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调控双钙钛矿中高熵组分促进高温析氧反应
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作者 冯炜程 于景成 +8 位作者 杨溢澜 郭宜阁 邹庚 刘晓菊 陈洲 董坤 宋月锋 汪国雄 包信和 《物理化学学报》 SCIE CAS CSCD 北大核心 2024年第6期41-43,共3页
固体氧化物电解池(SOEC)中阳极析氧反应动力学较为迟缓,限制了SOEC器件电催化转化能力,因此针对阳极材料的改性研究对于进一步提升SOEC电化学性能十分关键。高熵钙钛矿(HEP)在许多反应中表现出良好的催化活性,但在SOEC中的应用鲜有研究... 固体氧化物电解池(SOEC)中阳极析氧反应动力学较为迟缓,限制了SOEC器件电催化转化能力,因此针对阳极材料的改性研究对于进一步提升SOEC电化学性能十分关键。高熵钙钛矿(HEP)在许多反应中表现出良好的催化活性,但在SOEC中的应用鲜有研究。本文通过在双钙钛矿的A位或A'位分别掺杂不同的稀土金属、碱土金属或碱金属离子,合成了(Pr_(0.2)La_(0.2)Sm_(0.2)Nd_(0.2)Gd_(0.2))BaCo_(2)O_(6-δ)(A-HEP)和Pr(Ba_(0.2)Sr_(0.2)Ca_(0.2)Na_(0.2)K_(0.2))Co_(2)O_(6-δ)(A'-HEP)两种高熵钙钛矿材料。由于掺杂离子平均半径和氧化态的差异,A-HEP保持四方双钙钛矿相结构而A'-HEP则转变为正交单钙钛矿相。物理化学表征结果表明,A-HEP中Co平均价态更高,Co 2p-O 1s杂化更强,从而增加了电子转移路径并降低了转移能垒。同时,A-HEP中表面氧空位浓度更高,可为阳极析氧反应提供更多的活性位点。因此,在具有A-HEP阳极的SOEC中,与氧输运、电子传输和表界面反应过程相关的阳极极化电阻显著降低,并在800℃下实现最高1.76 A·cm^(-2)的电流密度和200 h的稳定性。本工作为高熵钙钛矿材料在SOEC阳极中的应用提供了新的策略。 展开更多
关键词 固体氧化物电解池 高熵钙钛矿 析氧反应 氧空位 电子转移
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Meningeal lymphatic vessel crosstalk with central nervous system immune cells in aging and neurodegenerative diseases
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作者 Minghuang Gao Xinyue Wang +5 位作者 Shijie Su weicheng feng Yaona Lai Kongli Huang Dandan Cao Qi Wang 《Neural Regeneration Research》 SCIE CAS 2025年第3期763-778,共16页
Meningeal lymphatic vessels form a relationship between the nervous system and periphery, which is relevant in both health and disease. Meningeal lymphatic vessels not only play a key role in the drainage of brain met... Meningeal lymphatic vessels form a relationship between the nervous system and periphery, which is relevant in both health and disease. Meningeal lymphatic vessels not only play a key role in the drainage of brain metabolites but also contribute to antigen delivery and immune cell activation. The advent of novel genomic technologies has enabled rapid progress in the characterization of myeloid and lymphoid cells and their interactions with meningeal lymphatic vessels within the central nervous system. In this review, we provide an overview of the multifaceted roles of meningeal lymphatic vessels within the context of the central nervous system immune network, highlighting recent discoveries on the immunological niche provided by meningeal lymphatic vessels. Furthermore, we delve into the mechanisms of crosstalk between meningeal lymphatic vessels and immune cells in the central nervous system under both homeostatic conditions and neurodegenerative diseases, discussing how these interactions shape the pathological outcomes. Regulation of meningeal lymphatic vessel function and structure can influence lymphatic drainage, cerebrospinal fluid-borne immune modulators, and immune cell populations in aging and neurodegenerative disorders, thereby playing a key role in shaping meningeal and brain parenchyma immunity. 展开更多
关键词 central nervous system meningeal lymphatic vessels IMMUNITY myeloid cells lymphatic cells neurodegenerative disease
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Improving the performance of solid oxide electrolysis cell with gold nanoparticles-modified LSM-YSZ anode 被引量:5
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作者 Yuefeng Song Xiaomin Zhang +5 位作者 Yingjie Zhou Houfu Lv Qingxue Liu weicheng feng Guoxiong Wang Xinhe Bao 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2019年第8期181-187,I0007,共8页
Gold, as the common current collector in solid oxide electrolysis cell(SOEC), is traditionally considered to be inert for oxygen evolution reaction at the anode of SOEC. Herein, gold nanoparticles were loaded onto con... Gold, as the common current collector in solid oxide electrolysis cell(SOEC), is traditionally considered to be inert for oxygen evolution reaction at the anode of SOEC. Herein, gold nanoparticles were loaded onto conventional strontium doped lanthanum manganite-yttria stabilized zirconia(LSM-YSZ) anode, which evidently improved the performance of oxygen evolution reaction at 800 °C. The current densities at 1.2 V and 1.4 V increased by 60.0% and 46.9%, respectively, after loading gold nanoparticles onto the LSM-YSZ anode. Physicochemical characterizations and electrochemical measurements suggested that the improved SOEC performance was attributed to the accelerated electron transfer of elementary process in anodic polarization reaction and the newly generated triple phase boundaries in gold nanoparticles-loaded LSMYSZ anode. 展开更多
