy storage. From their foundational success in lead-acid and nickel-based chemistries to their eclipse by lithium-ion b…
2026 · 碳中和与 CCUS · Abstract Aqueous zinc-iodine batteries represent a compelling technology for large-scale, sustainable energy storage, yet their practical application is severely hampered by the simultaneous interfacial challenges of unc…
2026 · 碳中和与 CCUS · ABSTRACT Lithium metal holds immense promise for next‐generation high‐energy‐density batteries; however, its practical deployment is impeded by sluggish kinetics and intricate interfacial chemistry. To address these chal…
2026 · 碳中和与 CCUS · ABSTRACT Hard carbon (HC) is considered the most promising anode material for commercial sodium‐ion batteries (SIBs), yet it still faces critical challenges such as low initial Coulombic efficiency (ICE). Presodiation ca…
2026 · 数字孪生 · The Hall–Héroult aluminum electrolysis process remains highly energy-intensive, making energy efficiency improvement crucial for sustainable aluminum production. Recent progress has focused on four key areas: electrolyze…
2025 · 碳中和与 CCUS · ABSTRACT Hard carbon (HC), an amorphous carbon‐based material, is a promising anode for sodium‐ion batteries (SIBs) due to its sustainability and electrochemical performance. Direct carbonization offers a simple and ener…
2025 · 碳中和与 CCUS · Abstract In the post-lithium-ion battery era, potassium-ion batteries (PIBs) have been considered as a promising candidate because of their electrochemical and economic characteristics. However, as an emerging electroche…
2025 · 碳中和与 CCUS · storage capacity, and extensive availability-further reinforces the potential of SIBs. Nevertheless, the inherent thermodynamic instability of HC anodes predisposes them to irreversible Na plating during operation. This …
2025 · 碳中和与 CCUS · Abstract Hard carbon is a promising anode material for fast‐charging lithium‐ion batteries (LIBs) due to its abundant lithium‐ion storage sites, short ion diffusion pathways, and tunable microstructure. However, challeng…
2025 · 碳中和与 CCUS · Silicon-based anode is one of the most promising candidates for all-solid-state batteries (ASSBs), which however needs to be further improved for its tremendous volume change. This study investigates interface treatment …
2025 · 碳中和与 CCUS · Abstract Rechargeable aqueous zinc (Zn)-metal batteries hold great promise for next-generation energy storage systems. However, their practical application is hindered by several challenges, including dendrite formation,…
2025 · 碳中和与 CCUS · Carbon-based materials, commonly used as commercial anodes in lithium/sodium ion batteries, nevertheless suffer from sluggish kinetic properties. Constructing electrode materials with one-dimensional nanostructures that …
2025 · 碳中和与 CCUS · Abstract To satisfy the demand for high‐performance lithium‐ion batteries (LIBs), silicon (Si) based anodes have attracted attention due to their high theoretical capacity, and there is increasing interest in anode archi…
2025 · 量子材料 · ABSTRACT The pursuit of novel anode materials that offer high storage capacity, hasty ionic transport, good cyclic stability, and material recyclability is at the core of the research activities. In this study, we uncove…
2024 · 碳中和与 CCUS · Abstract Efficiently reconciling the substantial volume strain with maintaining the stabilities of both interfacial protection and three‐dimensional (3D) conductive networks is a scientific and technical challenge in dev…
2024 · 碳中和与 CCUS · Zn metal anodes are usually subject to grave dendrite growth during platting/stripping, which dramatically curtails the lifespan of aqueous Zn‐ion batteries and capacitors. To address above problems, in our work, a novel…
2024 · 碳中和与 CCUS · Abstract Despite the continuous development of energy storage, the challenges faced by micro‐silicon anode pulverization have yet to be effectively addressed. In this work, the aramid nanofibers (ANFs) are in situ proton…
2024 · 碳中和与 CCUS · Aqueous zinc metal batteries (AZMBs) are promising candidates for next-generation energy storage due to the excellent safety, environmental friendliness, natural abundance, high theoretical specific capacity, and low red…
2024 · 碳中和与 CCUS · Abstract Ultrafast high‐capacity lithium‐ion batteries are extremely desirable for portable electronic devices, where Si is the most promising alternative to the conventional graphite anode due to its very high theoretic…
2024 · 碳中和与 CCUS · Sodium-ion batteries (SIBs) have demonstrated remarkable development potential and commercial prospects. However, in the current state of research, the development of high-energy-density, long-cycle-life, high-rate-perfo…
