期刊文献+
共找到646篇文章
< 1 2 33 >
每页显示 20 50 100
石蒜叶片微弱电波动信号的测定 被引量:18
1
作者 王兰州 曹文侠 +1 位作者 令利军 程昉 《西北师范大学学报(自然科学版)》 CAS 2000年第2期62-66,共5页
采用金属电极测定了石蒜叶片的微弱电波信号 .石蒜植物叶片微弱低频电波信号的变化区间是 4~ 30 μV ,其低频信号随叶片基部向先端延伸而减弱 ,这种微弱信号随着植物叶片在空间的分布可构成叶片等电势线 .石蒜叶片微弱电波动信号具有... 采用金属电极测定了石蒜叶片的微弱电波信号 .石蒜植物叶片微弱低频电波信号的变化区间是 4~ 30 μV ,其低频信号随叶片基部向先端延伸而减弱 ,这种微弱信号随着植物叶片在空间的分布可构成叶片等电势线 .石蒜叶片微弱电波动信号具有从基部向上的生理向性 . 展开更多
关键词 石蒜 生理向性 叶片 微弱电波动信号 测定
下载PDF
金属氧化物电化学电容器 被引量:14
2
作者 唐致远 耿新 +1 位作者 王占良 徐国祥 《化学通报》 CAS CSCD 北大核心 2003年第1期33-38,共6页
电化学电容器是一类利用电化学双电层或电极材料在电极表面及体相发生的氧化还原反应而存储能量的装置 ,具有高比能量、良好的可逆性和长循环寿命。金属氧化物电极材料目前主要有贵金属氧化物和过渡金属氧化物。本文简要介绍了金属氧化... 电化学电容器是一类利用电化学双电层或电极材料在电极表面及体相发生的氧化还原反应而存储能量的装置 ,具有高比能量、良好的可逆性和长循环寿命。金属氧化物电极材料目前主要有贵金属氧化物和过渡金属氧化物。本文简要介绍了金属氧化物电化学电容器的储能机理、特点及应用 ,总结了电极材料的制备及改性方法 ; 展开更多
关键词 电化学电容器 金属氧化物 电极材料 能量存贮机理
原文传递
焊条药皮中稀土氧化物向焊缝中过渡机制的研究 被引量:15
3
作者 薛海涛 李建国 +1 位作者 李俊岳 王宝森 《中国稀土学报》 CAS CSCD 北大核心 2003年第5期580-583,共4页
通过向焊条药皮中加入稀土氧化物的方法,研究了在焊条药皮中加入不同种类、不同含量的稀土氧化物对焊缝金属低温冲击韧性、显微组织以及扩散氢含量的影响。实验表明,在焊条药皮中添加适量的稀土氧化物可以细化焊缝组织、增加针状铁素体... 通过向焊条药皮中加入稀土氧化物的方法,研究了在焊条药皮中加入不同种类、不同含量的稀土氧化物对焊缝金属低温冲击韧性、显微组织以及扩散氢含量的影响。实验表明,在焊条药皮中添加适量的稀土氧化物可以细化焊缝组织、增加针状铁素体的含量、提高焊缝金属的低温冲击韧性和降低焊缝中扩散氢含量,这是一种经济有效的向熔池中过渡稀土元素的方法,可以在焊接材料中发挥稀土元素的特殊作用。从焊接冶金的角度出发,深入研究了焊条药皮中稀土氧化物向熔池中过渡稀土元素的机理、规律及其影响因素。研究表明,焊条药皮中的稀土氧化物在熔滴的高温阶段可以分解出稀土活性原子并过渡到熔池中,参与焊接冶金反应,对焊接熔池起到进一步脱硫去氧的作用。 展开更多
关键词 金属氧化物 稀土氧化物 焊条药皮 低温冲击韧性 焊接冶金
下载PDF
金属氧化物超级电容器的研究进展 被引量:7
4
作者 杨惠 石兆辉 +1 位作者 陈野 张密林 《电池》 CAS CSCD 北大核心 2005年第6期477-479,共3页
与蓄电池相比,超级电容器具有较高的比功率;与传统电容器相比,超级电容器具有较大的容量和较高的能量,且工作温度范围宽、循环寿命长。金属氧化物超级电容器的储能以法拉第准电容为主,其电极材料分为三类:贵金属氧化物、贱金属氧化物和... 与蓄电池相比,超级电容器具有较高的比功率;与传统电容器相比,超级电容器具有较大的容量和较高的能量,且工作温度范围宽、循环寿命长。金属氧化物超级电容器的储能以法拉第准电容为主,其电极材料分为三类:贵金属氧化物、贱金属氧化物和复合型金属氧化物。综述了金属氧化物超级电容器的储能机理、制备及最新研究进展;介绍了电容器中电解液、隔膜材料和集流体的相关性能。 展开更多
关键词 超级电容器 金属氧化物 电极材料
下载PDF
电化学超级电容器电极材料研究进展 被引量:11
5
作者 刘云鹏 李乐 +2 位作者 韩颖慧 吴天昊 李昕烨 《华北电力大学学报(自然科学版)》 CAS 北大核心 2016年第6期80-90,共11页
超级电容器是一种功率密度大、循环寿命长的新型储能装置,在微电网和新能源汽车中起重要作用。然而其能量密度低、成本高等缺点限制了其大规模应用。从超级电容器基本原理入手,综述了双电层材料、赝电容材料和复合材料的研究现状,对目... 超级电容器是一种功率密度大、循环寿命长的新型储能装置,在微电网和新能源汽车中起重要作用。然而其能量密度低、成本高等缺点限制了其大规模应用。从超级电容器基本原理入手,综述了双电层材料、赝电容材料和复合材料的研究现状,对目前存在的主要问题进行了总结和对未来的发展进行了展望。 展开更多
关键词 超级电容器 电极材料 金属氧化物 导电聚合物 复合电极
下载PDF
电化学催化降解有机废水的研究进展 被引量:9
6
作者 赵晓梅 谢正伟 +1 位作者 何平 戴可 《武汉理工大学学报》 CAS CSCD 北大核心 2013年第5期127-133,共7页
有机废水毒性高、对环境和人体的危害较大,如何对它进行处理受到越来越多的关注。相对于传统处理方法,电化学法具有效率高、催化性好、反应易于控制等优点,被广泛地应用在有机废水处理方面。主要从电化学氧化、电化学还原、电解等几个... 有机废水毒性高、对环境和人体的危害较大,如何对它进行处理受到越来越多的关注。相对于传统处理方法,电化学法具有效率高、催化性好、反应易于控制等优点,被广泛地应用在有机废水处理方面。主要从电化学氧化、电化学还原、电解等几个方面介绍了电化学法对有机废水的催化降解现状,总结了不同电极材料对有机废水电化学催化降解性能的影响。寻找性价比高、寿命长的电极材料将是电化学法处理有机废水的主要方向,同时,电化学法与其他方法联用也将成为今后有机废水处理的主要方法。 展开更多
关键词 有机废水 电催化 金属电极 碳素电极 涂层电极
原文传递
雷电流作用下金属损伤试验的影响因素 被引量:10
7
作者 刘亚坤 戴明秋 +3 位作者 肖瑶 刘全桢 刘宝全 傅正财 《高电压技术》 EI CAS CSCD 北大核心 2017年第5期1445-1452,共8页
