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Pulsed dynamic electrolysis enhanced PEMWE hydrogen production:Revealing the effects of pulsed electric fields on protons mass transport and hydrogen bubble escape 被引量:1
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作者 Xuewei Zhang Wei Zhou +13 位作者 Yuming Huang liang Xie tonghui li Huimin Kang lijie Wang Yang Yu Yani Ding Junfeng li Jiaxiang Chen Miaoting Sun Shuo Cheng Xiaoxiao Meng Jihui Gao Guangbo Zhao 《Journal of Energy Chemistry》 2025年第1期201-214,共14页
The transition of hydrogen sourcing from carbon-intensive to water-based methodologies is underway,with renewable energy-powered proton exchange membrane water electrolysis(PEMWE)emerging as the preeminent pathway for... The transition of hydrogen sourcing from carbon-intensive to water-based methodologies is underway,with renewable energy-powered proton exchange membrane water electrolysis(PEMWE)emerging as the preeminent pathway for hydrogen production.Despite remarkable advancements in this field,confronting the sluggish electrochemical kinetics and inherent high-energy consumption arising from deteriorated mass transport within PEMWE systems remains a formidable obstacle.This impediment stems primarily from the hindered protons mass transfer and the untimely hydrogen bubbles detachment.To address these challenges,we harness the inherent variability of electrical energy and introduce an innovative pulsed dynamic water electrolysis system.Compared to constant voltage electrolysis(hydrogen production rate:51.6 m L h^(-1),energy consumption:5.37 kWh Nm-^(3)H_(2)),this strategy(hydrogen production rate:66 m L h^(-1),energy consumption:3.83 kWh Nm-^(3)H_(2))increases the hydrogen production rate by approximately 27%and reduces the energy consumption by about 28%.Furthermore,we demonstrate the practicality of this system by integrating it with an off-grid photovoltaic(PV)system designed for outdoor operation,successfully driving a hydrogen production current of up to 500 mA under an average voltage of approximately 2 V.The combined results of in-situ characterization and finite element analysis reveal the performance enhancement mechanism:pulsed dynamic electrolysis(PDE)dramatically accelerates the enrichment of protons at the electrode/solution interface and facilitates the release of bubbles on the electrode surface.As such,PDE-enhanced PEMWE represents a synergistic advancement,concurrently enhancing both the hydrogen generation reaction and associated transport processes.This promising technology not only redefines the landscape of electrolysis-based hydrogen production but also holds immense potential for broadening its application across a diverse spectrum of electrocatalytic endeavors. 展开更多
关键词 Water electrolysis Hydrogen production Pulsed dynamic electrolysis Proton exchange membrane water electrolysis Mass transport
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A review of plasma treatment on nano-microstructure of electrochemical water splitting catalysts
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作者 Tianli Hui Tao Zheng +6 位作者 Xiaoluo Cheng tonghui li Rui Zhang Xianghai Meng Haiyan liu Zhichang liu Chunming Xu 《Chinese Journal of Structural Chemistry》 2025年第3期63-78,共16页
Hydrogen is a critical renewable energy source in the energy transition.However,water electrolysis,which is the primary technique for achieving large-scale and low-carbon hydrogen production,still suffers from high pr... Hydrogen is a critical renewable energy source in the energy transition.However,water electrolysis,which is the primary technique for achieving large-scale and low-carbon hydrogen production,still suffers from high production costs and energy consumption.The key is to develop highly efficient electrochemical water splitting catalysts.In recent years,the preparation of electrocatalysts via plasma treatment has gained recognition for its rapid,eco-friendly,and controllable properties,especially in the optimization of nano-microstructure.This review comprehensively summarizes the impact of plasma treatment on the nano-microstructure of water electrolysis catalysts,encompassing dispersion enhancement,morphology modulation,surface functionalization,defect construction,and element doping.These impacts on the nano-microstructure increase the surface area,modify the pore structure,introduce active sites,and regulate the electronic environment,thereby promoting the water splitting performance of electrocatalysts.Finally,the remaining challenges and potential opportunities are discussed for the future development of plasma treatment.This review would be a valuable reference for plasmaassisted electrocatalyst synthesis and mechanism understanding in plasma impact on nano-microstructure. 展开更多
