Energy storage enterprise zhou yi
Design of Complex Nanomaterials for Energy Storage: Past
Finally, critical innovations that have been brought to the area of grid-scale energy storage and battery safety by nanotechnology are also succinctly reviewed. Skip to Past Success and Future Opportunity.}, author={Yayuan Liu and Guangmin Zhou and Kai Liu and Yi Cui}, journal={Accounts of chemical research}, year={2017}, volume={50 12
Government-Enterprise Collaboration Reserve Decision Model of
Under the assumption that the demand distribution function for emergency supplies is uniform distribution and generalized Pareto distribution, the model investigates the optimal reserves of government physical reserves, enterprise agreement physical reserves, and enterprise production capacity reserves.
Energy Storage Materials | Vol 28, Pages 1-418 (June 2020
Yi Zhao, Yinong Wang, Zhiming Zhao, Jingwen Zhao, Jinzhang Liu. Pages 64-72 View PDF. Yao Zhou, Chao Yuan, Shaojie Wang, Yujie Zhu, Qi Li. Pages 255-263 View PDF. select article Corrigendum to "A SAXS outlook on disordered carbonaceous materials for electrochemical energy storage" [Energy Storage Mater. 21 (2019) 162–173]
Realizing High Energy Storage Performance Under Low Electric
Relaxing ferroelectric ceramics with excellent energy storage performance are considered as the most prospective candidates applied in energy storage fields suc Yanchun and Yang, Shiyu and Liu, Yuanli and Chen, Xiuli and Li, Xu and Huang, FangYi and Zhou, Huanfu, Realizing High Energy Storage Performance Under Low Electric Fields In Bi0
Excellent energy storage properties, domain mechanism, and
Pulsed power systems require high-performance capacitors with high energy storage density. In this work, (1 − x)BaTiO3-xBi(Mg1/2Sn1/2)O3 ferroelectric ceramics. Jing-Min Fan, Xin-Gui Tang, Qiu-Xiang Liu, Yi-Chun Zhou; Excellent energy storage properties, domain mechanism, and temperature stability of lead-free BaTiO 3-Bi(Mg 1/2 Sn 1/2)O 3
Interface-modulated nanocomposites based on polypropylene for
In linear dielectric polymers (the electric polarization scales linearly with the electric field, such as polypropylene, PP), the electrical conduction loss is the predominant energy loss mechanism under elevated temperatures and high electric fields [14, 15] corporating highly insulating inorganic nanoparticles into polymer dielectrics has been proved effective in the
Journal of Energy Storage | Vol 84, Part A, 15 April 2024
Read the latest articles of Journal of Energy Storage at ScienceDirect , Elsevier''s leading platform of peer-reviewed scholarly literature Ting-Ting Mao, Yi-Zhao Chen, Shuai-Fu Cui, Yong-Gang Min. Article 110709 View PDF Wei Liu, Yongxiang Cai, Zhongkang Zhou, Zhiyuan Cheng. Article 110816 View PDF. Article preview. select
Nanowires for Electrochemical Energy Storage (Journal Article
In this review, we give a systematic overview of the state-of-the-artresearch progress on nanowires for electrochemical energy storage, from rational designand synthesis,in situstructural characterizations, to several important applications inenergy storage including lithium-ion batteries, lithium-sulfur batteries, sodium-ionbatteries, and
Utilizing in situ alloying reaction to achieve the self-healing, high
As expected, a desired electrochemical energy storage system can simultaneously combine the low-cost raw materials with ultra-high energy density and no performance degradation characteristics. Here, we use liquid lithium as the anode, solid antimony as the cathode, molten LiF–LiCl–LiBr (or molten LiF–LiCl) as the electrolyte and test the battery at 550 °C.
Yi Zhou
Research Fellow at NUS · Experience: National University of Singapore · Education: National University of Singapore · Location: Singapore · 3 connections on LinkedIn. View Yi Zhou''s profile on LinkedIn, a professional community of 1 billion members.
Performance of a Rotating Latent Heat Thermal Energy Storage
Due to the rapid growth in the demand for fast and efficient latent heat thermal energy storage (LHTES) system, multiple heat transfer enhancement techniques have been proposed and widely investigated. Actively or passively, rotation of the energy storage unit affects the internal natural convection and the heat transfer performance.
