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Recent Advances in Aqueous Zn||MnO_(2)Batteries 被引量:1
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作者 Chuan Li Rong Zhang +3 位作者 Huilin Cui Yanbo Wang Guojin Liang Chunyi Zhi 《Transactions of Tianjin University》 EI CAS 2024年第1期27-39,共13页
Recently,rechargeable aqueous zinc-based batteries using manganese oxide as the cathode(e.g.,MnO_(2))have gained attention due to their inherent safety,environmental friendliness,and low cost.Despite their potential,a... Recently,rechargeable aqueous zinc-based batteries using manganese oxide as the cathode(e.g.,MnO_(2))have gained attention due to their inherent safety,environmental friendliness,and low cost.Despite their potential,achieving high energy density in Zn||MnO_(2)batteries remains challenging,highlighting the need to understand the electrochemical reaction mechanisms underlying these batteries more deeply and optimize battery components,including electrodes and electrolytes.This review comprehensively summarizes the latest advancements for understanding the electrochemistry reaction mechanisms and designing electrodes and electrolytes for Zn||MnO_(2)batteries in mildly and strongly acidic environments.Furthermore,we highlight the key challenges hindering the extensive application of Zn||MnO_(2)batteries,including high-voltage requirements and areal capacity,and propose innovative solutions to overcome these challenges.We suggest that MnO_(2)/Mn^(2+)conversion in neutral electrolytes is a crucial aspect that needs to be addressed to achieve high-performance Zn||MnO_(2)batteries.These approaches could lead to breakthroughs in the future development of Zn||MnO_(2)batteries,off ering a more sustainable,costeff ective,and high-performance alternative to traditional batteries. 展开更多
关键词 Aqueous zn||mno_(2)batteries Zinc-ion batteries Zinc batteries mno_(2)
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PAM基复合水凝胶电解质的制备及其在Zn-MnO_(2)电池中的应用 被引量:1
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作者 季善果 袁鲁宁 +4 位作者 徐加虎 秦硕 胡媛媛 于鸿达 杨凯 《工程科学学报》 EI CSCD 北大核心 2024年第1期89-96,共8页
水系锌离子电池具有低成本、安全、环保等优点,在规模化储能和智能可穿戴方面极具应用前景.提高其循环稳定性以及循环寿命是实现水系锌离子电池进一步应用的关键问题之一.本工作采用二维层状蒙脱土(MMT)和丙烯酰胺单体,通过两步法合成... 水系锌离子电池具有低成本、安全、环保等优点,在规模化储能和智能可穿戴方面极具应用前景.提高其循环稳定性以及循环寿命是实现水系锌离子电池进一步应用的关键问题之一.本工作采用二维层状蒙脱土(MMT)和丙烯酰胺单体,通过两步法合成了具有三维网状结构的蒙脱土-聚丙烯酰胺水凝胶电解质(Montmorillonite-polyacrylamide hydrogel,MMT-PAM).蒙脱土的加入为丙烯酰胺单体的原位聚合提供了吸附位点,并通过MMT和PAM高分子链之间的氢键作用显著提高了水凝胶的机械性能,抑制了锌枝晶生长(在0.5 mA·cm^(-1)电流密度下稳定循环250 h).此外,蒙脱土表面丰富的负电荷为Zn2+的快速传输提供更多离子传输通道,提高其离子电导率(室温下为34 mS·cm^(-1)),赋予MMT-PAM水凝胶电解质更好的倍率性能和循环稳定性.基于上述优点,组装的水系Zn-MnO_(2)电池在0.2 A·g^(-1)的电流密度下提供了289 mA·h·g^(-1)的比容量,且可稳定循环2000次.此外,使用MMT-PAM水凝胶作为电解质制备的柔性电池在经过不同外界条件冲击下依然可正常工作,表现出了其在柔性电子领域的应用可行性. 展开更多
关键词 zn-mno_(2)电池 水凝胶电解质 蒙脱土 循环稳定性 机械强度 柔性电池
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Plasma-assisted aerogel interface engineering enables uniform Zn^(2+)flux and fast desolvation kinetics toward zinc metal batteries
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作者 Zijian Xu Zhenhai Shi +7 位作者 Zhan Chang Fan Feng Zhuanyi Liu Dongkun Chu Jianguo Ren Zi-Feng Ma Suli Chen Tianxi Liu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第8期29-38,I0002,共11页