2024 · 碳中和与 CCUS · Heteroatom doping is a universal approach to improve rate capability for various carbon anodes of sodium-ion batteries owing to the interlayer spacing expansion and pseudocapacitive enhancement. However, there is still a…
2024 · 碳中和与 CCUS · Abstract Silver (Ag) is deemed a promising anode material for capacitive deionization (CDI) due to its high theoretical capacity and efficient selectivity to Cl − . However, the strong volume change during the conversion…
2024 · 碳中和与 CCUS · Abstract The advancement of Zn–Se batteries has been hindered by significant challenges, such as the sluggish kinetics of Se cathodes, limited Se loading, and uncontrollable formation of Zn dendrites. In this study, a bi…
2024 · 碳中和与 CCUS · Abstract Zinc (Zn) emerges as an ideal anode for aqueous‐based energy storage devices because of its safety, non‐toxicity, and cost‐effectiveness. However, the reversibility of zinc anodes is constrained by unchecked den…
2024 · 碳中和与 CCUS · Abstract The commercialization of silicon‐based anodes is affected by their low initial Coulombic efficiency (ICE) and capacity decay, which are attributed to the formation of an unstable solid electrolyte interface (SEI…
2024 · 生命科学 · Aluminum batteries have become the most attractive next-generation energy storage battery due to their advantages of high safety, high abundance, and low cost. However, the dendrite problem associated with inhomogeneous …
2024 · 新能源 · Abstract Silicon is a promising anode material due to its high theoretical specific capacity, low lithiation potential and low lithium dendrite risk. Yet, the electrochemical performance of silicon anodes in solid-state …
2024 · 量子材料 · Broad adoption has already been started of MXene materials in various energy storage technologies, such as super-capacitors and batteries, due to the increasing versatility of the preparation methods, as well as the ongo…
2023 · 碳中和与 CCUS · Abstract Bismuth (Bi)‐based materials merit high theoretical volumetric specific capacity (3800 mAh mL⁻ 1 ) but suffer from huge volume variations and sluggish reaction kinetics during cycling. Herein, the optimal framew…
2023 · 碳中和与 CCUS · Abstract With the advantage of fast charge transfer, heterojunction engineering is identified as a viable method to reinforce the anodes' sodium storage performance. Also, vacancies can effectively strengthen the Na + ad…
2023 · 碳中和与 CCUS · Abstract Lithium–sulfur batteries with high energy density are considered to be one of the most promising candidates for the next‐generation energy storage devices. Electrolyte as the medium for Li + transportation betwe…
2023 · 碳中和与 CCUS · Bamboo shoot is renewable biomass rich in carbon and nitrogen. To take advantage of its sources of carbon and nitrogen, hierarchical porous nitrogen-doped carbon materials derived from bamboo shoot were acquired via a on…
2023 · 碳中和与 CCUS · Abstract The discovery of liquid battery electrolytes that facilitate the formation of stable solid electrolyte interphases (SEIs) to mitigate dendrite formation is imperative to enable lithium anodes in next‐generation …
2023 · 碳中和与 CCUS · Abstract Electrocoagulation is an evolving technology for the abatement of a broad range of pollutants in wastewater owing to its flexibility, easy setup, and eco‐friendly nature. Here, environment‐friendly strategies fo…
2023 · 碳中和与 CCUS · Abstract The notorious lithium polysulfides (LiPSs) shuttle effect, which results in low capacity, subpar rate performance, and quick capacity deterioration, has severely restricted the practical applications of lithium …
2023 · 新能源 · Solid-state batteries with lithium metal anodes have the potential for higher energy density, longer lifetime, wider operating temperature, and increased safety. Although the bulk of the research has focused on improving…
2023 · 新能源 · Abstract Interfacial dynamics within chemical systems such as electron and ion transport processes have relevance in the rational optimization of electrochemical energy storage materials and devices. Evolving the underst…
2023 · 量子材料 · Abstract Solution‐processed hole transporting layers (HTLs) not only play a crucial role in realizing high performance of organic solar cells (OSCs), but also possess excellent compatibility with low‐cost and large‐area …
2023 · 量子材料 · High Resolution Image Download MS PowerPoint Slide A two-dimensional (2D) silicene–germanene alloy, siligene (Si x Ge y ), a single-phase material, has attracted increased attention due to its two-elemental low-buckled c…
