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    题名 作者 年代 出处 被引量
1Spherical nano-Sb@C composite as a high-rate and ultra-stable anode material for sodium-ion batteries显示文摘一种喷雾器水花热分解技术被用来综合球形的 nano-Sb@C 合成。仪器的分析表明与 68.8 wt% 的一个优化 Sb 内容合成的 micro-nanostructured 一致地由极端小的 Sb nanoparticles (10 nm ) 组成在一个球形的多孔的 C 矩阵以内嵌入(作为 10-Sb @ C 表示了) 。Sb 的内容和尺寸能被改变先锋的集中控制。作为钠离子电池的阳极材料, 10-Sb @ C 提供 435 mAh 据 ? 椠据畬楤杮愠猠数楣楦 ? 慣慰楣慴据 ? 景ㄠ ? 的一个分泌物能力 ? 术挠浯慰敲 ? 楷桴琠敨瘠污敵漠 ??? 术映牯 ?? 瑡愠挠慨杲 ? 楤' 湛?慲整漠 ?? ‰ ?Ning Zhang Yongchang Liu Yanying Lu Xiaopeng Han Fangyi Cheng Jun Chen 2015Nano Research2015,8,10:14
2Nanostructured Bi2S3 encapsulated within three- dimensional N-doped graphene as active and flexible anodes for sodium-ion batteries显示文摘Chen Lu Zhenzhu Li Lianghao Yu Li Zhang Zhou Xia Tao Jiang Wanjian Yin Shixue Dou Zhongfan Liu Jingyu Sun 2018Nano Research2018,11,9:9
3Facile synthesis and electrochemical sodium storage of CoS2 micro/nano-structures显示文摘我们报导合成和钴二硫化物的电气化学的钠存储(有各种各样的 micro/nano-structures 的公司 2) 。有 microscale 尺寸的公司 2 也被 nanoparticles 装配(经由一条灵巧的 solvothermal 线路或 nanooctahedrons 的 P 公司 2) 构造了固体(O 公司 2) 和空微观结构(H 公司 2) 由热水的方法制作了。在三形态学之中, H 公司 2 作为钠离子电池(亲族) 的阳极展出最大的分泌物能力和最好的率性能。而且, H 公司 2 交付 690 妈Xue Liu Kai Zhang Kaixiang Lei Fujun Li Zhanliang Tao Jun Chen 2016Nano Research2016,9,1:8
4From graphite to porous graphene-like nanosheets for high rate lithium-ion batteries显示文摘Graphene nanosheets possess a promising potential as electrodes in Li-ion batteries (LIBs); consequently, the development of low-cost and high-productivity synthetic approaches is crudal. Herein, porous grapheneqike nanosheets (PGSs) have been synthesized from expandable graphite (EG) by initially intercalating phosphoric acid, and then performing annealing to enlarge the interlayer distance of EG, thus fadlitating the successive intercalation of zinc chloride. Subsequently, the following pyrolysis of zinc chloride in the EG interlayer promoted the formation of the porous PGS structure; meanwhile, the gas produced during the formation of the porous structure could exfoliate the EG to graphene-like nanosheets. The synthetic PGS material used as LIB anode exhibited superior Li+ storage performance, showing a remarkable discharge capacity of 830.4 mAh.g-1 at 100 mA.g-1, excellent rate capadty of 211.6 mAh'g-1 at 20,000 mA-g-1, and excellent cycle performance (near 100% capacity retention after 10,000 cycles). The excellent rate performance is attributed to the Li+ ion rapid transport in porous structures and the high electrical conductivity of graphene-like nanosheets. It is expected that PGS may be widely used as anode material for high-rate LIBs via this facile and low-cost route by employing EG as the raw material.Dongdong Zhao Lei Wang Peng Yu Lu Zhao Chungui Tian Wei Zhou LeiZhang Honggang Fu 2015Nano Research2015,8,9:8
5Aerosol-assisted rapid synthesis of SnS-C composite microspheres as anode material for Na-ion batteries显示文摘SnS-C 合成粉末为 Na 离子电池用作阳极材料通过一个壶水花热分解作好准备。有一致地依附的象立方一样 SnS nanocrystals 的 C microspheres,有非结晶的 C 涂层层,在 900 的准备温度被形成 ????????????????????Seung Ho Choi Yun Chan Kang 2015Nano Research2015,8,5:7
6Polydopamine-derived N-doped carbon-wrapped Na3V2(PO4)3 cathode H with superior rate capability and cycling stability for sodium-ion I batteries显示文摘Na superionic conductor (NASICON)-type Na3V2(PO4)3 (NVP) has been regarded as a promising cathode material for sodium-ion batteries (SIBs). However, NVP suffers from poor cyclability and rate capability because of its intrinsically low electronic conductivity. Herein, we successfully syn thesized N-doped carb on-wrapped Na3V2(PO4)3 (NC@NVP) through the carb on izati on of polydopami ne, which is rich in nitrogen species. The strong adhesion properties of the polydopamine lead to effective and homogeneous wrapping of NVP particles, and it I is further turned into a con ductive N-doped carb on n etwork itself, providi ng facile diffusi on of electr ons and Na+ i ons duri ng battery operation. NC@NVP displays remarkable electrochemical performanee, even under harsh operating conditions, such as a high rate capability (discharge capacity of 70.88, 49.21 mA·h·g^-1 at 50 and 100 C), long-term cycling stability (capacity retention of 94.77% over 1,000 cycles at 20 C), and high-temperature cycling (capacity retention of 92.0% after 500 cycles at 60 ℃).Hyeongwoo Kim Hyojun Lim Hyung-Seok Kim Ki Jae Kim Dongjin Byun Wonchang Choi 2019Nano Research2019,12,2:5
7钠离子电池金属化合物负极材料的研究进展显示文摘钠离子电池具有钠资源存储丰富、价格低廉等优点,是一种极具发展前景的储能装置,因此成为当下研究热点。钠离子电池的电化学性能主要取决于正负极材料。但是,钠离子较大的半径使其在电极材料中可逆地嵌入/脱出更为困难。而金属化合物材料作为储钠负极材料时,遵循转化反应机制,并表现出较高的理论比容量,因而受到研究人员的广泛关注。本文综述了金属氧化物、金属硫化物、金属磷化物等几种金属化合物负极材料的储钠机制和研究进展,探讨了金属化合物材料的储钠性能,阐明了金属化合物作为理想的储钠负极材料的优势,最后对金属化合物材料的研究前景进行了展望。田丽媛 鞠小霞 向枫 周明 2018储能科学与技术2018,7,6:3
8Nanostructured organic electrode materials grown on graphene with covalent-bond interaction for high-rate and ultra-long-life lithium-ion batteries显示文摘Qing Zhao Jianbin Wang Chengcheng Chen Ting Ma Jun Chen 2017Nano Research2017,10,12:1
9高比容量钠离子电池合金系负极材料的研究进展显示文摘随着科技发展以及人们对能源需求的日益加剧,单靠锂离子电池很难满足未来储能的迫切需求.钠离子电池由于钠源丰富、成本低廉,在能量密度要求相对较低的大规模储能等领域具有巨大应用前景.合金系负极材料由于比容量高、工作电压低、合成简单等优点而备受关注.针对钠离子电池合金系负极材料研究进展进行综述,总结并分析合金系材料作为钠离子电池负极材料的可行性以及面临问题,为今后钠离子电池高比容量负极材料的制备与研究提供借鉴.王春忠 杨旭 陈岗 2016吉林师范大学学报(自然科学版)2016,37,3:1
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