The poor reversibility of Zn anodes induced by dendrite growth,surface passivation,and corrosion,severely hinders the practical applicability of Zn metal batteries.To address these issues,a plasmaassisted aerogel(PAG)... The poor reversibility of Zn anodes induced by dendrite growth,surface passivation,and corrosion,severely hinders the practical applicability of Zn metal batteries.To address these issues,a plasmaassisted aerogel(PAG)interface engineering was proposed as efficient ion transport modulator that can simultaneously regulate uniform Zn^(2+)flux and desolvation behavior during battery operation.The PAG with ordered mesopores acted as an ion sieve to homogenize Zn deposition and accelerate Zn^(2+)flux,which is favorable for corrosion resistance and dendrite suppression.Importantly,the plasma-assisted aerogel with abundant hydrophilic groups can facilitate the desolvation kinetics of Zn^(2+)due to the multiple hydrogen-bonding interaction with the activated water molecules,thus accelerating the Zn^(2+)migration kinetics.Consequently,the Zn/Zn cell assembled with PAG-modified separator demonstrates stable plating and stripping behavior(over 1400 h at 1 mA cm^(-2))and high Coulombic efficiency(99.8%at1 mA cm^(-2)after 1100 cycles),and the Zn‖MnO_(2)full cell shows excellent long-term cycling stability and maintains a high capacity of 154.9 mA h g^(-1)after 1000 cycles at 1 A g^(-1).This study provides a feasible approach for the large-scale fabrication of aerogel functionalized separators to realize ultra-stable Zn metal batteries. 展开更多
关键词 zn metal batteries Aerogel interface Plasma zn^(2+)migration kinetics Dendrite growth
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Development of High Areal Capacity Electrolytic MnO_(2)-Zn Battery via an Iodine Mediator 被引量:2
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作者 Xinhua Zheng Ruihao Luo +9 位作者 Touqeer Ahmad Jifei Sun Shuang Liu Na Chen Mingming Wang Yuan Yuan Mingyan Chuai Yan Xu Taoli Jiang Wei Chen 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2023年第6期243-250,共8页
The commercialization of electrolytic MnO_(2)-Zn batteries is highly applauded owing to the advantages of cost-effectiveness,high safety,high energy density,and durable working performance.However,due to the low rever... The commercialization of electrolytic MnO_(2)-Zn batteries is highly applauded owing to the advantages of cost-effectiveness,high safety,high energy density,and durable working performance.However,due to the low reversibility of the cathode MnO_(2)/Mn^(2+)chemistry at high areal capacities and the severe Zn anode corrosion,the practical application of MnO_(2)-Zn batteries is hampered by inadequate lifespan.Leveraging the full advantage of an iodine redox mediator,here we design a highly rechargeable electrolytic MnO_(2)-Zn battery with a high areal capacity.The MnO_(2)-Zn battery coupled with an iodine mediator in a mild electrolyte shows a high discharge voltage of 1.85 V and a robust areal capacity of 10 mAh cm^(-2)under a substantial discharge current density of 160 mA cm^(-2).The MnO_(2)/I_(2)-Zn battery with an areal capacity of 10 mAh cm^(-2)exhibits prolonged stability