当前国内外缺乏雷电流金属损伤试验影响因素的研究,因而采用试验与理论相结合的方法研究了雷电流金属损伤试验中电极形状、铜丝引线、试验距离对试验结果的影响。研究结果表明:模拟首次短时间回击电流分量、回击间长持续时间雷电流分量... 当前国内外缺乏雷电流金属损伤试验影响因素的研究,因而采用试验与理论相结合的方法研究了雷电流金属损伤试验中电极形状、铜丝引线、试验距离对试验结果的影响。研究结果表明:模拟首次短时间回击电流分量、回击间长持续时间雷电流分量和末次回击后的长持续时间雷电流分量下的金属损伤试验中,增大引燃铜丝直径可加大金属损伤深度;增加试验距离会增大模拟雷电流流注发展区域半径,减小电弧单位面积能量,从而使试品损伤面积增大,损伤深度减小;使用尖电极、半椭球电极和半球电极产生的流注初始区域半径和发展区域半径依次减小,使用尖电极造成的试品损伤深度和损伤面积最大,其次为半椭球电极和半球电极;相同电极形状下,减小试验电极直径,试品损伤深度增加,损伤面积减小。 展开更多
关键词 雷电流 金属材料 试验电极 试验距离 损伤深度 损伤面积
下载PDF
Mesoporous Graphene Hosts for Dendrite-Free Lithium Metal Anode in Working Rechargeable Batteries 被引量:10
8
作者 He Liu Xinbing Cheng +6 位作者 Rui Zhang Peng Shi Xin Shen Xiaoru Chen Tao Li Jiaqi Huang Qiang Zhang 《Transactions of Tianjin University》 EI CAS 2020年第2期127-134,共8页
Lithium(Li) metal anode has received extensive attentions due to its ultrahigh theoretical capacity and the most negative electrode potential. However, dendrite growth severely impedes the practical applications of th... Lithium(Li) metal anode has received extensive attentions due to its ultrahigh theoretical capacity and the most negative electrode potential. However, dendrite growth severely impedes the practical applications of the Li metal anode in rechargeable batteries. In this contribution, a mesoporous graphene with a high specific surface area was synthesized to host the Li metal anode. The mesoporous graphene host(MGH) has a high specific surface area(2090 m^2/g), which affords free space and an interconnected conductive pathway for Li plating and stripping, thus alleviating the volume variation and reducing the generation of dead Li during repeated cycles. More importantly, the high specific surface area of MGH efficiently reduces the local current density of the electrode, which favors a uniform Li nucleation and plating behavior, rendering a dendritefree deposition morphology at a low overpotential. These factors synergistically boost the Li utilization(90.1% vs. 70.1% for Cu foil) and life span(150 cycles vs. 100 cycles for Cu foil) with a low polarization of MGH electrode at an ultrahigh current of 15.0 mA/cm^2. The as-prepared MGH can provide fresh insights into the electrode design of the Li metal anode operating at high rates. 展开更多
关键词 LITHIUM metal anode MESOPOROUS GRAPHENE HOSTS Dendrite-free plating behavior Working RECHARGEABLE batteries Composite electrode
下载PDF
超级电容器电极材料的研究进展 被引量:9
9
作者 秦红梅 岳鲁超 米杰 《太原科技大学学报》 2018年第6期435-442,共8页
超级电容器作为一种新型的电化学储能元件,以充放电效率高、循环寿命长等优点引起研究者的大量关注,而电极材料是决定超级电容器性能的一个关键性因素。常见的电极材料主要有:碳材料、金属化合物材料和导电聚合物材料三大类。当它们单... 超级电容器作为一种新型的电化学储能元件,以充放电效率高、循环寿命长等优点引起研究者的大量关注,而电极材料是决定超级电容器性能的一个关键性因素。常见的电极材料主要有:碳材料、金属化合物材料和导电聚合物材料三大类。当它们单独作为超级电容器电极材料时,碳材料展现高功率密度和优异的循环稳定性,但其比电容较低;而金属化合物和导电聚合物材料具有高比电容,但由于它们导电性差,致使其循环稳定性和倍率性能较差。因此,超级电容器电极材料的研究关注点是碳材料与其他材料组成复合材料,以制备出兼具高比电容、良好循环稳定性和倍率性能的超级电容器电极材料。 展开更多
关键词 超级电容器 碳材料 金属化合物 导电聚合物 复合电极
下载PDF
透明电极用银纳米线尺寸与光电性能相关性综述 被引量:9
10
