RUI: Developing Organic Charge-Transfer Liquid Crystals: Towards Modular Control of Functional Properties in Laser Re-Writable Organic Medium
RUI: Developing Organic Charge-Transfer Liquid Crystals: Towards Modular Control of Functional Properties in Laser Re-Writable Organic Medium
批准号:
1905211
负责人:
Joseph Reczek
金额:
$17.41万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2019
资助国家:
美国
项目状态:
已结题
起止时间:
2019-08-01 至 2024-07-31
中文摘要
在这个由化学系大分子、超分子和纳米化学项目资助的项目中,丹尼森大学化学和生物化学系的Joseph J. Reczek教授正在准备一类新的有机材料,用于数据存储和信息加密。这些材料的性质介于液体和固体之间,由含有芳香环的分子构成。在有机化学中,芳香分子非常稳定,不易与其他物质发生反应。由于化学键是由电子组成的,芳香环能够在光学数据存储中导电和光,类似于分子尺度的电线。Reczek教授设计并建造了一个互动式教育展览“太阳能站”。他还组织并举办了一个动手的“化学挑战”比赛,中学生和高中生在舔县的作品博物馆,俄亥俄州。他还在丹尼森大学(Denison University)、The Works和俄亥俄州立大学(Ohio State University)纽瓦克分校之间建立了一个联合项目,邀请当地10-12岁的孩子和他们的父母到校园参加STEM讲座和实验室演示。本研究的重点是发现和开发一种新兴的超分子有机材料,芳香电荷转移液晶(act - lc)的基本新性质和化学成分。具体而言,通过三个主要目标来推进新型act - lc中光电功能特性、材料可调性和受控分子组装的研究。第一个目标集中在系统设计、合成和组合/组装一系列芳香分子的模块化方式,以更好地理解和预测组分结构与ACT-LC体性质之间的关系,包括电荷转移(CT)持续性、扩展CT吸收范围(NIR)和激光可写光学二色性的分辨率。在第二个目标中,具有大分子偶极子的芳香成分被纳入act - lc中,以对准正交材料,用于场效应应用和增强可写分辨率。在最后一个目标中,新兴的act - lc被探索作为光学数据存储和信息加密新方法的有机介质。本研究为本科生提供超分子和纳米化学方面的训练。该项目还具有开发用于技术应用的创造性功能超分子纳米材料的潜力。该奖项反映了美国国家科学基金会的法定使命,并通过使用基金会的知识价值和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
In this project funded by the Macromolecular, Supramolecular and Nanochemistry Program in the Division of Chemistry, Professor Joseph J. Reczek of the Department of Chemistry and Biochemistry at Denison University is preparing a new class of organic materials for potential use in data storage and information encryption. These materials have properties between those of liquids and solids and are constructed from molecules that contain aromatic rings. In organic chemistry, aromatic molecules are very stable and do not readily react with other substances. Since chemical bonds consist of electrons, aromatic rings are capable of conducting electricity and light in optical data storage, similar to molecular-scale wires. Professor Reczek designs and constructs an interactive educational exhibit, "The Solar Station". He also organizes and conducts a hands-on "Chemistry Challenge" competition for both middle and high school students at The Works Museum in Licking County, Ohio. He has also established a joint program between Denison University, The Works and The Ohio State University Newark branch to bring local 10-12 year-olds and their parents onto campuses for STEM lectures and laboratory demonstrations.This research focuses on the discovery and development of fundamentally new properties and chemistries in an emerging class of supramolecular organic materials, aromatic charge-transfer liquid crystals (ACT-LCs). Specifically, studies to advance the emergence of optoelectronic functional properties, material tunability, and controlled molecular assembly in new ACT-LCs are conducted through three main objectives. The first objective concentrates on the systematic design, synthesis, and combination/assembly of a series of aromatic molecules in a modular fashion to better understand and predict relationships between component structure and ACT-LC bulk properties including charge-transfer (CT) persistence, extended CT absorption range (NIR), and resolution of laser-writable optical dichroism. In the second objective, aromatic components having a large molecular dipole are incorporated into ACT-LCs to align orthogonal materials for field-effect applications and enhanced writable resolution. In the last objective, emerging ACT-LCs are explored as organic media for new methods of optical data storage and information encryption. This research provides training for undergraduate students in supramolecular and Nanochemistry. The project also has the potential to develop creative functional supramolecular nanomaterials for technological applications.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
MRI: Acquisition of a powder X-ray diffractometer (XRD) system to enhance research at a primarily undergraduate institution.
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批准号:1531482
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项目类别:Standard Grant
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资助金额:$10.53万
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财政年份:2015
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负责人:Joseph Reczek
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依托单位:
RUI: Developing Organic Photoconductive Materials through Modular Design of Self-Assembling Components
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批准号:1152965
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项目类别:Continuing Grant
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资助金额:$20.0万
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财政年份:2012
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负责人:Joseph Reczek
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依托单位:
海外基金