lin xuefeng energy storage

Significantly Enhanced Energy Storage Performances of PEI

Polymer dielectrics with a high energy density and an available energy storage capacity have been playing an important role in advanced electronics and power systems. Nevertheless, the use of polymer dielectrics in harsh environments is limited by their low energy density at high temperatures. Herein, zirconium dioxide (ZrO 2 )

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Low-temperature stable ferroelectric–antiferroelectric transition for cryogenic energy storage

As for now, it still remains an ongoing challenge for simultaneously achieving high energy storage density and cryogenic temperature stability. Herein, the strategy of stable backward phase transition was demonstrated in the antiferroelectric composition of (Pb 0.9175 La 0.055 )(Zr 0.975 Ti 0.025 )O 3 .

Effect of permeable spacer structure on energy loss and mass

Semantic Scholar extracted view of "Effect of permeable spacer structure on energy loss and mass transfer in reverse osmosis membrane modules" by Peifeng Lin et al. DOI: 10.1016/j.seppur.2023.125549 Corpus ID:

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[PDF] Unbalanced mass flow rate of packed bed thermal energy storage

DOI: 10.1016/J.ENCONMAN.2019.02.022 Corpus ID: 104428140 Unbalanced mass flow rate of packed bed thermal energy storage and its influence on the Joule-Brayton based Pumped Thermal Electricity Storage In recent years, there has been an increase in the

Energy Storage Materials | Vol 65, February 2024

Excellent energy storage properties with ultrahigh Wrec in lead-free relaxor ferroelectrics of ternary Bi0.5Na0.5TiO3-SrTiO3-Bi0.5Li0.5TiO3 via multiple synergistic optimization. Changbai Long, Ziqian Su, Huiming Song, Anwei Xu, Xiangdong Ding. Article 103055.

Song LUO | Ph.D candidate | Doctor of Engineering | Central

ratio on the strain energy storage and evolution characteristics of rock materials during G. Lin Xuefeng Si To investigate the rate effect on parameters of the rock strength criterion under

Polyaniline-Lignin Interpenetrating Network for Supercapacitive Energy Storage

A symmetric PANI-LS||PANI-LS device delivers a high specific energy of 21.2 W h kg –1, an outstanding specific power of 26.0 kW kg –1, along with superb flexibility and excellent cycling stability. Thus, combining charge storage attributes of polyaniline and lignosulfonate enables a waste-to-wealth approach to improve the supercapacitive

Mr. Lin Xuefeng, Mayor of

Mr. Lin Xuefeng, Mayor of Jinghai District Government, Tianjin City, will be joining us at #SET #Techfest19 on our panel: ''Smart Cities: Building Start Up Energy Transition · March 14, 2019 ·

Biomass applied in supercapacitor energy storage devices

The ever-increasing energy demand and fossil energy consumption accompanied by the worsening environmental pollution urge the invention and development of new, environmentally friendly and renewable high-performance energy devices. Among them, the supercapacitor has received massive attention, and the various electrode

People

His current research covers both fundamental (multiphase transport phenomena across length scales) and applied (new energy conversion and storage technologies) aspects. He invented liquid air energy storage technology and led the Telephone. +44 (0) 121 414 5279. Email. [email protected].

X-MOL

Lithium Storage in Bowl-like Carbon: The Effect of Surface Curvature and Space Geometry on Li Metal Deposition. Dendrite growth severely hinders the practical use of lithium metal as an ideal

Laboratory of Asymmetric Catalysis and Synthesis-Zhejiang

Xufeng Lin,LINXUFENG,Laboratory of Asymmetric Catalysis and Synthesis,zju,,, "", 。

Iron carbide allured lithium metal storage in carbon nanotube

: [Energy Storage Materials 36 (2021) 459–465] DOI of original article 10.1016/j.ensm.2021.01.022. :2021-06-01.

