Understanding the cycling and degradation of atomically thin 2D/1D anodes for Li & Na-ion batteries with in-situ & operando scanning probe microscopy
Understanding the cycling and degradation of atomically thin 2D/1D anodes for Li & Na-ion batteries with in-situ & operando scanning probe microscopy
批准号:
2253179
负责人:
金额:
$0.0万
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2019
资助国家:
英国
项目状态:
已结题
起止时间:
2019 至 --
中文摘要
2D、1D和0D材料的独特特性,与它们的块状层状材料分离,引发了一场材料革命。它们具有独特的性能,高表面积,导电性和机械稳定性,并且可以组装成功能薄膜和电极。因此,预计这些材料将在未来的能源生产和储存中发挥巨大作用。最近的研究提出了一种在液体中形成二维纳米片的新方法,[1]和具有独特特征[2]的一维磷烯纳米带(pnr)。通过利用大气控制电化学原子力显微镜(EC-AFM)和相关技术“SECM-AFM”(英国很少有实验室开发的方法),成功的候选人将对二维和一维纳米材料电极在充放电循环过程中表面的纳米级变化进行成像和电化学表征。这将显示材料微/纳米结构变化(膨胀、开裂、表面层形成、金属电镀)对电池性能的影响。当结合x射线光电子能谱(XPS)时,在这个项目中可能没有空气暴露,我们将定量表征相同粒子在不同电荷状态(非原位)的化学成分。这将使我们对材料的化学和机械性能有一个真正有代表性的了解。这些核心技术将由两个机构的各种其他表征工具补充,包括电子显微镜(SEM, TEM), x射线衍射,微拉曼光谱,EIS和广泛的电化学技术。在这个项目中,学生将在合成、电池制造、电化学和先进的储能表征方面发展多学科技能,同时与工业界和学术界建立紧密的联系卡伦,等等……Howard CA,“二维材料的离子溶液”。Nature Chemistry 9.3 (2017)[2] Watts MC et al.…张建军,张建军,张建军,等。荧光纳米带的制备及应用研究进展[j] .自然科学进展,2016,36 (4):557 - 557张等....Miller TS“石墨阳极固-电解质界面形成的Operando电化学原子力显微镜:SEI形态和力学性能的演变”ACS应用程序垫,1944-8244 (2021)
英文摘要
The unique properties of 2D, 1D and 0D materials, isolated from their bulk layered materials, has sparked a materials revolution. They have distinctive properties, high surface areas, electrical conductivity and mechanical stability, and can be assembled into functional films and electrodes. It is therefore anticipated that these materials will play an enormous role in future energy generation and storage. Recent work has presented a new method for forming 2D nanosheets in liquids, [1] and 1D phosperene nano-ribbons (PNRs) with unique characteristics [2].By utilising atmospherically controlled electrochemical atomic force microscopy (EC-AFM)[3] and the related technique 'SECM-AFM' (methods few labs in the UK are set up to exploit) the successful candidate will image and electrochemically characterise nanoscale changes at the surface of 2D and 1D nanomaterial electrodes during their charge-discharge cycle. This will show the effects of material micro/nano-structure change (swelling, cracking, surface layer formation, metal plating) on cell performance. When combined with x-ray photoelectron spectroscopy (XPS), possible in this project without air exposure, we will quantitatively characterise the chemical composition of the same particles at various states of charge (ex-situ). This will enable a truly representative understanding of the materials' chemical and mechanical properties. These core techniques will be complemented by a wide array of other characterisation tools at both institutions including electron microscopy (SEM, TEM), x-ray diffraction, micro-Raman spectroscopy, EIS and a broad range of electrochemical techniques.In this project, the student will develop multidisciplinary skills in synthesis, battery fabrication, electrochemistry and advanced characterisation for energy storage, whilst developing strong links with industry and academia.[1] Cullen PL et al...Howard CA, "Ionic solutions of two-dimensional materials." Nature Chemistry 9.3 (2017)[2] Watts MC et al...Howard CA "Production of phospherene nanoribbons" Nature 568, 216-220 (2019).[3] Zhang et al.... Miller TS "Operando Electrochemical Atomic Force Microscopy of Solid-Electrolyte Interphase Formation on Graphite Anodes: The Evolution of SEI Morphology and Mechanical Properties" ACS App Mat. 1944-8244 (2021)
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
国内基金
海外基金
碳-铁-微生物对滩涂围垦稻田土壤团聚体形成和稳定的调控机制
-
批准号:41977088
-
项目类别:面上项目
-
资助金额:61.0万元
-
批准年份:2019
-
负责人:刘亚龙
-
依托单位: