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DMREF: Collaborative Research: HybriD3: Discovery, Design, Dissemination of Organic-Inorganic Hybrid Semiconductor Materials for Optoelectronic Applications

DMREF: Collaborative Research: HybriD3: Discovery, Design, Dissemination of Organic-Inorganic Hybrid Semiconductor Materials for Optoelectronic Applications
DMREF:合作研究:HybriD3:用于光电应用的有机-无机混合半导体材料的发现、设计和传播
批准号:
1728921
负责人:
Wei You
金额:
$56.25万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2017
资助国家:
美国
项目状态:
已结题
起止时间:
2017-10-01 至 2022-09-30

项目摘要

项目成果

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中文摘要
翻译
非技术描述:这个项目被称为“HybriD3”,旨在加速设计、发现和传播新的晶体有机-无机混合半导体。要考虑的材料通常由形成连接框架的合适无机半导体组成,目标有机元件集成在其中。虽然有机材料具有独特的属性,包括重量轻,机械灵活性和可能的强光发射,但无机系统具有与优异的半导体和光学特性相关的独特优势。值得注意的是,虽然传统的半导体(例如硅)是严格无机的,但有机-无机杂化物开辟了合成有机化学的完整武器库,可以调整和改进所得到的材料和相关特性。具体来说,目前的项目针对所谓的有机-无机(或混合)钙钛矿的范例,旨在确定发光二极管的新材料机会,更好地适用于解决节能照明和成本效益制造技术的重要目标。然而,待探索的材料空间是通用的,通用的,尚未几乎详尽地绘制,并且可能会暴露具有非常不同的,前所未有的和可调功能的材料,因为研究的重点是理解以前未探索的有机和无机混合成分之间的相互作用。传播的关键成果将是一个全面的,易于浏览的现有,预测和新合成的有机-无机杂化物数据库,以确保在目前聚集在这类材料周围的更广泛的研究人员社区中加速这一材料领域的发展。技术描述:HybriD3是一个综合的,多管齐下的努力,利用理论和计算,合成,光谱学和光电子器件原型。该活动将创造和利用技术,更有效地计算预测有机-无机杂化材料,其载流子性质和激发,用于目标合成和确定材料前景的表征。该项目还将针对开发的混合材料进行概念验证设备(主要是光发射)演示。因此,它将使人们更好地理解关键的物理过程,如载流子输运、有机和无机子组分之间的电荷/能量转移、载流子重组,以及如何通过细化结构、合成和/或沉积薄膜或块状晶体来操纵这些性质。计划中的数据库将作为整个社区的首选资源发挥长期作用。pi还将推动HybriD3数据纳入更广泛的社区数据库,如Materials Project、aflowlib或NoMaD数据存储库。最后,可持续的数据传播将通过与行业领导者施普林格Materials的合作来确保,将HybriD3数据纳入他们的产品中。pi还计划将hybrid3开发的软件和数据库作为开源发布,并围绕该项目建立一个用户社区,确保感兴趣的研究人员能够为hybrid3开发的代码库做出贡献。这将使该项目得到更广泛的发展。高级网络基础设施办公室的软件集群对这方面特别感兴趣,该办公室为该奖项提供了共同资金。
英文摘要
Non-technical Description: This project, called "HybriD3", aims to accelerate the Design, Discovery, and Dissemination of new crystalline organic-inorganic hybrid semiconductors. The materials to be considered generally consist of a suitable inorganic semiconductor that forms a connected framework, into which targeted organic components integrate. While organic materials have unique attributes, including light weight, mechanical flexibility and possible strong light emission, inorganic systems offer their own unique strengths related to excellent semiconducting and optical characteristics. Notably, while traditional semiconductors (e.g., silicon) are strictly inorganic, organic-inorganic hybrids open up the full arsenal of synthetic organic chemistry for tuning and refining the resulting materials and associated properties. Specifically, the current project targets the paradigm of so-called organic-inorganic (or hybrid) perovskites, aiming to identify new materials opportunities for light-emitting diodes, with better suitability for addressing the important target of energy-efficient lighting and cost-effective manufacturing techniques. However, the materials space to be explored is general, versatile, not yet nearly exhaustively charted, and will likely expose materials with very different, unprecedented and tunable functionality, as the research focuses on understanding previously unexplored interactions between the organic and inorganic hybrid components. A key deliverable for dissemination will be a comprehensive, easily-browsable database of existing, predicted and newly synthesized organic-inorganic hybrids to ensure accelerated development of this materials space among the wider community of researchers now converging around this materials class.Technical Description: HybriD3 is an integrated, multi-pronged effort, leveraging theory and computation, synthesis, spectroscopy and optoelectronic device prototyping. The activity will create and leverage techniques for more effective computational predictions of organic-inorganic hybrid materials, their carrier properties and excitations, for targeted synthesis and characterization of identified materials prospects. The project will also target proof-of-concept device (primarily light emission) demonstration for the developed hybrid materials. It will thus enable better understanding of key physical processes such as carrier transport, charge/energy transfer between the organic and inorganic sub-components, carrier recombination, and how these properties can be manipulated by refining structure, synthesis and/or deposition of the thin-films or bulk crystals. The planned database will play a long-term role as a go-to resource for an entire community. The PIs will also promote the HybriD3 data for inclusion in broader community databases such as the Materials Project, aflowlib, or the NoMaD Data Repository. Finally, sustainable data dissemination will be ensured by a collaboration with industry leader Springer Materials, to include the HybriD3 data in their product. The PIs also plan to release the HybriD3-developed software and database as open source and build a user community around the project by ensuring that interested researchers are able to contribute to the HybriD3-developed codebase. This will allow a wider growth of the project. This aspect is of special interest to the software cluster in the Office of Advanced Cyberinfrastructure, which has provided co-funding for this award.
期刊论文(10)
专著(0)
科研奖励(0)
会议论文
All-electron ab initio Bethe-Salpeter equation approach to neutral excitations in molecules with numeric atom-centered orbitals
用于具有数字原子中心轨道的分子中性激发的全电子从头 Bethe-Salpeter 方程方法
DOI: 10.1063/1.5123290
发表时间: 2020
期刊: Journal of Chemical Physics
影响因子: 4.4
作者: [Chi Liu, Jan Kloppenburg, Yi Yao, Xinguo Ren, Heiko Appel, Yosuke Kanai, Volker Blum]
通讯作者: Volker Blum
DOI: 10.1103/physrevlett.121.146401
发表时间: 2018-10-04
期刊: PHYSICAL REVIEW LETTERS
影响因子: 8.6
作者: [Liu, Chi, Huhn, William, Blum, Volker]
通讯作者: Blum, Volker
DOI: 10.1038/s41467-019-08980-x
发表时间: 2019-03-20
期刊: NATURE COMMUNICATIONS
影响因子: 16.6
作者: [Hu, Jun, Oswald, Iain W. H., You, Wei]
通讯作者: You, Wei
DOI: 10.1039/c9mh00366e
发表时间: 2019-10-01
期刊: MATERIALS HORIZONS
影响因子: 13.3
作者: [Dunlap-Shohl, Wiley A., Barraza, E. Tomas, Mitzi, David B.]
通讯作者: Mitzi, David B.
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Rational Design of Conjugated Polymers with Cleavable Side Chains to Achieve Morphological Stability of Polymer Solar Cells
Uncovering Energy and Charge Transport Mechanisms in Organic-Inorganic Hybrid Perovskite Quantum Wells with Nonlinear Action Spectroscopies
MRI: Acquisition of a Modern Single Crystal X-ray Diffractometer for Research and Education
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