of over 950 cycles under a high-capacity retention of~94%.The scaled-up MnO_(2)/I_(2)-Zn battery reveals a stable cycle life under a cell capacity of~600 mAh.Moreover,our constructed MnO_(2)/I_(2)-Zn battery demonstrates a practical energy density of~37 Wh kg^(-1)and a competitive energy cost of<18 US$kWh^(-1)by taking into account the cathode,anode,and electrolyte.The MnO_(2)/I_(2)-Zn battery,with its remarkable reversibility and reasonable energy density,enlightens a new arena of large-scale energy storage devices. 展开更多
关键词 high areal capacity iodine redox mediator large-scale energy storage mno2-zn battery
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Towards storable and durable Zn-MnO_(2) batteries with hydrous tetraglyme electrolyte 被引量:1
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作者 Kaixuan Ma Gongzheng Yang Chengxin Wang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第5期432-441,I0010,共11页
Aqueous rechargeable zinc-based batteries have attracted increasing interest and been considered potential alternatives for state-of-the-art lithium-ion batteries because of the low cost and high safety.Many cathode m... Aqueous rechargeable zinc-based batteries have attracted increasing interest and been considered potential alternatives for state-of-the-art lithium-ion batteries because of the low cost and high safety.Many cathode materials have been gradually developed and demonstrated excellent electrochemical performances.However,the complex electrochemistry,inevitable hydrogen release,and zinc corrosion severely hinder the practical application.The most concerned Zn-MnO_(2)batteries still suffer from the Mn dissolution and formation of byproducts.By adding organic solvents to inhibit the activity of water molecules,the hydrous organic electrolytes provide a sound solution for eliminating the unfavorable factors.Here we report a tetraethylene glycol dimethyl ether-based hydrous organic electrolyte consisting of LiClO_(4)·3H_(2)O and Zn(ClO4)2·6H2O,and a birnessite-type MnO_(2)cathode material for Zn-MnO_(2)batteries.The Li+/Zn2+ions co-(de)insertion mechanism is ascertained by the structural and morphological analyses.The electrostatic interaction between inserted ions and crystal structure is reduced effectively by employment of monovalent Li+ions,which ensures structural stability of cathode materials.Hydrous tetraglyme electrolyte inhibits the activity of water molecules and thus avoids the formation of byproduct Zn_(4)ClO_(4)(OH)7·Meanwhile,highly stable Zn plating/stripping for over 1500 h,an average coulombic efficiency of>99%in long-term cycling,and ultralong storage life(the cells can work well after stored over 1 year)are simultaneously realized in the novel electrolyte.Benefitting from these aspects,the Zn-MnO_(2)batteries manifest high specific capacity of 132 mA h g^(-1),an operating voltage of 1.25 V,and a capacity retention of>98%after 1000 cycles at a current density of 200 mA g^(-1). 展开更多
关键词 Energy storage zn battery δ-mno_(2) Hydrous tetraglyme electrolytes Long life
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胺功能化的铜催化剂:氢键介导的电化学CO_(2)还原为C_(2)产物以及优越的可充电Zn-CO_(2)电池性能
