high power

Achieving high power density and stability in aqueous Mg–air batteries using taurine electrolyte additives

Inorg. Chem. Front., 2024, Advance Article
DOI: 10.1039/D4QI01842G, Research Article
Sha Jianchun, Wang Qiang, Li Xue, Liu Zhoulin, Bao Jiaxin, Li Lianhui, Tian Jie, Chen Weilong, Liu Wenhong, Zhang Zhiqiang
Aqueous Mg–air batteries are promising candidates for large-scale energy storage, but their practical application is significantly hindered by water-induced parasitic reactions and the chunk effect.
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high power

Electropolymerized Organic N/P Bipolar Cathode Toward High Energy and High Power Density Sodium Dual-Ion Batteries

J. Mater. Chem. A, 2024, Accepted Manuscript
DOI: 10.1039/D4TA07077A, Paper
Weisheng Zhang, Chen-Xing Zhang, Xianhe Chen, H.J. Yin, Wenli Hu, Shilin Mei, Chang-Jiang Yao
Sodium dual ion batteries (SDIBs) have received considerable attention recently for large-scale energy storage systems due to their low cost and inherent safety. Nevertheless, SDIBs remain a subject of investigation,...
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high power

Fe-single-atom-coupled Fe3C multifunctional catalysts on P-, F-, N-doped carbon nanotubes for stable Zn–air batteries with ultra-high power densities

J. Mater. Chem. A, 2024, 12,30798-30809
DOI: 10.1039/D4TA04194A, Paper
Manigandan Ramadoss, Hesheng Yu, Anand Rajkamal, Gun Jin Yun, Ziheng Zhang, Chengtao Yang, Fei Ma, Yu Wu, Chen Daiqian, Yuanfu Chen
Fe-single-atom-coupled Fe3C multifunctional catalysts on P-, F-, N-doped CNT deliver comparable OER behavior to RuO2, better ORR performance than Pt/C, and better ZAB performance than Pt/C–RuO2, due to the nanoarchitecture and abundant active sites.
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high power

What's up with high power factor CFLs?

High power factor compact fluorescent light bulbs are a better choice than standard CFLs because they put less strain on the power grid.




high power

Conduction cooled high power semiconductor laser and method for fabricating the same

A conduction cooled high power semiconductor laser and a method for fabricating the same are provided. The conduction cooled high power semiconductor laser comprises a heat sink (2) and one or more semiconductor laser units (1). The semiconductor laser unit consists of a laser chip (3), a substrate (4) bonded to the laser chip for heat dissipation and electrical connection, and an insulation plate (5) soldered to the substrate for insulation and heat dissipation. The semiconductor laser unit is soldered on the heat sink with the insulation plate therebetween. The semiconductor laser unit may be tested, aged, and screened in advance, and thereby the yield of the lasers can be improved and the manufacturing costs can be reduced. The laser has desirable heat dissipation performance, high reliability, and is applicable to high temperature and other complex and volatile environments.




high power

Hyperbolic metamaterials as distributed bragg mirrors for high power VCSEL devices

Implementing a layered hyperbolic metamaterial in a vertical cavity surface emitting laser (VCSEL) to improve thermal conductivity and thermal dissipation thereby stabilizing optical performance. Improvement in the thermal management and power is expected by replacing the distributed Bragg reflector (DBR) mirrors in the VCSEL. The layered metamaterial structure performs the dual function of the DBR and the heat spreader at the same time.




high power

High power single mode ytterbium fiber laser system with single mode neodymium fiber pump source

A high power fiber laser system emitting a substantially diffraction limited beam with a Gaussian intensity profile includes a single mode (“SM”) neodymium fiber pump source outputting a SM pump light; a seed laser operative to emit a SM signal light at a wavelength greater than that of the pump light; a SM DWM receiving and multiplexing the SM pump and signal lights. The disclosed system further includes a booster fiber amplifier which is configured with a frustoconically-shaped ytterbium (“Yb”) doped core receiving the pump and signal lights and configured with a small diameter input end which supports only a SM and a large diameter output end which is capable of supporting the SM and high order modes (:HOM”). The booster further has a cladding surrounding and coextending with the core, the core being configured for having intensity profiles of respective SMs of pump and signal lights overlap one another so that an overlap integral substantially equals to one (1) along an entire length of the core. The SM of the light signal extracts substantially the entire energy from the pump mode leaving the HOMs without amplification necessary to affect a quality of the diffraction limited beam of the system in a MW peak power range and hundreds of watt average power range.




high power

Control system for high power laser drilling workover and completion unit

A control and monitoring system controls and monitors a high power laser system for performing high power laser operations. The control and monitoring system is configured to perform high power laser operation on, and in, remote and difficult to access locations.




high power

Supercapacitor promises storage, high power and fast charging

A new supercapacitor based on manganese oxide could combine the storage capacity of batteries with the high power and fast charging of other supercapacitors, according to researchers at Penn State and two universities in China.




high power

High Powered Committee on Urban Co-operative Banks

RBI constitutes High Powered Committee on Urban Co-operative Banks




high power

High Power Computing [electronic journal].

Worldwide Videotex




high power

Ultrahigh power factor and flexible silver selenide-based composite film for thermoelectric devices

Energy Environ. Sci., 2020, 13,1240-1249
DOI: 10.1039/C9EE01609K, Paper
Yao Lu, Yang Qiu, Kefeng Cai, Yufei Ding, Mengdi Wang, Cong Jiang, Qin Yao, Changjun Huang, Lidong Chen, Jiaqing He
A highly flexible Ag2Se based composite film on nylon with a record power factor is prepared for thermoelectric generators.
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high power

Correction: Ultrahigh power factor and flexible silver selenide-based composite film for thermoelectric devices

Energy Environ. Sci., 2020, 13,1287-1288
DOI: 10.1039/D0EE90012E, Correction
Open Access
  This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.
Yao Lu, Yang Qiu, Kefeng Cai, Yufei Ding, Mengdi Wang, Cong Jiang, Qin Yao, Changjun Huang, Lidong Chen, Jiaqing He
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