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Xue-Feng Lu, Jing Lin, Zhi-Xiang Huang, Gao-Ren Li,* Three-Dimensional Nickel Oxide@Carbon Hollow Hybrid Networks with Enhanced Performance for Electrochemical Energy Storage,

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L03 ». 1.Hao Pan, Shun Lan, Shiqi Xu, Qinghua Zhang, Hongbao Yao, Yiqian Liu, Fanqi Meng, Er-Jia Guo, Lin Gu, Di Yi, Xiao Renshaw Wang, Houbing Huang, Judith L. MacManus-Driscoll, Long-Qing Chen, Kui-Juan Jin*, Ce-Wen Nan*, Yuan-Hua Lin*, Ultrahigh energy storage in superparaelectric relaxor ferroelectrics, Science

Energy Storage Materials

Iron carbide allured lithium metal storage in carbon nanotube cavities Gaojing Yang a, b, Zepeng Liu, b, Suting Weng, c, Qinghua Zhang c, Xuefeng Wang, ∗, Zhaoxiang Wang a,

Localized‐domains staging structure and evolution in lithiated

DOI: 10.1002/cey2.224 Corpus ID: 249334269 Localized‐domains staging structure and evolution in lithiated graphite @article{Weng2022LocalizeddomainsSS, title={Localized‐domains staging structure and evolution in lithiated graphite}, author={Suting Weng and Siyuan Wu and Zepeng Liu and Gaojing Yang and Xiaozhi Liu and Xiao

Suting WENG | Chinese Academy of Sciences, Beijing | CAS

Xin-Yan Li. Suting Weng. Lin Gu. The structure-activity relationship of functional materials is an everlasting and desirable research question for material science researchers

Renju Lin''s research works | Anhui University, Hefei and other places

Renju Lin''s 9 research works with 43 citations and 721 reads, including: Visualizing the Atomic Configuration of Carbonate Groups in a (Cu,C)Ba 2 Ca 3 Cu 4 O 11+ δ Superconductor (Adv. Mater. 26/

Tunable equivalent dielectric constant and superior energy storage

External field stability measurement of energy density W re and energy storage efficiency η for x = 0.10, y = 0.86. (a) under varied frequency (0.01 Hz-2 kHz) (b) under varied temperature (−60 to 120 ℃ ) (c) under increased loading cycle (10 4

Polymer electrolytes based on interactions between [solvent-Li+]

Section snippets Interactions between DMF and PVDF Dehydrofluorination occurs when PVDF is dissolved in the basic DMF, leading to changes in both the molecular structure and the crystal structure of PVDF (Figure S1). The absorption peak of PVDF at 840 cm −1 shifts to 830 cm −1 and the peak at 880 cm −1 shifts and becomes weak in

Xuefeng Lin

View Xuefeng Lin''s profile on LinkedIn, a professional community of 1 billion members. Senior Member Of Technical Staff at Micron Technology · I have about 35 years of experience in

Enhanced energy-storage density in (Pb0.98La0.02)(Zr0.45

@article{Li2024EnhancedED, title={Enhanced energy-storage density in (Pb0.98La0.02)(Zr0.45-xSn0.55Hfx)0.995O3 antiferroelectric ceramics}, author={Weiqiu Li and Shibin Wang and Changli Lin and Yuliang Yu

Mini Review on Cellulose-Based Composite Separators

A lithium-ion battery separator is one of the essential components of a lithium-ion battery structure. It has attracted wide attention as a result of providing efficient transmission channels of lithium ions,

Laboratory of Asymmetric Catalysis and Synthesis-Zhejiang

Professor | Doctoral supervisor. Department Department of Chemistry. E-mail lxfok@zju .cn; Address:Room A-613, Department of Chemistry, Zijingang Campus,

Lin Xuefeng — University of Birmingham

Research Fellow (Thermochemical Energy Conversion and Storage for Industrial Dec, Chemical Engineering

Topologically protected oxygen redox in a layered manganese

Compared to cobalt (Co) and nickel (Ni), two major elements in commercial cathode materials, redox-active manganese could be an alternative and

Localized‐domains staging structure and evolution in lithiated graphite

Tianmu Lake Institute of Advanced Energy Storage Technologies Co., Ltd., Liyang, Jiangsu, China Correspondence Xuefeng Wang, Ruijuan Xiao, and Zhaoxiang Wang, Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, 100190 Beijing, China.

Iron carbide allured lithium metal storage in carbon nanotube

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Electric field tunable thermal stability of energy storage

The electrical hysteresis behaviors and energy storage performance of Pb0.97La0.02(Zr0.58Sn0.335Ti0.085)O3 antiferroelectric (AFE) ceramics were studied under the combined effects of electric field and temperature. It was observed that the temperature dependence of recoverable energy density (Wre) of AFE ceramics depends

Energy Storage Materials

Iron carbide allured lithium metal storage in carbon nanotube cavities Gaojing Yang a, b, Zepeng Liu, b, Suting Weng, c, Qinghua Zhang c, Xuefeng Wang, ∗, Zhaoxiang Wang a, b, ∗, Lin Gu c, Liquan Chen a, b a Key Laboratory forRenewable Energy

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