关键词 Solid oxide ELECTROLYSIS cell Oxygen evolution reaction Gold nanoparticles CO2 ELECTROLYSIS STRONTIUM doped LANTHANUM manganite-yttria stabilized zirconia
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Orthorhombic Y_(0.95-x)Sr_(x)Co_(0.3)Fe_(0.7)O_(3-δ) anode for oxygen evolution reaction in solid oxide electrolysis cells 被引量:2
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作者 weicheng feng Yuefeng Song +5 位作者 Tianfu Liu Jingwei Li Xiaomin Zhang Junhu Wang Guoxiong Wang Xinhe Bao 《Fundamental Research》 CAS 2021年第4期439-447,共9页
Cubic perovskite oxides usually suffer from delamination and Sr^(2+) segregation for catalyzing oxygen evolution reaction (OER) at the anodes of solid oxide electrolysis cells (SOECs). It is crucial to develop alterna... Cubic perovskite oxides usually suffer from delamination and Sr^(2+) segregation for catalyzing oxygen evolution reaction (OER) at the anodes of solid oxide electrolysis cells (SOECs). It is crucial to develop alternative and efficient anode materials for SOECs. Herein, a series of novel Y_(0.95-x)Sr_(x)Co_(0.3)Fe_(0.7)O_(3-δ) (YSCF-x) orthorhombic perovskite oxides in the Pnma (62) space group are synthesized as anode materials of SOECs. Physicochemical characterizations and density functional theory calculations reveal that the partial substitution of Y^(3+) by Sr^(2+) increases the oxygen vacancy concentration and mobility as well as improves the electrical conductivity, which contributes to the excellent OER activity of YSCF-x. At 800 °C, the current density of SOEC with YSCF-0.05-Ce0.8Sm0.2O2-δ anode can reach 1.32 A cm^(−2) at 1.6 V, about twice that of SOEC with Y_(0.95-x)Sr_(x)Co_(0.3)Fe_(0.7)O_(3-δ)-Ce_(0.8)Sm_(0.2)O_(2-δ) anode. This work paves a new avenue for the design of advanced anode materials of SOECs. 展开更多
关键词 Orthorhombic perovskite Oxygen vacancy Oxygen evolution reaction Solid oxide electrolysis cells CO_(2)electrolysis
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In-situ exsolution of cobalt nanoparticles from La_(0.5)Sr_(0.5)Fe_(0.8)Co_(0.2)O_(3-δ) cathode for enhanced CO_(2) electrolysis performance 被引量:1
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作者 Jingwei Li Qingxue Liu +6 位作者 Yuefeng Song Houfu Lv weicheng feng Yuxiang Shen Chengzhi Guan Xiaomin Zhang Guoxiong Wang 《Green Chemical Engineering》 2022年第3期250-258,共9页
Solid oxide electrolysis cell(SOEC)is a promising technology for CO_(2) conversion and renewable energy storage with high efficiency.It is highly desirable to develop catalytically active cathodes for CO_(2) electroly... Solid oxide electrolysis cell(SOEC)is a promising technology for CO_(2) conversion and renewable energy storage with high efficiency.It is highly desirable to develop catalytically active cathodes for CO_(2) electrolysis.Herein,cathode materials with different structural stabilities are designed by Nb substitution on La_(0.5)Sr_(0.5)Fe_(0.8)Co_(0.2)O_(3-δ)(LSFC82)to obtain La_(0.5)Sr_(0.5)Fe_(0.7)Co_(0.2)Nb_(0.1)O_(3-δ)(LSFCN721)and La_(0.5)Sr_(0.5)Fe_(0.8)Co_(0.1)Nb_(0.1)O_(3-δ)(LSFCN811),respectively.LSFC82-Sm_(0.2)Ce_(0.8)O_(2-δ)(SDC)cathode with inferior structural stability(ability to maintain the structure)shows desirable CO_(2) electrolysis performance with the generated current density of 1.80 A cm^(-2)2 at 1.6 V and stable performance during 110 h operation at 1.2 V and 800℃.However,LSFC82 particles are collapsed into pieces after stability test with the generation of Co nanoparticles simultaneously.The frameworks of LSFCN721 and LSFCN811 particles maintain well because of the high-valent niobium,but Co exsolution,ox-ygen vacancy content and the corresponding CO_(2) electrolysis performance are restricted.This work confirms that Co nanoparticles can be exsolved from LSFC82-SDC cathode during CO_(2) electrolysis,providing references for constructing metallic nanoparticles decorated-perovskite cathodes for SOECs. 展开更多
关键词 Solid oxide electrolysis cell CO_(2)electrolysis PEROVSKITE Cobalt nanoparticles EXSOLUTION
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