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Ultralow-concentration electrolyte boosting K0.486V2O5 for high-performance proton storage

He mainly works on functional materials for printed and flexible energy storage and electronics. Xiao-Chen Dong obtained his PhD degree from Zhejiang University, China, in 2007. He then joined the School of Materials Science and Engineering at Nanyang Technological University as a postdoctoral research associate.

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Progress and prospects in direct ammonia solid oxide fuel cells

NH3 → 1/2 N2 + 3/2 H2 H2 + O2– → H2O + 2 e–. Cathode reaction. 1/2 O2 + 2 e– → O2–. O2 (unreacted) reforming and cracking of ammonia. In this paper, we critically review the experimental demonstration, major achievements, progress, and prospects in direct NH3-fueled SOFCs. The bibliography includes 147 references.

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Yizhou ZHANG | Doctor of Philosophy | Nanjing University of

Stretchable, self‐healable, and high‐capacity supercapacitors (SCs), as a state‐of‐the‐art energy storage technology, hold enormous potential in cutting‐edge wearable electronics.

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Moreover, the high-energy plasma introduces porosity and vacancies to the Ni2P and more importantly produces phosphorus-rich nickel phosphides (NiPx). As a result, the Ni2P@C electrodes achieve high sodium capacity (693 mAh·g−1 after 50 cycles at 100 mA·g−1) and excellent cyclability (steady capacity maintained for at least 1, 500

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Manipulating local coordination of copper single atom catalyst

conversion of CO 2 into CH 4 offers an entrancing opportunity to both storing renewable electric energy and Yizhou Dai, Chuanhao Wang, Weiqing Xue, Menglu Zhang, Donghao Zhao, Jing Xue

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Flexible textured MnO2 nanorods/ PVDF hybrid films with superior piezoelectric performance for energy

DOI: 10.1016/j pscitech.2020.108330 Corpus ID: 225556134 Flexible textured MnO2 nanorods/ PVDF hybrid films with superior piezoelectric performance for energy harvesting application The popularity of intelligent and green electronic devices means that the

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Decentralized distributionally robust energy and reserve co-optimization of smart building clusters with virtual energy storage

DOI: 10.1016/j.enbuild.2024.114040 Corpus ID: 268190569 Decentralized distributionally robust energy and reserve co-optimization of smart building clusters with virtual energy storage capability @article{Sun2024DecentralizedDR, title={Decentralized distributionally

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Recent progress in the study of integrated solar cell-energy

This review delves into the latest developments in integrated solar cell-energy storage systems, marrying various solar cells with either supercapacitors or

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Technologies and economics of electric energy storages in power systems: Review and perspective

A number of papers focused on detailed comparisons and development of varied EES technologies can be found in the literature [8, 12, [14], [15], [16]], as well as technology-specific reviews on individual technologies such as

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Physics

Magnetic Vortex Rings on Demand. March 19, 2024 • Physics 17, s29. Scientists have devised a promising method for generating and manipulating exotic spin patterns called magnetic vortex rings, which could have applications in energy-efficient data storage and processing. Y. Liu and N. Nagaosa [ 1]

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MXene-mediated regulation of local electric field surrounding polyoxometalate nanoparticles for improved lithium storage

Due to their capability of reversibly accepting multi lithium ions, polyoxometalates (POMs) have been widely regarded as promising candidates for electrochemical lithium storage. Nevertheless, the insulating nature of POMs hinders fast migration kinetics of lithium within the bulk of these materials. Herein, we propose the

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High-Capacity NH4+ Charge Storage in Covalent Organic Frameworks

Ammonium ions (NH4+), as non-metallic charge carriers, have spurred great research interest in the realm of aqueous batteries. Unfortunately, most inorganic host materials used in these batteries are still limited by the sluggish diffusion kinetics. Here, we report a unique hydrogen bond chemistry to employ covalent organic frameworks (COFs)

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Yizhou WANG | PhD Student | Master of Science | King

Transparent supercapacitors are regarded as typical energy storage and manage devices for future transparent electronics, becoming an intrigue research topic in the interdiscipline of materials

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Wenyong LAI | Fudan University, Shanghai | Research profile

Stretchable, self‐healable, and high‐capacity supercapacitors (SCs), as a state‐of‐the‐art energy storage technology, hold enormous potential in cutting‐edge wearable electronics.

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Rechargeable anion-shuttle batteries for low-cost energy storage

As an alternative energy storage strategy, rechargeable anion-shuttle batteries (ASBs) with anions, as charge carriers compensating charge neutrality of electrodes, have attracted great attention because of the prospect of low costs,

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- . : > . . 2024: 165.Guangxun Zhang, Yibo Lu, Ya Yang, Hui Yang, Zilin Yang, Shixian Wang, Wenting Li, Yangyang Sun, Jianfei Huang, Yongsong Luo, Han-Yi Chen, Yen-Fa Liao, Hirofumi Ishii, Sanna Gull, Mohsen Shakouri, Huai-Guo Xue, Yongfeng Hu, and Huan Pang

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Flexible Electrochemical Energy Storage Devices and Related

3 · Given the escalating demand for wearable electronics, there is an urgent need to explore cost-effective and environmentally friendly flexible energy storage devices with

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Tailored 2d Conjugated Polymers for Pseudocapacitive Proton Storage

2D conjugated polymers (2D-CPs) are currently attracting a substantial attention as host materials in electrochemical energy storage. They show some intriguing properties, such as high conductivity (by elevating the conjugated degree), adjustable redox activity (by controlling the monomers), and stable skeleton structure (low solubility in

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Liquid metal compartmented by polyphenol‐mediated nanointerfaces enables high‐performance thermal management on electronic

The exponentially increasing heat generation in electronic devices, induced by high power density and miniaturization, has become a dominant issue that affects carbon footprint, cost, performance, reliability, and lifespan.