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作者 项东 李坤振 +3 位作者 苗康华 龙冉 熊宇杰 康雄武 《物理化学学报》 SCIE CAS CSCD 北大核心 2024年第8期43-46,共4页
有机分子功能化是一种有前景的策略,用于调控电化学CO_(2)还原反应(eCO_(2)RR)的C_(2+)产物选择性和活性。然而,我们对于电化学CO_(2)还原调控机制的分子水平理解仍然不够清晰。在本文中,我们成功制备了铜纳米颗粒,并使用一系列胺类衍生... 有机分子功能化是一种有前景的策略,用于调控电化学CO_(2)还原反应(eCO_(2)RR)的C_(2+)产物选择性和活性。然而,我们对于电化学CO_(2)还原调控机制的分子水平理解仍然不够清晰。在本文中,我们成功制备了铜纳米颗粒,并使用一系列胺类衍生物(如十六胺(HAD)、N-甲基十六胺(N-MHDA)、十六烷基二甲胺(HDDMA)和十六酰胺(PMM))对其进行功能化,以系统地研究胺表面活性剂分子结构对eCO_(2)RR选择性和活性的影响。结果表明,HDA的功能化可以将C_(2)产物和C_(2)H_(4)的法拉第效率(FE)提高至73.5%和46.4%,并且在−0.9 V vs.RHE(可逆氢电极)电位下,C_(2)产物的分电流密度为131.4 mA·cm^(−2)。理论研究发现,HDA通过与CO_(2)和eCO_(2)RR中间体之间的氢键相互作用,富集了^(*)CO_(2)、^(*)CO和其他反应中间体,降低了CO―CHO耦合反应的动力学能垒,从而促进了eCO_(2)RR向C_(2)产物的转化。当胺基的H原子被甲基取代后,氢键相互作用减弱,竞争的析氢反应加剧。PMM通过Cu―O键与Cu表面发生键合,而不是通过Cu―N键,导致Cu-PMM更倾向于产乙醇。原位拉曼光谱显示,在Cu-HDA表面,CO主要吸附在Cu的顶位吸附位点上,与在Cu表面上的桥式吸附不同,这可能是因为前者表面对CO的富集引发了CO的吸附构型变化。HDA功能化还提高了Cu催化剂的表面pH。基于Cu-HDA组装的可充电Zn-CO_(2)电池在放电电流密度为16 mA∙cm^(−2)时,最大功率密度为6.48 mW∙cm^(−2),并具有长达60 h的良好充放电稳定性。本研究的重点在于通过在分子水平上调节Cu基材料的CO_(2)RR活性和选择性,促进CO_(2)-C_(2)的转化,这可能为提高C_(2)产物的产率提供新的见解。 展开更多
关键词 二氧化碳还原 CO―CHO耦合 有机分子功能化 原位拉曼 C_(2)产物 zn-CO_(2)电池
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乙腈-水系混合电解液对Zn-Na_(3)V_(2)(PO_(4))_(3)电池电化学稳定性的影响
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作者 欧林娜 刘哲轩 +1 位作者 曹鑫鑫 梁叔全 《中国有色金属学报》 EI CAS CSCD 北大核心 2024年第6期1848-1860,共13页
Na_(3)V_(2)(PO_(4))_(3)正极材料具有稳定的三维框架结构、较高的工作电压和相对成熟的制备工艺,近年来也逐渐用于水系锌离子电池中。然而,二价Zn^(2+)的脱嵌和活泼的水系反应环境会加速磷酸盐晶格的破坏。本文在Zn-Na_(3)V_(2)(PO_(4)... Na_(3)V_(2)(PO_(4))_(3)正极材料具有稳定的三维框架结构、较高的工作电压和相对成熟的制备工艺,近年来也逐渐用于水系锌离子电池中。然而,二价Zn^(2+)的脱嵌和活泼的水系反应环境会加速磷酸盐晶格的破坏。本文在Zn-Na_(3)V_(2)(PO_(4))_(3)电池体系的水系电解液中加入适量的乙腈(AN),研究电解液中AN与水的比例对离子溶剂化结构和电化学行为的影响规律,并通过非原位XRD探究Na_(3)V_(2)(PO_(4))_(3)晶体结构的演变。结果表明:过少的AN会加快正极材料晶格框架的破坏,而过多的AN会减缓电极反应动力学;在含有适量AN的电解液中,Zn-Na_(3)V_(2)(PO_(4))_(3)电池不但在50 mA/g的电流密度下具有91.4 mA·h/g的较高比容量,同时在500 mA/g的电流密度下可以稳定循环1000次且无明显容量衰退。 展开更多
关键词 zn-Na_(3)V_(2)(PO_(4))_(3)电池 乙腈 有机-无机混合电解液 电化学稳定性 离子可逆脱嵌
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Regulating the inner Helmholtz plane structure at the electrolyte-electrode interface for highly reversible aqueous Zn batteries
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作者 Jianghe Liu Sanlue Hu +6 位作者 Hexin Guo Guobin Zhang Wen Liu Jianwei Zhao Shenhua Song Cuiping Han Baohua Li 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第8期57-67,I0002,共12页
The development of aqueous Zn batteries is limited by parasitic water reactions,corrosion,and dendrite growth.To address these challenges,an inner Helmholtz plane(IHP)regulation method is proposed by employing low-cos... The development of aqueous Zn batteries is limited by parasitic water reactions,corrosion,and dendrite growth.To address these challenges,an inner Helmholtz plane(IHP)regulation method is proposed by employing low-cost,non-toxic maltitol as the electrolyte additive.The preferential adsorption behavior of maltitol can expel the water from the inner Helmholtz plane,and thus hinder the immediate contact between Zn metal and H_(2)O.Meanwhile,strong interaction between maltitol and H_(2)O molecules can restrain the activity of H_(2)O.Besides,the"IHP adsorption effect"along with the low LUMO energy level of maltitol-CF_(3)SO_(3)^(-)can promote