Sulfonyl Manipulation for Enhancing Energy Storage of Flexible
The manipulation of sulfonation in polymer dielectrics'' design introduces a deep perspective for advancing high energy storage films. Liang, Yujie and Xu, Jiazhu and Sun, Wenjie and Li, Tianyu and Dong, Changyi and Zhou, Yi and Zheng, Hong and Cheng, Yonghong and Zhang, Lei, Sulfonyl Manipulation for Enhancing Energy Storage of Flexible
Design of Complex Nanomaterials for Energy Storage:
ConspectusThe development of next-generation lithium-based rechargeable batteries with high energy density, low cost, and improved safety is a great challenge with profound technological significance for portable
Structure and Properties of Prussian Blue Analogues in Energy Storage
In recent years, Prussian blue analogue (PBA) materials have been widely explored and investigated in energy storage/conversion fields. Herein, the structure/property correlations of PBA materials as host frameworks for various charge-carrier ions (e.g., Na +, K +, Zn 2+, Mg 2+, Ca 2+, and Al 3+) is reviewed, and the optimization strategies to achieve
High energy storage capability of perovskite relaxor ferroelectrics
Ultrafast charge/discharge process and ultrahigh power density enable dielectrics essential components in modern electrical and electronic devices, especially in pulse power systems. However, in recent years, the energy storage performances of present dielectrics are increasingly unable to satisfy the growing demand for miniaturization and integration,
Journal of Energy Storage | Vol 86, Part A, 1 May 2024
Read the latest articles of Journal of Energy Storage at ScienceDirect , Elsevier''s leading platform of peer-reviewed scholarly literature Qiang Lu, Jia-le Zhou, Xin-yue Zhou, Rong Guo, Yang-wen Wu. Article 111229 View PDF. Article preview. Yi Wang, Guoliang Qin, Cheng Jia, Qin Cui, Yazhou Wang. Article 111176 View PDF.
Energy Storage Materials | Vol 55, Pages 1-866 (January 2023
Read the latest articles of Energy Storage Materials at ScienceDirect , Elsevier''s leading platform of peer-reviewed scholarly literature Ting Zhou, Jianneng Liang, Shenghua Ye, Qianling Zhang, Jianhong Liu. Pages 322-355 View PDF. Yu-Hong Liu, Lan-Xing Li, An-Yi Wen, Fei-Fei Cao, Huan Ye. Pages 652-659 View PDF. Article preview.
Vanadium Flow Battery for Energy Storage: Prospects and
The vanadium flow battery (VFB) as one kind of energy storage technique that has enormous impact on the stabilization and smooth output of renewable energy. Key materials like membranes, electrode, and electrolytes will finally determine the performance of VFBs. In this Perspective, we report on the current understanding of VFBs from materials to stacks,
Lu Lab @ UCLA Chemical Engineering
Developing technologies that enable effective harvesting and storage of energy has emerged as an essential topic. We are interested in the design of nanomaterials for energy storage and conversion. We work extensively on
Multiscale Construction of Bifunctional Electrocatalysts for
Zinc–air batteries deliver great potential as emerging energy storage systems but suffer from sluggish kinetics of the cathode oxygen redox reactions that render unsatisfactory cycling lifespan. The exploration on bifunctional electrocatalysts for oxygen reduction and evolution constitutes a key solution, where rational design strategies to
Design of Complex Nanomaterials for Energy Storage: Past
author = "Yayuan Liu and Guangmin Zhou and Kai Liu and Yi Cui", note = "KAUST Repository Item: Exported on 2020-10-01 Acknowledgements: Y.C. acknowledges the support over the past 12 years from the Assistant Secretary for Energy Efficiency and Renewable Energy, Office of Vehicle Technologies, Battery Materials Research (BMR) Program and Battery
Sustainable value chain of retired lithium-ion batteries for
Retired batteries still remain 70–80% of the initial capacity and have the potential to be utilized in less-stressful demanding applications [4].Furthermore, spent EV LIBs contain many valuable resources such as lithium (Li), cobalt (Co) and manganese (Mn) [8], which can be recycled to reduce the resources requirement, and the global business of retired LIBs
Recent advances in titanium-based electrode materials for stationary
Recently, the attention to sodium-ion batteries has been refocused on large-scale energy storage applications, due to sodium''s low cost and infinite abundance. Sodium is one of the most abundant elements on earth and exhibits chemical properties similar to lithium. S. Guo, J. Yi, Y. Sun and H. Zhou, Energy Environ. Sci., 2016, 9, 2978 DOI
Profitability Analysis and Sizing-Arbitrage Optimisation of
This paper explores the potential of using a molten salt-based electric heater and thermal energy storage to retrofit a CFPP for grid-side energy storage system. Skip to main content. Download This Paper. Open PDF in Browser. He, Yi and Song, Jian and Guo, Su and Zhou, Jianxu and Markides, Christos N., Profitability Analysis and Sizing
Recent advances in titanium-based electrode
Recently, the attention to sodium-ion batteries has been refocused on large-scale energy storage applications, due to sodium''s low cost and infinite abundance. Sodium is one of the most abundant elements on
Evaluation of optimal waste lithium-ion battery recycling
Facing today''s deteriorating issues of environmental degradation, the call for pollution reduction and green transformation is getting increasingly higher, and the process of global carbon emission reduction is accelerating [1].Transportation is one of the important areas for carbon emissions, and the transportation sector has a large carbon footprint [2].
Energy Storage Materials | Vol 36, Pages 1-552 (April 2021
Read the latest articles of Energy Storage Materials at ScienceDirect , Elsevier''s leading platform of peer-reviewed scholarly literature Yang Wang, Mohammad Mehrali, Yi-Zhou Zhang, Melvin A. Timmerman, Johan E. ten Elshof. Pages 318-325 Wanwan Wang, Yu Wang, Chia-Hsin Wang, Yaw-Wen Yang, Yi-Chun Lu. Pages 341-346 View PDF

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