关键词 Plasma treatment ELECTROCATALYST Water splitting Nano-microstructure
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Ultra-wide band electromagnetic wave absorption by decorating the magnetic particles on two-dimensional Ti_(3)C_(2)T_(x) 被引量:1
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作者 tonghui li lin Ma +9 位作者 li Wang Haibo Wang Bo li Mengyao Han Diaofeng li Chunguang Bai Mingdong Dong Longhai Shen Song Ma Feng Qi 《Rare Metals》 2025年第3期1844-1855,共12页
The single-layer Ti_(3)C_(2)T_(x)/MXene has become a special electromagnetic wave absorber near the terahertz band because of its abundant surface groups and excellent conductivity.However,the macro-preparation of sin... The single-layer Ti_(3)C_(2)T_(x)/MXene has become a special electromagnetic wave absorber near the terahertz band because of its abundant surface groups and excellent conductivity.However,the macro-preparation of single-layer Ti_(3)C_(2)T_(x)/MXene shows significantly difficult to influence its application.The two-dimensional Ti_(3)C_(2)T_(x)is easily prepared to have high production,but its weak absorption ability due to high surface conductivity also restricts its application.To realize the strong electromagnetic wave absorption of two-dimensional Ti_(3)C_(2)T_(x)/MXene,a new strategy with magnetic FeNi nanoparticles decorating Ti_(3)C_(2)T_(x)/MXene composites(FeNi-Ti_(3)C_(2)T_(x))were proposed and the effective electromagnetic wave absorption features covering 170-220 GHz that means the absorption band width reach 50 GHz.With an absorber composite film thickness being only 0.6 mm,the absorptivity of the composite is enhanced with the increase of decorating FeNi nanoparticles and promote up to 75%when the FeNi nanoparticles loading content reaches 30 wt%.The improvement of absorption is attributed to the introduction of soft magnetic FeNi to adjust the high surface conductivity of MXene and improve the electromagnetic balance of the absorber. 展开更多
关键词 FeNi nanoparticles Ti_(3)C_(2)T_(x)/MXene Electromagnetic absorption TERAHERTZ
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The near-complete genome assembly of pickling cucumber and its mutation library illuminate cucumber functional genomics and genetic improvement
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作者 Yao Tian Kui li +7 位作者 tonghui li Wudi Gai Jie Zhou Xing Wang Deng Yan Xue Yun Deng Hang He Xingping Zhang 《Molecular Plant》 2025年第4期551-554,共4页
Dear Editor,Cucumber,Cucumis sativus,is a major vegetable crop globally.In addition to being consumed fresh or sliced,pickling cucumber represents a key cultivated type,widely grown in open fields across regions inclu... Dear Editor,Cucumber,Cucumis sativus,is a major vegetable crop globally.In addition to being consumed fresh or sliced,pickling cucumber represents a key cultivated type,widely grown in open fields across regions including the Americas,Europe,and Asia(Shetty and Wehner,2002). 展开更多
关键词 genetic improvement genome assembly functional genomics CUCUMBER mutation library pickling cucumber Cucumis sativus
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胞泌复合体在植物中的功能研究进展 被引量:2
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作者 李彤辉 刘晓楠 +2 位作者 徐静 李师鹏 蒋苏 《植物学报》 CAS CSCD 北大核心 2019年第5期642-651,共10页
囊泡运输是真核生物的一种重要的细胞学活动,广泛参与多种生物学过程。该过程主要包括囊泡形成、转运、拴系及与目的膜融合4个环节。目前已知9种多蛋白亚基拴系复合体参与不同途径的胞内转运过程,其中,胞泌复合体(exocyst complex)介导... 囊泡运输是真核生物的一种重要的细胞学活动,广泛参与多种生物学过程。该过程主要包括囊泡形成、转运、拴系及与目的膜融合4个环节。目前已知9种多蛋白亚基拴系复合体参与不同途径的胞内转运过程,其中,胞泌复合体(exocyst complex)介导了运输囊泡与质膜的拴系过程。对胞泌复合体调控机制的认识主要源于酵母(Saccharomyces cerevisiae)和动物细胞的研究。近年来,植物胞泌复合体的研究也取得了较大进展,初步结果显示复合体在功能方面具有一些植物特异的调控特点,广泛参与植物生长发育和逆境响应。该文主要综述胞泌复合体在植物中的研究进展,旨在为植物胞泌复合体功能研究提供参考。 展开更多