the in-situ formation of an organic-inorganic complex solid electrolyte interface(SEI)layer.As a result,the hydrogen/oxygen evolution side reaction,corrosion,and dendrites issues are effectively suppressed,thereby leading to highly reversible and dendrite-free Zn plating/stripping.The Zn‖I_(2)battery with hybrid electrolytes also demonstrates high electrochemical performance and ultralong cycling stability,showing a capacity retention of 75%over 20000 charge-discharge cycles at a large current density of 5 A g^(-1).In addition,the capacity of the device has almost no obvious decay over20000 cycles even at-30℃.This work offers a successful electrolyte regulation strategy via the IHP adsorption effect to design electrolytes for high-performance rechargeable Zn-ion batteries. 展开更多
关键词 Inner Helmholtz plane Adsorption effect Dendrite suppression SEI layer zn||I_(2)battery
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Unraveling the Role of Nitrogen-Doped Carbon Nanowires Incorporated with MnO_(2)Nanosheets as High Performance Cathode for Zinc-Ion Batteries 被引量:2
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作者 Xiaohui Li Qiancheng Zhou +5 位作者 Ze Yang Xing Zhou Dan Qiu Huajun Qiu Xintang Huang Ying Yu 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2023年第3期205-213,共9页
Manganese-based cathode materials are considered as a promising candidate for rechargeable aqueous zinc-ion batteries(ZIBs).Suffering from poor conductive and limited structure tolerance,various carbon matrix,especial... Manganese-based cathode materials are considered as a promising candidate for rechargeable aqueous zinc-ion batteries(ZIBs).Suffering from poor conductive and limited structure tolerance,various carbon matrix,especially N-doped carbon,were employed to incorporate with MnO_(2)for greatly promoted electrochemical performances.However,the related underlying mechanism is still unknown,which is unfavorable to guide the design of high performance electrode.Herein,by incorporating layered MnO_(2)with N-doped carbon nanowires,a free-standing cathode with hierarchical core-shell structure(denoted as MnO_(2)@NC)is prepared.Benefiting from the N-doped carbon and rational architecture,the MnO_(2)@NC electrode shows an enhanced specific capacity(325 mAh g^(−1)at 0.1 A g^(−1))and rate performance(90 mAh g^(−1)at 2 A g^(−1)),as well as improved cycling stability.Furthermore,the performance improvement mechanism of MnO_(2)incorporated by N-doped carbon is investigated by X-ray photoelectron spectroscopy(XPS),Raman spectrums and density functional theory(DFT)calculation.The N atom elongates the Mn-O bond and reduces the valence of Mn^(4+)ion in MnO_(2)crystal by delocalizing its electron clouds.Thus,the electrostatic repulsion will be weakened when Zn^(2+)/H^(+)insert into the host MnO_(2)lattices,which is profitable to more cation insertion and faster ion transfer kinetics for higher capacity and rate capability.This work elucidates a fundamental understanding of the functions of N-doped carbon in composite materials and shed light on a practical pathway to optimize other electrode materials. 展开更多
关键词 core-shell nanostructure mno_(2)nanosheets N-doped carbon zn ion batteries