2023 · 量子材料 · It is of great significance to design and innovate electrode materials with unique structures to effectively optimize the electrochemical properties of the secondary battery. Herein, inspired by neuron networks, an ingen…
2023 · 量子材料 · High Resolution Image Download MS PowerPoint Slide The need for practical anodes for rechargeable batteries calls for new materials with improved storage capacity and cycling stability compared to the materials of today.…
2026 · 碳中和与 CCUS · ABSTRACT The development of high‐capacity and stable anode materials beyond graphite remains a critical challenge for advancing lithium‐ion battery (LIB) technology. Organometallic materials such as metallophthalocyanine…
2022 · 碳中和与 CCUS · Abstract Since the 1960s, a new class of Si-based advanced ceramics called polymer-derived ceramics (PDCs) has been widely reported because of their unique capabilities to produce various ceramic materials (e.g., ceramic…
2022 · 碳中和与 CCUS · The commercialization of sodium-ion batteries has been hampered by the anode's performance. Carbon-based anodes have always had great application prospects, but traditional graphite anodes have great application limitati…
2022 · 碳中和与 CCUS · Abstract An in situ Schiff-base condensation between p -phthalaldehyde (PPD) and 1,3,5-tris(4-aminophenyl)benzene (TAPB) or 1,3,5-tris(4-aminophenyl)triazine (TAPT) was actualized in the presence of carbon nanotubes (CNT…
2022 · 碳中和与 CCUS · Alkali metal batteries based on lithium, sodium, and potassium anodes and sulfur-based cathodes are regarded as key for next-generation energy storage due to their high theoretical energy and potential cost effectiveness…
2022 · 新能源 · Solid-state batteries have fascinated the research community over the past decade, largely due to their improved safety properties and potential for high-energy density. Searching for fast ion conductors with sufficient …
2022 · 新能源 · Solid-state lithium batteries are flourishing due to their excellent potential energy density. Substantial efforts have been made to improve their electrochemical performance by increasing the conductivity of solid-state…
2021 · 碳中和与 CCUS · Abstract In view of rich potassium resources and their working potential, potassium-ion batteries (PIBs) are deemed as next generation rechargeable batteries. Owing to carbon materials with the preponderance of durabilit…
2021 · 新能源 · Abstract Electrochemical impedance spectroscopy (EIS) is widely used to probe the physical and chemical processes in lithium (Li)‐ion batteries (LiBs). The key parameters include state‐of‐charge, rate capacity or power f…
2021 · 新能源 · Lithium solid-state batteries (SSBs) are considered as a promising solution to the safety issues and energy density limitations of state-of-the-art lithium-ion batteries. Recently, the possibility of developing practical…
2020 · 碳中和与 CCUS · Abstract Carbon quantum dots (CQDs) as a new class of emerging materials have gradually drawn researchers’ concern in recent years. In this work, the graphitic CQDs are prepared through a scalable approach, achieving a h…
2020 · 碳中和与 CCUS · In this work, the carbon balance during high-rate CO2 reduction in flow electrolyzers is rigorously analyzed. The CO2 consumption at gas-diffusion electrodes due to electrochemical reduction and reaction with OH- at the …
2020 · 碳中和与 CCUS · ). However, some confusions hinder the development of multi-electron mechanisms, such as clear concept, complex reaction, material design and electrolyte optimization and full-cell fabrication. Therefore, this review dis…
2020 · 新能源 · Developing reversible lithium metal anodes with high rate capability is one of the central aims of current battery research. Lithium metal anodes are not only required for the development of innovative cell concepts such…
2020 · 新能源 · In this Perspective, we highlight recent progress and challenges related to the integration of lithium metal anodes in solid-state batteries. While prior reports have suggested that solid electrolytes may be impermeable …
2020 · 新能源 · Abstract Owing to high ionic conductivity and good oxidation stability, halide‐based solid electrolytes regain interest for application in solid‐state batteries. While stability at the cathode interface seems to be given…
2023 · 碳中和与 CCUS · 2D materials (2DM) and their heterostructures (2D + nD, n = 0,1,2,3) hold significant promise for applications in Electrochemical Energy Storage Systems (EESS), such as batteries. 2DM can serve as van der Waals (vdW) sli…