关键词 囊泡运输 多蛋白亚基拴系复合体 胞泌复合体
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AtMAC stabilizes the phragmoplast by crosslinking microtubules and actin filaments during cytokinesis
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作者 Pingzhou Du Yu liu +6 位作者 Lu Deng Dong Qian Xiuhua Xue Ting Yang tonghui li Yun Xiang Haiyun Ren 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2023年第8期1950-1965,共16页
The phragmoplast,a structure crucial for the completion of cytokinesis in plant cells,is composed of antiparallel microtubules(MTs)and actin filaments(AFs).However,how the parallel structure of phragmoplast MTs and AF... The phragmoplast,a structure crucial for the completion of cytokinesis in plant cells,is composed of antiparallel microtubules(MTs)and actin filaments(AFs).However,how the parallel structure of phragmoplast MTs and AFs is maintained,especially during centrifugal phragmoplast expansion,remains elusive.Here,we analyzed a new Arabidopsis thaliana MT and AF crosslinking protein(AtMAC).When AtMAC was deleted,the phragmoplast showed disintegrity during centrifugal expansion,and the resulting phragmoplast fragmentation led to incomplete cell plates.Overexpression of AtMAC increased the resistance of phragmoplasts to depolymerization and caused the formation of additional phragmoplasts during cytokinesis.Biochemical experiments showed that AtMAC crosslinked MTs and AFs in vitro,and the truncated AtMAC protein,N-CC1,was the key domain controlling the ability of AtMAC.Further analysis showed that N-CC1(51–154)is the key domain for binding MTs,and N-CC1(51–125)for binding AFs.In conclusion,AtMAC is the novel MT and AF crosslinking protein found to be involved in regulation of phragmoplast organization during centrifugal phragmoplast expansion,which is required for complete cytokinesis. 展开更多
关键词 actin filaments AtMAC CYTOKINESIS PHRAGMOPLAST MICROTUBULES
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Compact Si-SiN photonic fiber optic gyroscope transceiver for large volume manufacturing
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作者 ZHIZHOU LU HONGMIN FU +17 位作者 DAOXIN SUN HUACHENG liU HONGCHEN JIAO SHIJIA FAN SHAN GAO tonghui li liNGYU WANG li JIN HENG ZHAO WENXUAN liU JIAN liU HAIPENG YU ZHUOHENG REN NAIDI CUI WENYUAN XU liSHUANG FENG JIN GUO JUNBO FENG 《Photonics Research》 CSCD 2024年第12期2912-2918,共7页
Miniaturized interferometric fiber optic gyroscopes(IFOGs)providing high-precision angular measurement are highly desired in various smart applications.In this work,we present a high-performance Si-SiN photonic FOG tr... Miniaturized interferometric fiber optic gyroscopes(IFOGs)providing high-precision angular measurement are highly desired in various smart applications.In this work,we present a high-performance Si-SiN photonic FOG transceiver composed of an optical source,polarizer,splitter,and on-chip germanium(Ge)photodetector(PD).The transceiver is assembled in a standard butterfly package with a thermo-electric cooler(TEC).The optical loss(including two edge couplers,as well as one 3 dB splitter)and polarization extinction ratio(PER)are less than 7 dB and greater than 20 dB at room temperature,respectively.Built with the polarization maintaining(PM)fiber coil with 70 mm average diameter and 580 m length,the transceiver-based IFOG exhibits record-low bias stability of 0.022 deg/h at an integration time of 10 s,the angular random walk(ARW)of 0.0012 deg∕√h p,and the bias instability of 0.003 deg/h,to the best of our knowledge.The preliminary reliability test agrees well with the practical requirements.Our work verifies that the on-chip Ge PD is eligible for high-performance FOG applications.Leveraged with the typical CMOS compatible 8-inch(200 mm diameter wafers)silicon photonics platform and decreased fiber splicing points,the presented transceiver provides a promising solution toward a low-loss and miniaturized FOG system with large volume manufacturing capability. 展开更多
关键词 fiber TRANSCEIVER POLARIZATION
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