作者 张楷力 堵永国 王震 《贵金属》 CAS CSCD 北大核心 2016年第1期68-75,共8页
介绍了银纳米线透明电极光电性能的相关理论。根据国外研究团队建立的相应模型,结合目前透明电极主流应用对银纳米线的性能要求,阐释了银纳米线的尺寸与透明电极的光电性能之间的联系,给出了评判电极光电综合性能的重要参数和满足透明... 介绍了银纳米线透明电极光电性能的相关理论。根据国外研究团队建立的相应模型,结合目前透明电极主流应用对银纳米线的性能要求,阐释了银纳米线的尺寸与透明电极的光电性能之间的联系,给出了评判电极光电综合性能的重要参数和满足透明电极应用的银纳米线尺寸具体要求,为银纳米线的合成提供了理论参考。 展开更多
关键词 金属纳米材料 银纳米线 透明电极 尺寸 光电性能 理论
下载PDF
直流GIL电极覆膜对微粒抑制的极性效应 被引量:9
11
作者 倪潇茹 王靖瑞 +2 位作者 王健 王志远 李庆民 《高电压技术》 EI CAS CSCD 北大核心 2018年第8期2695-2703,共9页
自由金属微粒的存在是制约直流气体绝缘金属封闭输电线路(GIL)稳定运行的重要因素之一,电极覆膜可以有效降低微粒活性、提高系统绝缘程度。论文主要研究了不同极性直流应力下电极覆膜对金属微粒带电量及运动活性的影响,搭建了金属微... 自由金属微粒的存在是制约直流气体绝缘金属封闭输电线路(GIL)稳定运行的重要因素之一,电极覆膜可以有效降低微粒活性、提高系统绝缘程度。论文主要研究了不同极性直流应力下电极覆膜对金属微粒带电量及运动活性的影响,搭建了金属微粒电荷测量及运动观测平台,并提出了金属微粒的"活跃指数"M,分析了不同覆膜情况下微粒的活跃程度。实验结果表明:电极覆膜时微粒带电存在时滞特性,且负极性下的时滞时间比正极性下高16%;下极板覆膜后,微粒静止时通过传导和微放电带电,而微粒运动过程中与介质膜碰撞时通过微放电带电;电极覆膜后微粒的启举电压可以提高10%左右,且微粒运动的"活跃指数"M将降低69%~94%。据此得出,正电压下应采取地电极覆膜措施,而负电压下应采取双电极覆膜措施。 展开更多
关键词 直流GIL 金属微粒 电极覆膜 传导带电 微放电 极性效应
下载PDF
气溶胶喷墨打印工艺参数对图案精度的影响 被引量:9
12
作者 张鑫明 郭拉凤 +3 位作者 张远明 赵熹 朱雪岩 吕东喜 《微纳电子技术》 北大核心 2018年第9期688-693,共6页
以商业纳米银颗粒墨水为打印材料,以钠钙玻璃为衬底材料,采用气溶胶喷墨打印工艺在衬底上打印形成银线。在搭建的气溶胶喷墨打印平台上,通过改变工艺参数探究不同工艺参数对银线线宽的影响规律。通过激光共聚焦显微镜对打印图案进行测... 以商业纳米银颗粒墨水为打印材料,以钠钙玻璃为衬底材料,采用气溶胶喷墨打印工艺在衬底上打印形成银线。在搭建的气溶胶喷墨打印平台上,通过改变工艺参数探究不同工艺参数对银线线宽的影响规律。通过激光共聚焦显微镜对打印图案进行测量与观察发现:增大环绕气体流量、减小输送气体流量可以降低银线线宽;增大气体流量比可以在减小打印线宽的同时减小铺展现象,但会出现卫星液滴问题与沉积空洞现象;提高打印速度也可以有效抑制铺展现象;最后在钙钠玻璃衬底形成了平均电阻率为24.93μΩ·cm的导电金属电极图案。 展开更多
关键词 气溶胶喷墨打印 超声波雾化器 纳米银颗粒 银线线宽 金属电极
下载PDF
Recent Advances on MOF Derivatives for Non-Noble Metal Oxygen Electrocatalysts in Zinc-Air Batteries 被引量:8
13
作者 Yuting Zhu Kaihang Yue +5 位作者 Chenfeng Xia Shahid Zaman Huan Yang Xianying Wang Ya Yan Bao Yu Xia 《Nano-Micro Letters》 SCIE EI CAS CSCD 2021年第9期164-192,共29页
Oxygen electrocatalysts are of great importance for the air electrode in zinc-air batteries(ZABs).Owing to the high specific surface area,controllable pore size and unsaturated metal active sites,metal-organic framewo... Oxygen electrocatalysts are of great importance for the air electrode in zinc-air batteries(ZABs).Owing to the high specific surface area,controllable pore size and unsaturated metal active sites,metal-organic frameworks(MOFs)derivatives have been widely studied as oxygen electrocatalysts in ZABs.To date,many strategies have been developed to generate efficient oxygen electrocatalysts from MOFs for improving the performance of ZABs.In this review,the latest progress of the MOF-derived non-noble metal-oxygen electrocatalysts in ZABs is reviewed.The performance of these MOF-derived catalysts toward oxygen reduction,and oxygen evolution reactions is discussed based on the categories of metal-free carbon materials,single-atom catalysts,metal cluster/carbon composites and metal compound/carbon composites.Moreover,we provide a comprehensive overview on the design strategies of various MOF-derived non-noble metal-oxygen electrocatalysts and their structure-performance relationship.Finally,the challenges and perspectives are provided for further advancing the MOF-derived oxygen electrocatalysts in ZABs. 展开更多