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As an advanced energy storage system, lithium-ion batteries play an essential role in modern technologies. Despite their ubiquitous success, there is a great demand for continuous improvements of the battery performance, including higher energy density, lower safety risk, longer cycling life, and lower cost. Such performance

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Carbon-intercalated Ti3C2Tx MXene for high

In this study, carbon-intercalated Ti3C2Tx MXene (Ti3C2Tx/C) was prepared through annealing long-chain fatty amines to form carbon interlayers into MXene. With the increase in interlayer

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Zhengnan TIAN | PhD Student | Doctor of Engineering | King

During the past decade, flexible/stretchable energy storage devices have garnered increasing attention, with the successful development of wearable electronics.

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MXenes for Energy Harvesting | Request PDF

Here M3AX2 MAX phase and M3X2Tx MXenes are shown as examples. MXenes for solar energy harvesting. a) Schematic illustration showing the working mechanism of solar energy harvesting and the roles

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Manipulating local coordination of copper single atom catalyst

Electrochemical CO2 conversion to methane, powered by intermittent renewable electricity, provides an entrancing opportunity to both store renewable

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Carbon-intercalated Ti3C2Tx MXene for high-performance electrochemical energy storage

In this study, carbon-intercalated Ti3C2Tx MXene (Ti3C2Tx/C) was prepared through annealing long-chain fatty amines to form carbon interlayers into MXene. With the increase in interlayer spacing due to amine intercalation and enhanced electrical conductivity owing to the in situ formation of carbon between M

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Yi ZHOU | PostDoc Position | PhD | ShanghaiTech University,

Conductive metal–organic frameworks show promising applications in electronic and energy storage devices.

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Yizhou Dai''s research works | University of Electronic Science and

Yizhou Dai''s 11 research works with 974 citations and 2,473 reads, including: Achieving Efficient CO2 Electrolysis to CO by Local Coordination Manipulation of Nickel Single-Atom Catalysts

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Yizhou Zhou | IEEE Xplore Author Details

Yizhou Zhou (Member, IEEE) received the B.S. and Ph.D. degrees in electrical engineering from Hohai University, Nanjing, China, in 2015 and 2020, respectively. He was a Visiting

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MXenes for Energy Harvesting

Energy harvesting modules play an increasingly important role in the development of autonomous self-powered microelectronic devices. MXenes (i.e., 2D transition metal carbide/nitride) have recently emerged as promising candidates for energy applications due to their excellent electronic conductivity, large specific surface area,

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Optimization study on a solar‐assisted air source heat pump system with energy storage

Currently, hybrid renewable energy systems with thermal energy storage have various advantages and are widely used. This paper investigated the performance of a solar‐assisted air source heat pump system with energy storage (SASHPS‐ES) in Beijing, China, and proposed an optimal operation mode based on economic evaluation.

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Direct-Chemical Vapor Deposition-Enabled Graphene for Emerging Energy Storage

The direct chemical vapor deposition (CVD) technique has stimulated an enormous scientific and industrial interest to enable the conformal growth of graphene over multifarious substrates, which readily bypasses tedious transfer procedure and empowers innovative materials paradigm. Compared to the prevailing graphene materials (i.e.,

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Yizhou Wang (0000-0001-9515-8051)

Contributors: Yizhou Wang; Yizhou Wang; Xiangming Xu; Jian Yin; Gang Huang; Tianchao Guo; Zhengnan Tian; Rajeh Alsaadi Rechargeable anion-shuttle batteries for low-cost energy storage Chem 2021-08 | Journal article DOI: 10.1016/j Show more detail

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Roadmap for rechargeable batteries: present and beyond,Science

Rechargeable batteries currently hold the largest share of the electrochemical energy storage market, and they play a major role in the sustainable

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Yizhou Zhou | IEEE Xplore Author Details

Yizhou Zhou (Member, IEEE) received the B.S. and Ph.D. degrees in electrical engineering from Hohai University, Nanjing, China, in 2015 and 2020, respectively. He was a Visiting Scholar with Illinois Institute of Technology, Chicago, USA, from

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Yizhou ZHANG | Doctor of Philosophy | Nanjing University of

Yizhou ZHANG | Cited by 8,902 | of Nanjing University of Information Science & Technology, Nanjing | Read 110 publications | Contact Yizhou ZHANG

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Jiang Yizhou | IEEE Xplore Author Details

Science and Technology Internet Department, State Grid Hunan Electric Power Co., Ltd, Changsha, China Publication Topics energy storage,optimisation,power distribution control,power generation control,renewable energy sources,

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About yizhou electronic energy storage

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