energy storage chen haitao
Magnetron sputtering enabled synthesis of nanostructured materials for electrochemical energy storage …
Batteries and supercapacitors are promising candidates for electrochemical energy storage while the development of their electrode materials is becoming a bottleneck. This limitation necessitates the design of electrode materials with high specific capacity/capacitance and excellent cycling stability, yet at a low cost.
An Energy Storage System for Recycling Regenerative Braking Energy …
This paper proposes an energy storage system (ESS) for recycling the regenerative braking energy in the high-speed railway. In this case, a supercapacitor-based storage system is integrated at the DC bus of the back to back converter that is connected to the two power phases of the traction power system (TPS). ... Junyu Chen, Haitao Hu, …
Engineering electrolyte strong-weak coupling effect toward wide ...
Supercapacitor (SC), as a typical electrochemical energy storage (EES) device, has been extensively investigated as one of the promising candidates for grid-scale energy storage system owing to their long lifespan and high-power [1], [2], [3]. ... Haitao Hu: Declaration of competing interest ... Changrui Chen, …, Peng Ge. …
Ti x MXene-Based Micro-Supercapacitors
Haichao Huang, Xiang Chu, Yanting Xie, Binbin Zhang, Zixing Wang, Zhongyi Duan, Ningjun Chen, Zhong Xu, Haitao Zhang, and Weiqing Yang* Cite This: ACS Nano 2022, 16, 3776−3784 Read Online ... short-term energy storage, burst-mode power delivery, and sustained cycling stability.6−9 However, restricted energy
Low‐Temperature Carbonized Nitrogen‐Doped Hard Carbon Nanofiber Toward High‐Performance Sodium‐Ion Capacitors
Jin et al. [] investigated the effect of different carbonization temperatures on the performance of sodium-ion storage and concluded that 1250 C was the optimal between 800 and 1500 C. The CNF prepared by Chen et al. …
A gradient "Ceramic-in-Ionogel" electrolyte with tidal ion flow for ...
High–energy density lithium (Li) metal batteries (LMBs) are promising for energy storage applications but suffer from uncontrollable electrolyte degradation and the consequently formed unstable ... Mengmeng Yao Tianhao Yu Qinqin Ruan Qingjun Chen Haitao Zhang Suojiang Zhang. Materials Science, Chemistry. ACS applied materials & …
Electrospun carbon-based nanostructured electrodes for advanced energy storage – A review,Energy Storage …
Xiaoyan Li, Yuming One-dimensional (1D) carbon-based composite nanostructures have been considered promising electrodes for advanced electrical energy storage systems, e.g., rechargeable batteries and supercapacitors, because of their high conductivity, good mechanical integrity, and large surface area.
Structural Composite Energy Storage Devices-a Review
Electrochemical Energy. In this study, we report a facile carbothermal method for the preparation of boron-oxy-carbide (BOC) nanostructures and explore their properties towards electrochemical energy storage devices. Download Full-text. Read Structural Composite Energy Storage Devices-a Review.
Yuxiang Chen (0000-0003-4651-5029)
Biography. Dr. Chen''s expertise is on high-performance buildings, with focuses on energy efficiency and peak demand reduction through thermal energy storage, daylighting, intelligent operation, utilization of renewable energy, and their integrated design and operation. His current research projects include:
An Energy Storage System for Recycling Regenerative Braking Energy …
This paper proposes an energy storage system (ESS) for recycling the regenerative braking energy in the high-speed railway. In this case, a supercapacitor-based storage system is integrated at the DC bus of the back to back converter that is connected to the two power phases of the traction power system (TPS). In order to ensure the …
A gradient "Ceramic-in-Ionogel" electrolyte with tidal ion flow for …
DOI: 10.1016/j.nanoen.2023.108571 Corpus ID: 258997795 A gradient "Ceramic-in-Ionogel" electrolyte with tidal ion flow for ultra-stable lithium metal batteries @article{Ruan2023AG, title={A gradient "Ceramic-in-Ionogel" electrolyte with tidal ion flow for ultra-stable lithium metal batteries}, author={Qinqin Ruan and Meng Yao and Shuangjiang Luo and Wei …
High Energy Storage Performance and Large Electrocaloric …
With regard to the global energy crisis and environmental pollution, ferroelectric thin films with unique polarization behavior have garnered considerable attention for energy storage and electrocaloric refrigeration. Herein, a series of (1 – x)Bi0.5Na0.5TiO3–xBa(Zr0.2Ti0.8)O3 (x = 0.3–0.9; (1 – x)BNT–xBZT) films were …
High-voltage asymmetric MXene-based on-chip micro-supercapacitors
Accordingly, this high-voltage MXene-based on-chip MSCs deliver a high energy density of 3.5 mWh cm −3 (at a power density of 100 mW cm −3), which is much superior than the other reported on-chip energy storage devices [[43], [44], [45]]. In addition, our MSCs show an excellent capacitance retention of ~91.4% after 10 000 cycles.
Magnetron sputtering enabled synthesis of ...
Batteries and supercapacitors are promising candidates for electrochemical energy storage while the development of their electrode materials is becoming a bottleneck. This limitation necessitates the design of electrode materials with high specific capacity/capacitance and excellent cycling stability, yet at Journal of Materials Chemistry …
Development of a Synergistic Activation Strategy for the Pilot …
Pursuing scalable production of porous carbon with facile and environmentally friendly synthesis methodology is a global goal. Herein, a unique hierarchical porous graphitic carbon (HPGC) with outstanding textural characteristics is achieved by a special synergistic activation mechanism, in which the low-temperature …
Structural composite energy storage devices — a review
Abstract. Structural composite energy storage devices (SCESDs) which enable both structural mechanical load bearing (sufficient stiffness and strength) and electrochemical energy storage (adequate capacity) have been developing rapidly in the past two decades. The capabilities of SCESDs to function as both structural elements and …
Low‐Temperature Carbonized Nitrogen‐Doped ...
Jin et al. investigated the effect of different carbonization temperatures on the performance of sodium-ion storage and concluded that 1250 °C was the optimal between 800 and 1500 °C. The CNF prepared by Chen et al. had a sodium-ion storage capacity of 233 mAh g −1 at 0.05 A g −1, and the retention was 97.7% after 200 cycles.
Eco-Friendly Synthesis of Vanadium Metal-Organic Frameworks …
To meet the ever-increasing energy storage demands, there is an urgent need for developing next-generation batteries with high energy densities from an eco-friendly and sustainable resource. Vanadium metal-organic frameworks (V-MOFs) are regarded as important electrode materials for aqueous Zn-ion batteries (ZIBs) due to their …
Enhanced energy storage density and discharge efficiency in the …
DOI: 10.1016/J.JALLCOM.2016.06.024 Corpus ID: 138454093 Enhanced energy storage density and discharge efficiency in the strontium sodium niobate-based glass-ceramics @article{Wang2016EnhancedES, title={Enhanced energy storage density and discharge efficiency in the strontium sodium niobate-based glass-ceramics}, …
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