关键词 metal-organic framework Non-noble metal Oxygen electrocatalysts Air electrode Zinc-air batteries
下载PDF
Applications of transition-metal sulfides in the cathodes of lithium-sulfur batteries 被引量:8
14
作者 Jing‑Han Zuo Yong‑Ji Gong 《Tungsten》 2020年第2期134-146,共13页
Lithium-sulfur(Li-S)batteries are considered as one of the most promising candidates for next-generation energy storage systems with high energy density and reliable performance.However,the commercial applications of ... Lithium-sulfur(Li-S)batteries are considered as one of the most promising candidates for next-generation energy storage systems with high energy density and reliable performance.However,the commercial applications of lithium-sulfur batteries is hindered by several shortcomings like the poor conductivity of sulfur and its reaction products,and the loss of active materials owing to the diffusion of lithium polysulfides(LiPSs)into the electrolyte.Hence,the effective restraining of the LiPSs and the promotion of the sluggish conversion are highly demanded to fulfill the potential of lithium-sulfur batteries.Here,we summarize the applications of transition-metal sulfides(TMSs)in the cathodes over recent years and demonstrate the unique advantages they possess to realize reliable long-life lithium-sulfur batteries. 展开更多
关键词 Lithium–sulfur battery Transition metal sulfides Polysulfide adsorption electrode conductivity ELECTROCATALYSIS
原文传递
MOF‑Derived CoSe2@N‑Doped Carbon Matrix Confined in Hollow Mesoporous Carbon Nanospheres as High‑Performance Anodes for Potassium‑Ion Batteries 被引量:8
15
作者 Su Hyun Yang Seung‑Keun Park Yun Chan Kang 《Nano-Micro Letters》 SCIE EI CAS CSCD 2021年第1期123-137,共15页
In this work,a novel vacuum-assisted strategy is proposed to homogenously form Metal-organic frameworks within hollow mesoporous carbon nanospheres(HMCSs)via a solid-state reaction.The method is applied to synthesize ... In this work,a novel vacuum-assisted strategy is proposed to homogenously form Metal-organic frameworks within hollow mesoporous carbon nanospheres(HMCSs)via a solid-state reaction.The method is applied to synthesize an ultrafine CoSe2 nanocrystal@N-doped carbon matrix confined within HMCSs(denoted as CoSe2@NC/HMCS)for use as advanced anodes in highperformance potassium-ion batteries(KIBs).The approach involves a solvent-free thermal treatment to form a Co-based zeolitic imidazolate framework(ZIF-67)within the HMCS templates under vacuum conditions and the subsequent selenization.Thermal treatment under vacuum facilitates the infiltration of the cobalt precursor and organic linker into the