CAREER: Design Strategies for High-Performance Bismuth- and Lanthanide-Based Single-Molecule Magnets
职业:高性能铋基和镧系单分子磁体的设计策略
基本信息
- 批准号:2339595
- 负责人:
- 金额:$ 77万
- 依托单位:
- 依托单位国家:美国
- 项目类别:Continuing Grant
- 财政年份:2024
- 资助国家:美国
- 起止时间:2024-03-01 至 2029-02-28
- 项目状态:未结题
- 来源:
- 关键词:
项目摘要
With support from the Chemical Structure, Dynamics & Mechanisms-B Program of the Chemistry Division, Selvan Demir of the Department of Chemistry at Michigan State University is employing organometallic chemistry to develop new classes of molecular compounds with interesting magnetic properties, known as single-molecule magnets (SMMs). The exciting potential applications of SMMs span from high-density information storage, quantum computing, to spin-based electronic devices, but hinge on increasing the spin-reversal barrier, magnetic blocking temperature, and coercive field - all metrics that describe the molecule’s ability to retain information after removing an applied external magnetic field. This project will develop new rational design strategies to engender new types of SMMs comprising bismuth and the paramagnetic lanthanides. The combination of the electronic features of bismuth and lanthanide sites could usher in a new generation of SMMs with unparalleled performance characteristics. The project tightly integrates academic research and education in several ways to provide the highest level of education to the public and students at all stages. This includes a creative approach “Science Meets Art” that utilizes the power of visualization to facilitate entry into the elaborate spin-based science subject where exhibitions in a gallery and museums are planned. The development of an experimental quantum information science course accompanied with a magnetism kit is also encompassed alongside lectures at local schools.Single molecule magnets (SMMs) exhibit a barrier to spin reversal and in the absence of quantum tunneling, magnetic hysteresis similar to bulk magnets. Therefore, one of the most important but also challenging goals is to increase simultaneously spin ground state and magnetic anisotropy, critical goals in the pursuit of strongly coupled multinuclear SMMs. Strong coupling is required as it suppresses fast relaxation pathways such as quantum tunneling which is needed for high-temperature SMMs. In addition, new chemical space must be explored to advance the field. Accordingly, this project aims to develop new rational design strategies to engender (i) the first bismuth-centered SMMs, (ii) new lanthanide SMMs containing bismuth radicals, (iii) new redox-active heterocyclic ligands composed of bismuth and nitrogen donors, (iv) the first multinuclear SMMs consisting of bismuth-nitrogen heterocyclic bridges, and (v) the first multinuclear SMMs containing bismuth-nitrogen heterocyclic radicals. From a fundamental point of view, the thorough study of magnetic coupling pathways through diamagnetic and paramagnetic bridges has the potential to advance knowledge of relaxation dynamics occurring in SMMs, and in so doing, pave the way for future SMM design.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.
在化学系化学结构、动力学和机理-B 项目的支持下,密歇根州立大学化学系的 Selvan Demir 正在利用有机金属化学来开发具有有趣磁性的新型分子化合物,称为单分子SMM 令人兴奋的潜在应用涵盖从高密度信息存储、量子计算到基于自旋的电子设备,但取决于增加自旋反转势垒、磁阻挡温度、和矫顽力场——描述分子在去除外加磁场后保留信息的能力的所有指标,该项目将开发新的合理设计策略,以产生包含铋和顺磁性镧系元素的电子特征的新型SMM。铋和镧系元素位点可能会带来具有无与伦比的综合性能特征的新一代 SMM,该项目以多种方式将学术研究和教育紧密结合起来,为人们提供最高水平的教育。这包括一种创造性的方法“科学遇见艺术”,利用可视化的力量来促进进入精心设计的基于旋转的科学主题,其中计划在画廊和博物馆举办展览。当地学校的讲座还包括配有磁性套件的量子信息科学课程。单分子磁体 (SMM) 表现出自旋反转势垒,在没有量子隧道的情况下,磁滞现象与块体磁体类似。最重要但也最具挑战性的目标之一是同时增加自旋基态和磁各向异性,这是追求耦合多核SMM的关键目标,因为它抑制了快速弛豫路径,例如高-所需的量子隧道效应。此外,必须探索新的化学空间来推进该领域,因此,该项目旨在开发新的合理设计策略,以产生(i)第一个以铋为中心的SMM,(ii)新的。含有铋自由基的镧系元素SMM,(iii)由铋和氮供体组成的新型氧化还原活性杂环配体,(iv)第一个由铋氮杂环桥组成的多核SMM,以及(v)第一个含有铋氮杂环的多核SMM从基本角度来看,通过抗磁和顺磁桥的磁耦合路径的深入研究具有潜力。增进对 SMM 中发生的松弛动力学的了解,从而为未来的 SMM 设计铺平道路。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影响审查标准进行评估,被认为值得支持。
项目成果
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Selvan Demir其他文献
Guanidinate Rare-Earth Tetraphenylborate Complexes and Their Prospects in Single-Molecule Magnetism
胍基稀土四苯硼配合物及其单分子磁性研究前景
- DOI:
- 发表时间:
2023 - 期刊:
- 影响因子:0
- 作者:
Francis Delano;Selvan Demir - 通讯作者:
Selvan Demir
Exchange coupling and magnetic blocking in dilanthanide complexes bridged by the multi-electron redox-active ligand 2,3,5,6-tetra(2-pyridyl)pyrazine
多电子氧化还原活性配体 2,3,5,6-四(2-吡啶基)吡嗪桥联的二镧系配合物中的交换耦合和磁阻断
- DOI:
10.1039/c4sc02154a - 发表时间:
2014-10-28 - 期刊:
- 影响因子:8.4
- 作者:
Selvan Demir;Michael Nippe;Miguel I Gonzalez;J. Long - 通讯作者:
J. Long
Slow Magnetic Relaxation in a Dysprosium Ammonia Metallocene Complex.
镝氨茂金属配合物中的慢磁弛豫。
- DOI:
10.1021/acs.inorgchem.7b02390 - 发表时间:
2017-11-22 - 期刊:
- 影响因子:4.6
- 作者:
Selvan Demir;Monica D Boshart;J. Corbey;D. Woen;Miguel I Gonzalez;J. Ziller;Katie R. Meihaus;J. Long;W. Evans - 通讯作者:
W. Evans
From unprecedented 2,2′-bisimidazole-bridged rare earth organometallics to magnetic hysteresis in the dysprosium congener
从前所未有的 2,2-双咪唑桥联稀土有机金属到镝同系物的磁滞现象
- DOI:
10.1039/d3qi00546a - 发表时间:
2024-09-14 - 期刊:
- 影响因子:7
- 作者:
Florian Benner;Selvan Demir - 通讯作者:
Selvan Demir
Substituent Effects on Exchange Coupling and Magnetic Relaxation in 2,2'-Bipyrimidine Radical-Bridged Dilanthanide Complexes.
- DOI:
10.1021/jacs.0c10612 - 发表时间:
2020-12-02 - 期刊:
- 影响因子:15
- 作者:
C. Gould;E. Mu;Veacheslav Vieru;Lucy E Darago;Khetpakorn Chakarawet;Miguel I Gonzalez;Selvan Demir - 通讯作者:
Selvan Demir
Selvan Demir的其他文献
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