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废旧锂离子电池回收制备MnO_(2)及其储锌性能
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作者 彭雪 刘培艳 +1 位作者 夏铭 刘媛媛 《洁净煤技术》 CAS CSCD 北大核心 2024年第2期209-218,共10页
随着锂离子电池产业的快速发展,退役锂离子电池的回收利用问题已成为工业和学术界关注的热点。前人对废旧锂离子电池中有价值资源的回收做了大量研究,但将回收的锂离子电池材料直接转化为新型储能体系电极材料的研究鲜有报道。为实现退... 随着锂离子电池产业的快速发展,退役锂离子电池的回收利用问题已成为工业和学术界关注的热点。前人对废旧锂离子电池中有价值资源的回收做了大量研究,但将回收的锂离子电池材料直接转化为新型储能体系电极材料的研究鲜有报道。为实现退役电池的资源化再利用,可通过简单的H_(2)SO_(4)浸渍法,将废旧锂离子电池中锰酸锂(LiMn_(2)O_(4))材料转化为MnO_(2),并用做水系锌离子电池正极材料。通过XRD、XPS、BET、SEM、CV、TEM、EIS以及电化学性能测试等表征方法,探究酸浸渍条件如温度、时间等对所制备MnO_(2)形貌、结构和电化学性能的影响规律。结果表明:LiMn2O4材料经酸浸渍会发生歧化反应,使Li^(+)和部分Mn^(2+)从晶格中溶出,而浸渍温度对离子的溶出速度有显著影响。室温下,LiMn_(2)O_(4)晶格中离子的溶出速度较慢,可获得与其晶体结构相近的λ-MnO_(2)材料;而水热条件下,高反应温度会加剧晶格中原子的振动,加快离子溶出速度,形成晶体结构更紧密且热力学更稳定的γ-MnO_(2)和β-MnO_(2)。电化学性能测试结果显示,具有纳米棒状形貌和较大比表面积的γ-MnO_(2)材料,表现出较高的放电比容量和最优的循环稳定性,在0.3和3.0 A/g电流密度下,其放电比容量分别为273.3和127.2 mAh/g。在3.0 A/g电流密度下,γ-MnO_(2)材料经200、500和1 000圈循环后,其容量保持率高达77.1%、65.7%和43.9%。此外,通过ex-XRD表征研究发现,该Zn//MnO2电池的电化学储能机理遵循H^(+)/Zn^(2+)共插入/脱出机制。 展开更多
关键词 废旧锰酸锂 回收 二氧化锰 水系锌离子电池 正极材料
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Novel Insights into Energy Storage Mechanism of Aqueous Rechargeable Zn/MnO2 Batteries with Participation of Mn2+ 被引量:15
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作者 Yongfeng Huang Jian Mou +4 位作者 Wenbao Liu Xianli Wang Liubing Dong Feiyu Kang Chengjun Xu 《Nano-Micro Letters》 SCIE EI CAS CSCD 2019年第3期227-239,共13页
Aqueous rechargeable Zn/MnO2 zinc-ion batteries(ZIBs)are reviving recently due to their low cost,non-toxicity,and natural abundance.However,their energy storage mechanism remains controversial due to their complicated... Aqueous rechargeable Zn/MnO2 zinc-ion batteries(ZIBs)are reviving recently due to their low cost,non-toxicity,and natural abundance.However,their energy storage mechanism remains controversial due to their complicated electrochemical reactions.Meanwhile,to achieve satisfactory cyclic stability and rate performance of the Zn/MnO2 ZIBs,Mn2+ is introduced in the electrolyte(e.g.,ZnSO4 solution),which leads to more complicated reactions inside the ZIBs systems.Herein,based on comprehensive analysis methods including electrochemical analysis and Pourbaix diagram,we provide novel insights into the energy storage mechanism of Zn/MnO2 batteries in the presence of Mn2+.A complex series of electrochemical reactions with the coparticipation of Zn2+,H+,Mn2+,SO42-,and OH-were revealed.During the first discharge process,co-insertion of Zn2+ and H+ promotes the transformation of MnO2 into ZnxMnO4,MnOOH,and Mn2O3,accompanying with increased electrolyte pH and the formation of ZnSO4·3 Zn(OH)2-5 H2O.During the subsequent charge process,ZnxMnO4,MnOOH,and Mn2O3 revert to a-MnO2 with the extraction of Zn2+ and H+,while ZnSO4·3Zn(OH)2·5H2O reacts with Mn2+ to form ZnMn3O7·3 H2O.In the following charge/discharge processes,besides aforementioned electrochemical reactions,Zn2+ reversibly insert into/extract from α-MnO2,ZnxMnO4,and ZnMn3O7·3H2O hosts;ZnSO4·3Zn(OH)2·5 H2O,Zn2Mn3O8,and ZnMn2O4 convert mutually with the participation of Mn2+.This work is believed to provide theoretical guidance for further research on high-performance ZIBs. 展开更多
