CAREER: Creating Confined-but-Coupled Nanostructures to Balance Quantum Confinement and Quantum Coupling
CAREER: Creating Confined-but-Coupled Nanostructures to Balance Quantum Confinement and Quantum Coupling
批准号:
1056943
负责人:
Tobias Hanrath
金额:
$46.34万
依托单位:
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-02-01 至 2017-01-31
中文摘要
该CAREER奖由材料研究部的电子和光子材料计划(Electronic and Photonic Materials Program,简称EMPT)和固态和材料化学计划(Solid State and Materials Chemistry Program,简称SSMC)共同资助。技术:该CAREER奖的研究内容是研究具有多个维度的可控连接的半导体纳米结构,以平衡量子限制和量子耦合。作为研究项目基础的概念框架是基于原子晶体和作为人造固体的晶体组件之间的类比。该研究建立在人工原子(E2)能级独立控制,人工键(分子连接器)之间的量子耦合以及人工晶体(超晶格)对称性的最新进展之上。该项目的目的是显着推进知识和理解的可调扩展电子状态耦合的可调组件。它研究了纳米结构间分离的压力调节,纳米结构之间永久人工键的形成,以及半导体纳米结构的加工-结构-性能关系。本研究的总体目标是:(1)通过精确的实验控制系统的无序和耦合,绘制受限但连接的半导体纳米结构的电子相图;(2)通过设计将对相关性质的理解应用于具有电子和光学性质的人造固体的创建,(3)通过开发和测试原型光伏测试结构,将基本的理解转化为技术现实。非技术性:该项目解决了具有高度技术相关性的材料科学主题领域的基础研究问题。本项目研究的纳米结构半导体材料在下一代能源技术中具有潜在的应用前景。该CAREER项目的教育活动旨在:(1)整合从高中到本科课程和项目以及研究生院的研究前沿和学生教育的结果,以及(2)捕捉学生对即将到来的能源问题的热情和参与,鼓励他们作为下一代科学家和工程师的未来贡献。
英文摘要
This CAREER award is jointly funded by the Electronic and Photonic Materials Program (EPM) and the Solid State and Materials Chemistry Program (SSMC), both in the Division of Materials Research.Technical: The research component of this CAREER award is to study semiconductor nanostructures with controlled connections in multiple dimensions that balance quantum confinement and quantum coupling. The conceptual framework underlying the research project is based on analogies between atomic crystals and nanocrystal assemblies as artificial solids. The research builds on recent advances in independent controls of the energy level of the artificial atom (nanocrystal), the quantum coupling across the artificial bond (molecular linker), and the symmetry of the artificial crystal (superlattice). The project aims to significantly advance knowledge and understanding of tunable extended electronic states in coupled nanocrystal assemblies. It studies pressure tuning of inter-nanocrystal separation, formation of permanent artificial bonds between nanostructures, and processing-structure-property relationships of semiconductor nanostructures. The overall objectives of the research are to: (1) map the electronic phase diagram of confined-but-connected semiconductor nanostructures with precise experimental control over the disorder and coupling of the system; (2) apply the understanding of correlated properties in the creation of artificial solids with electronic and optical properties by design, and (3) transform the fundamental understanding into a technological reality by developing and testing prototype photovoltaic test structures.Non-technical: The project addresses basic research issues in a topical area of materials science with high technological relevance. The nanostructured semiconductor materials studied in this project have potential applications in next-generation energy technologies. The educational activities of this CAREER project are designed to: (1) integrate results from the research frontier and education of students ranging from high school, to undergraduate courses and projects, and to graduate school, and (2) capture the enthusiasm and engagement of students in impending energy issues, encouraging their future contributions as the next generation of scientist and engineers.
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