HMCS and simultaneously transforms them into stable ZIF-67 particles without any solvents.During the subsequent selenization process,the“dual confinement system”,composed of both the N-doped carbon matrix derived from the organic linker and the small-sized pores of HMCS,can effectively suppress the overgrowth of CoSe2 nanocrystals.Thus,the resulting uniquely structured composite exhibits a stable cycling performance(442 mAh g^−1 at 0.1 A g^−1 after 120 cycles)and excellent rate capability(263 mAh g^−1 at 2.0 A g^−1)as the anode material for KIBs. 展开更多
关键词 metal-organic frameworks Hollow mesoporous carbon nanospheres Potassium-ion batteries Cobalt selenides electrode materials
下载PDF
Recent advancements in metal organic framework based electrodes for supercapacitors 被引量:8
16
作者 赵昱颉 刘金章 +3 位作者 Michael Horn Nunzio Motta 胡明俊 李岩 《Science China Materials》 SCIE EI CSCD 2018年第2期159-184,共26页
Metal organic frameworks(MOFs) are considered as very promising candidates to build electrodes for electrochemical energy storage devices such as lithium ion batteries, fuel cells and supercapacitors, due to their d... Metal organic frameworks(MOFs) are considered as very promising candidates to build electrodes for electrochemical energy storage devices such as lithium ion batteries, fuel cells and supercapacitors, due to their diverse structure, adjustable aperture, large specific surface area and abundant active sites. Supercapacitor has been widely investigated in the past decades. Of critical importance in these devices is the electrode active materials, and this application has been intensively studied with the development of novel nanomaterials. In this review we summarize recent reports on MO Fs as electrode materials for super capacitors. Specifically,the synthesis of MOF materials for super capacitor electrodes and their performance in electrochemical energy storage are discussed. We aim to include supercapacitor electrode materials related to MOFs, such as carbon, metal and composite materials. It is proposed that MOFs play an important role in the development of a new generation of supercapacitor electrode materials. Finally, we discuss the current challenges in the field of supercapacitors, with a view towards how to address these challenges with the future development of MOFs and their derivatives. 展开更多
关键词 metal organic frameworks (MOFs) ELECTROCHEMISTRY SUPERCAPACITORS electrode DERIVATIVE
原文传递
GIL中金属微粒治理方法研究进展 被引量:7
17
作者 律方成 赵正杨 +1 位作者 詹振宇 马康 《广东电力》 2020年第10期94-109,共16页
气体绝缘金属封闭输电线路(gas insulated transmission line,GIL)的金属微粒污染的治理一直是提高GIL绝缘强度的关键技术难题。针对GIL中的金属微粒污染问题,首先介绍金属微粒的产生以及其运动特性;其次对GIL中金属微粒污染问题机理的... 气体绝缘金属封闭输电线路(gas insulated transmission line,GIL)的金属微粒污染的治理一直是提高GIL绝缘强度的关键技术难题。针对GIL中的金属微粒污染问题,首先介绍金属微粒的产生以及其运动特性;其次对GIL中金属微粒污染问题机理的相关研究进行总结;然后介绍当前常用的金属微粒污染治理方法(微粒陷阱、电极覆膜以及预埋电极),对其工作原理、研究应用现状等进行综述,总结每种方法的优缺点,并对其性能进行评价;最后对每种治理方法的研究方向进行展望,并提出多种治理方法的结合可以弥补彼此的不足,更好地发挥彼此的特点并达到更好的微粒抑制效果。 展开更多