关键词 Zinc-ion battery mno2 CATHODE Energy storage MECHANISM Phase evolution
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EXAFS研究Zn在δ-MnO_2上的吸附-解吸机理 被引量:14
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作者 潘纲 李贤良 +3 位作者 秦延文 胡天斗 吴自玉 谢亚宁 《环境科学》 EI CAS CSCD 北大核心 2003年第4期54-59,共6页
用延展X ray吸收精细结构光谱 (EXAFS)研究了重金属Zn(Ⅱ )在δ MnO2 上吸附产物的微观结构及其吸附机制 .在pH 5 5 0 ,0 1mol/LNaNO3介质中 ,吸附在δ MnO2 表面上Zn(Ⅱ )以六配位的水合离子八面体形式存在 .水合锌离子八面体从δ Mn... 用延展X ray吸收精细结构光谱 (EXAFS)研究了重金属Zn(Ⅱ )在δ MnO2 上吸附产物的微观结构及其吸附机制 .在pH 5 5 0 ,0 1mol/LNaNO3介质中 ,吸附在δ MnO2 表面上Zn(Ⅱ )以六配位的水合离子八面体形式存在 .水合锌离子八面体从δ MnO2 层状结构的空位上下方 ,与δ MnO2 的结构单元MnO6 八面体通过共用O原子结合 ,形成角 角结合的弱吸附 ,Zn O平均原子间距为 ( 2 0 71± 0 0 0 7) (n =3 ) ,Zn Mn平均原子间距为 ( 3 5 2 8± 0 0 0 6) (n =3 ) .在同一条等温线上随着吸附量增加 ,以角 角结合的弱吸附形式基本上没有变化 .宏观的吸附 解吸实验结果显示Zn(Ⅱ )在δ MnO2 上的吸附可逆性很高 ,解吸等温线和吸附等温线几乎重合在一起 .EXAFS结果从分子水平表明 ,Zn(Ⅱ )在δ MnO2 上的高吸附可逆性是由角 展开更多
关键词 EXAFS zn Δ-mno2 吸附机制 吸附可逆性
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Template synthesis of MnO_2/CNT nanocomposite and its application in rechargeable lithium batteries 被引量:4
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作者 邹敏敏 艾邓均 刘开宇 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第9期2010-2014,共5页
Nanostructured MnO2/CNT composite was synthesized by a soft template approach in the presence of Pluronic P123 surfactant. The product was characterized by X-ray diffraction, thermogravimetric and differential thermal... Nanostructured MnO2/CNT composite was synthesized by a soft template approach in the presence of Pluronic P123 surfactant. The product was characterized by X-ray diffraction, thermogravimetric and differential thermal analyses, Fourier transformed infrared spectroscopy and high-resolution transmission electron microscopy. The results show that the sample consists of poor crystalline α-MnO2 nanorods with a diameter of about 10 nm and a length of 30-50 nm, which absorb on the carbon nanotubes. The electrochemical properties of the product as cathode material for Li-MnO2 cell are evaluated by galvanostatic charge-discharge and electrochemical impedance spectroscopy (EIS). Compared with pure MnO2 electrode, the MnO2/CNT composite delivers a much larger initial capacity of 275.3 mA-h/g and better rate and cycling performance. 展开更多
关键词 mno2/CNT soft template NANOCOMPOSITE rechargeable lithium batteries
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Zn/MnO_2固态电池 被引量:1
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作者 王文楼 林枫凉 +1 位作者 刘皖育 俞文海 《中国科学技术大学学报》 CAS CSCD 北大核心 1991年第4期459-464,共6页
利用Zn-蒙脱石作为固体电解质,组装成Zn/Zn-蒙脱石/MnO_2固态电池。研究了不同温度处理的电解MnO_2对电池性能的影响,发现以γ和β相共存的MnO_2具有较高的放电容量。电池的极化性能研究表明电解质的电阻所引起的欧姆极化是电池极化的... 利用Zn-蒙脱石作为固体电解质,组装成Zn/Zn-蒙脱石/MnO_2固态电池。研究了不同温度处理的电解MnO_2对电池性能的影响,发现以γ和β相共存的MnO_2具有较高的放电容量。电池的极化性能研究表明电解质的电阻所引起的欧姆极化是电池极化的主要因素。本文还初步探讨了离子在蒙脱石中的迁移机制对电池性能的影响,提出水合离子迁移的概念。 展开更多
关键词 固态电池 蒙脱石 快离子导体
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Zn^(2+)/Zn和Fe^(3+)/Fe^(2+)的电化学行为及其在液流电池中的应用
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作者 彭海泉 赵丽娜 胡显龙 《中国资源综合利用》 2023年第7期1-3,共3页
锌铁液流电池采用成本低廉的锌、铁元素作为活性物质,有望成为下一代高性价比储能电池。本文利用循环伏安法测试锌、铁离子在碳毡电极表面的电化学活性,计算Zn^(2+)/Zn与Fe^(3+)/Fe^(2+)的扩散系数与反应速率常数。结果表明,锌离子与铁... 锌铁液流电池采用成本低廉的锌、铁元素作为活性物质,有望成为下一代高性价比储能电池。本文利用循环伏安法测试锌、铁离子在碳毡电极表面的电化学活性,计算Zn^(2+)/Zn与Fe^(3+)/Fe^(2+)的扩散系数与反应速率常数。结果表明,锌离子与铁离子在多孔碳毡上具有良好的电化学性能,可以作为锌铁液流电池的活性物质。充放电测试结果表明,锌铁液流电池的充放电性能良好,它具有较高的电流效率、电压效率和能量效率。 展开更多
