Synthesis and Assembly 2D Heterostructured Hybrid Stacks
Synthesis and Assembly 2D Heterostructured Hybrid Stacks
批准号:
2200366
负责人:
Vladimir Tsukruk
金额:
$52.0万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2022
资助国家:
美国
项目状态:
未结题
起止时间:
2022-09-01 至 2025-08-31
中文摘要
在化学系大分子,超分子和纳米化学(MSN)计划的支持下,格鲁吉亚理工学院的弗拉基米尔Tsukruk和林志群教授将开发新的二维纳米片合成方法,并研究纳米片堆叠的组装和性能。 由于金属原子和有机分子物质的特殊乐高式交错,在各个层之间具有受控的间隙,这些2D堆叠可以具有用于能量存储应用的有用的离子传输、电荷存储和界面化学性质,例如可以在轻质电池技术中找到应用。 该研究项目将为研究生和本科生提供跨学科的研究培训,包括来自服务不足群体的学生。 Tsukruk和Lin实验室将建立一个生活和职业小型工作坊系列,为研究生和本科生提供机会,与Tsukruk教授以前的学生和博士后在工业,国家实验室和学术界工作的经验进行互动和学习。具体来说,Tsukruk和Lin实验室的这个合作研究项目将专注于MXenes纳米片的研究(通式为Mn+1XnTx,其中M是过渡金属,X是碳和/或氮,Tx是表面官能团(例如,OH、O或F),并且n=1、2或3)和金属氧化物(V2 O 5、SnO 2和NiO)。 该研究小组将开发MXene/MOx纳米片的合成方法,该方法由具有氧化稳定性,间隙控制和组装能力的有组织反应模板支持。 聚合物和有机物质与无机纳米片的整合可以导致可控的层间空间和增加的离子可及性和结构稳定性。 本项目的三大研究任务包括:1)以功能化纳米片为模板,通过合理设计二维MX/MOx二元和三元叠层结构,合成表面化学性质、对称性和尺寸可控的功能化MXene; 2)组装和制备由有机-无机复合纳米片组成的水平叠层和垂直排列叠层;以及3)通过利用原位中子反射率和掠角广角X射线散射的独特方法,利用原位高分辨率扫描探针显微镜实时监测离子输运,以了解界面化学、受限离子输运、离子壁相互作用的基本特征,和组织-该奖项反映了NSF的法定使命,并通过使用基金会的智力价值和更广泛的评估被认为值得支持。影响审查标准。
英文摘要
With the support of the Macromolecular, Supramolecular and Nanochemistry (MSN) program in the Division of Chemistry, Professors Vladimir Tsukruk and Zhiqun Lin of Georgia Institute of Technology will develop novel synthetic approaches to two-dimensional nanosheets and study the assembly and properties of the nanosheet stacks. Due to special Lego-like staggering of metal atoms and organic molecular species with controlled gaps between individual layers, these 2D stacks may possess useful ion transport, charge storage, and interfacial chemical properties for energy storage applications as for example might find application in lightweight battery technology. The research project will provide interdisciplinary research training to graduate and undergraduate students, including students from underserved groups. A life and career mini-workshop series will be established to provide opportunities for graduate and undergraduate students to interact with and learn from the experience of Professor Tsukruk’s former students and post-docs working in industry, national laboratories, and academia.Specifically, this collaborative research project by the Tsukruk and Lin laboratories will focus on the study of nanosheets of MXenes (with a general formula of Mn+1XnTx, where M is a transition metal, X is carbon and/or nitrogen, Tx is the surface functional group (e.g., OH, O or F), and n=1, 2 or 3) and metal oxides (V2O5, SnO2 and NiO). The research team will develop synthetic approaches to MXene/MOx nanosheets supported by organized reactive templates with oxidation stability, gap control, and assembly abilities. The integration of polymers and organic species with inorganic nanosheets may result in a controllable interlayer space and increased ion accessibility and structural stability. Three major research task of this project include: 1) synthesis of functionalized MXenes with tailored surface chemistry, symmetry, and dimensions by focusing on the rational design of heterostructured 2D MX/MOx binary and ternary stacks with functionalized nanosheets as pre-programmed reactive templates; 2) assembly and fabrication of both horizontal stacks and vertically aligned stacks composed of organic-inorganic composite nanosheets; and 3) real-time monitoring of ion transport by utilizing unique methods for in-situ neutron reflectivity and grazing-angle wide-angle X-ray scattering with in-situ high-resolution scanning probe microscopy for understanding fundamental characteristics of interfacial chemistry, confined ion transport, ion-walls interactions, and organization-transport relationships.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
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会议论文
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