关键词 气体绝缘金属封闭输电线路 金属微粒 微粒陷阱 电极覆膜 预埋电极
下载PDF
Efficient Carbon-Based CsPbBr_3 Inorganic Perovskite Solar Cells by Using Cu-Phthalocyanine as Hole Transport Material 被引量:6
18
作者 Zhiyong Liu Bo Sun +5 位作者 Xingyue Liu Jinghui Han Haibo Ye Tielin Shi Zirong Tang Guanglan Liao 《Nano-Micro Letters》 SCIE EI CAS 2018年第2期185-197,共13页
Metal halide perovskite solar cells(PSCs) have attracted extensive research interest for next-generation solution-processed photovoltaic devices because of their high solar-to-electric power conversion efficiency(PCE)... Metal halide perovskite solar cells(PSCs) have attracted extensive research interest for next-generation solution-processed photovoltaic devices because of their high solar-to-electric power conversion efficiency(PCE)and low fabrication cost. Although the world's best PSC successfully achieves a considerable PCE of over 20% within a very limited timeframe after intensive efforts, the stability, high cost, and up-scaling of PSCs still remain issues. Recently, inorganic perovskite material, CsPbBr_3, is emerging as a promising photo-sensitizer with excellent durability and thermal stability, but the efficiency is still embarrassing. In this work, we intend to address these issues by exploiting CsPbBr_3 as light absorber, accompanied by using Cu-phthalocyanine(CuPc) as hole transport material(HTM) and carbon as counter electrode. The optimal device acquires a decent PCE of 6.21%, over 60% higher than those of the HTM-free devices. The systematic characterization and analysis reveal a more effective charge transfer process and a suppressed charge recombination in PSCs after introducing CuPc as hole transfer layer. More importantly, our devices exhibit an outstanding durability and a promising thermal stability, making it rather meaningful in future fabrication and application of PSCs. 展开更多
关键词 Perovskite solar cells(PSCs) metal halide CsPbBr3 Cu-phthalocyanine(CuPc) Carbon electrode
下载PDF
Recent advances in transition metal phosphide materials:Synthesis and applications in supercapacitors 被引量:1
19
作者 Ge Li Yu Feng +3 位作者 Yi Yang Xiaoliang Wu Xiumei Song Lichao Tan 《Nano Materials Science》 EI CAS CSCD 2024年第2期174-192,共19页
Supercapacitors(SCs)are considered promising energy storge systems because of their outstanding power density,fast charge and discharge rate and long-term cycling stability.The exploitation of cheap and efficient elec... Supercapacitors(SCs)are considered promising energy storge systems because of their outstanding power density,fast charge and discharge rate and long-term cycling stability.The exploitation of cheap and efficient electrode materials is the key to improve the performance of supercapacitors.As