关键词 zn^(2+)/zn Fe^(3+)/Fe^(2+) 液流电池 电化学行为 充放电性能
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Zn-MnO_2同槽电解工业生产试验研究 被引量:2
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作者 张文山 梅光贵 钟竹前 《中国锰业》 2006年第4期38-41,共4页
论述了Zn、Mn浸出、净化及Zn-MnO2同槽电解的工业生产试验工艺流程、技术条件与研究结果,获得了较好的技术指标与产品质量。阐明了各主要过程的基本原理与主要化学反应。
关键词 浸出 净化 znmno2同槽电解
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碱性Zn/MnO_2电池的技术进步与发展潜力(2) 被引量:1
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作者 夏熙 郭再萍 高瑞芝 《电池工业》 CAS 1998年第6期163-167,共5页
关键词 zn/mno2 短路电流 技术进步 接触电阻 电液 导电率 发展潜力 第三电极 容量损失 导电涂层
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碱性Zn-MnO_2电池的动电位扫描研究 被引量:1
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作者 贺廷莲 李宝善 《青海师范大学学报(自然科学版)》 2002年第3期65-66,共2页
本文利用动电位扫描法研究了电极结构对碱性Zn -MnO2 电池的影响 ,结果表明减弱MnO2 与导电物质的接触可以抑制第二步反应。
关键词 碱性zn-mno2电池 电极结构 动电位扫描法 二氧化锰 碱性锌锰电池 二次电池
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Zn/MnO_2电池的电解质溶液
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作者 宋文顺 《电池》 CAS CSCD 北大核心 2002年第2期121-122,共2页
对Zn/MnO2 电池所用电解质溶液的发展及其导电性、杂质与净化和添加剂进行了讨论 ,并指出电池的放电特征主要取决于电解质的性质 ,建议对电池的放电特点加强宣传。
关键词 zn/mno2电池 电解质溶液 放电特点 锌锰电池
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氮掺杂多孔碳负载Fe纳米颗粒用于高性能电催化还原CO_(2)与Zn-CO_(2)电池 被引量:2
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作者 杨文倩 薛自前 +9 位作者 杨俊 冼家慧 刘庆林 范雅楠 郑凯 廖锫钦 苏徽 刘庆华 李光琴 苏成勇 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2023年第5期185-194,共10页
电催化CO_(2)还原为CO因其技术与经济上的可行性而被认为是推进碳中和最有前景的反应之一.然而,水溶液中激烈的竞争性析氢反应阻碍生成单一高选择性产物.目前,贵金属纳米催化剂表现出较好的CO选择性,但稀缺性和高成本限制了其进一步应用... 电催化CO_(2)还原为CO因其技术与经济上的可行性而被认为是推进碳中和最有前景的反应之一.然而,水溶液中激烈的竞争性析氢反应阻碍生成单一高选择性产物.目前,贵金属纳米催化剂表现出较好的CO选择性,但稀缺性和高成本限制了其进一步应用.Fe纳米颗粒(NPs)具有电催化活性,且储量丰富成本低,被认为是一种潜在可替代贵金属的电催化剂,但Fe存在易氧化、团聚、稳定性差、吸附CO_(2)能力低等问题.因此,探索同时具有良好活性和稳定性的新型Fe NPs催化剂仍具有重要意义.金属-有机骨架(MOFs)衍生物被认为是合成锚定和激活金属纳米颗粒的良好前驱体.因此,将Fe NPs固定在MOFs衍生物中为开发稳定、高活性的Fe NPs催化剂提供了可行的机会.本文通过修饰MOFs前驱体的策略,对IRMOF-3(Zn)进行少量含铁配体单羧酸二茂铁的取代,结合一步热解碳化,制备了Fe NPs负载在海绵状氮掺杂多孔碳的复合催化剂(Fe@NPC).同时对配体为对苯二甲酸的MOF-5和配体为2-氨基-对苯二甲酸的IRMOF-3(Zn)进行热解碳化,制备了对照样品多孔碳MOF-5-D和氮掺杂多孔碳IRMOF-3-D.光电子能谱(XPS)和X射线吸收精细结构谱(XAFS)结果表明,在Fe@NPC中含有大量的Fe-Fe键以及极少量的Fe-N/C键,说明Fe主要以纳米颗粒形式存在,少量Fe-N/C分布在Fe NPs表面,在Fe NPs与氮掺杂碳基底间起到良好的连接作用.此外,Fe@NPC具有较大的比表面积(1264 m^(2)g^(-1))和高于MOF-5-D与IRMOF-3-D的CO_(2)吸附能力(93.5 cm^(3)g^(-1)),这种具有CO_(2)强吸附和丰富活性位点的多级孔结构为加速传质、加快CO_(2)转化奠定了良好的基础.在H-cell与-0.6 V_(RHE)的条件下,IRMOF-3-D的最大CO法拉第效率(FECO)为65.3%,是MOF-5-D(49.9%)的1.3倍,说明氮掺杂在一定程度上促进了CO_(2)的电还原.此外,Fe@NPC在-0.3 V_(RHE)到1.0 V_(RHE)的宽电位化学区间均表现出较好的性能,即最大的电流密度,最低的起始电位以及92.1%的最高的FECO.而且Fe@NPC在流动池中可以获得更高的FECO(96.4%),同时能够在H-cell与流动池中均保持良好的稳定性.由于*COOH高能垒,它的产生被认为是高效电化学CO_(2)-CO转换的瓶颈.进一步采用原位衰减全反射-傅里叶变换红外(ATR-IR)来实时监测中间体,并深入探究Fe@NPC作用于CO_(2)还原过程的机理,观测到中间体*COOH的逐渐形成和积累,以及同一反应时间内*COOH在Fe@NPC上的更快动力学形成过程;进一步说明Fe位点与氮掺杂多孔碳之间的协同作用显著提高了Fe@NPC的CO_(2)的捕获能力和传质能力并加速了CO生成的动力学.本文以Fe@NPC为阴极组装了Zn-CO_(2)电池,发现该电池具有良好的充电放电性能,放电过程中可提供3.0 mW cm^(-2)的峰值功率密度,同时表现出良好的稳定性(120个循环),实现CO_(2)电还原与储能的良好结合,并表现出高效的能量转换装置的良好应用潜力.综上,本文为设计用于高选择性的CO_(2)还原反应和能量转换器件的铁基催化剂提供了一种新方法. 展开更多
关键词 Fe纳米颗粒 MOFs衍生物 氮掺杂多孔碳 CO_(2)电催化 zn-CO_(2)电池
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