the battery-type materials,transition metal phosphides(TMPs)possess high theoretical specific capacity,good electrical conductivity and superior structural stability,which have been extensively studied to be electrode materials for supercapacitors.In this review,we summarize the up-to-date progress on TMPs materials from diversified synthetic methods,diverse nanostructures and several prominent TMPs and their composites in application of supercapacitors.In the end,we also propose the remaining challenges toward the rational discovery and synthesis of high-performance TMP electrodes materials for energy storage. 展开更多
关键词 Transition metal phosphides Cobalt phosphide Nickel phosphides electrode materials SUPERCAPACITOR
下载PDF
Research progress of transition metal compounds as bifunctional catalysts for zinc-air batteries 被引量:1
20
作者 Yan Ran Changfan Xu +3 位作者 Deyang Ji Huaping Zhao Liqiang Li Yong Lei 《Nano Research Energy》 2024年第1期78-100,共23页
Zinc-air batteries(ZABs)are widely studied because of their high theoretical energy density,high battery voltage,environmental protection,and low price.However,the slow kinetics of oxygen reduction reaction(ORR)and ox... Zinc-air batteries(ZABs)are widely studied because of their high theoretical energy density,high battery voltage,environmental protection,and low price.However,the slow kinetics of oxygen reduction reaction(ORR)and oxygen evolution reaction(OER)on the air electrode limits the further application of ZABs,so that how to develop a cheap,efficient,and stable catalyst with bifunctional catalytic activity is the key to solving the development of ZABs.Transition metal compounds are widely used as cathode materials for ZABs due to their low cost,high electrocatalytic activity,and stable structure.This review summarizes the research progress of transition metal compounds as bifunctional catalysts for ZABs.The development history,operation principle,and mechanism of ORR and OER reactions are introduced first.The application and development of transition metal compounds as bifunctional catalysts for ZABs in recent years are systematically introduced,including transition metal oxides(TMOs),transition metal nitrides(TMNs),transition metal sulfides(TMSs),transition metal carbides(TMCs),transition metal phosphates(TMPs),and others.In addition,the shortcomings of transition metal compounds as bifunctional catalysts for ZABs were summarized and reasonable design strategies and improvement measures were put forward,aiming at providing a reference for the design and construction of high-performance ZABs cathode materials.Finally,the challenges and future in this field are discussed and prospected. 展开更多
关键词 transition metal compounds zinc-air batteries bifunctional catalysts ELECTROCHEMICAL air electrode
原文传递
上一页 1 2 33 下一页 到第
使用帮助 返回顶部