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Organic Materials of Intermediate Dimensions for Optoelectronic Technologies

Organic Materials of Intermediate Dimensions for Optoelectronic Technologies
用于光电技术的中间尺寸有机材料
批准号:
0097611
负责人:
Guillermo Bazan
金额:
$30.3万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2001
资助国家:
美国
项目状态:
已结题
起止时间:
2001-03-01 至 2006-08-31

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中文摘要
翻译
该研究计划的目标是了解如何将共轭有机发色团紧密靠近影响系综的光学和电子性质,以及如何使用分子拓扑结构来控制固态分子的组织。 为了实现这些目标,PI将合成模型化合物并研究其光学,电子和形态学性质。 在资助期间的具体目标是:(1)合成结构确定的双发色团和多发色团分子,这些分子通过对环芳烷框架结合在一起。 靶分子将具有刚性结构,其精确地确定相互作用单元的距离、取向和数量。 (2)将联合收割机光谱研究与量子力学分析结合起来,建立多发色团对环蕃结构中光激发的统一观点。 (3)合成一系列同源的聚集发色团,目的是确定单个单元之间的电子通信不再重要的极限。 这些是真正的有机纳米材料,因为它们的电子描述介于单个发色团和散装材料(即晶体,聚合物薄膜)之间。 (4)合成具有阻碍结晶的几何形状的有机分子。 感兴趣的是研究拓扑如何转化为散装形态。 与聚合物对应物相比,这种类型的材料可以在更大程度上进行纯化,因此在小浓度的污染物不成比例地影响固体中的电荷迁移的情况下可以提供优势。%通过这些研究获得的基础知识将使有机材料的工程用于新兴的光电技术。 这一技术领域很可能在社会上得到广泛应用。 具体实例包括用于显示器应用的有机基发光二极管、薄膜晶体管、固态激光器、用于能量产生的更高效的有机太阳能电池和光电检测器。 发色团间离域的问题在材料设计的范围之外是重要的,因为它在其他科学领域产生了深远的影响,例如光合作用和双链DNA中氧化电荷迁移的机制。
英文摘要
This research program has the goals of understanding how bringing conjugated organic chromophores into close proximity influences the optical and electronic properties of the ensemble and how molecular topology can be used to control the organization of molecules in the solid state. To achieve these goals the PI will synthesize model compounds and study their optical, electronic and morphological properties. Specific objectives during the grant period are: (1) The synthesis of structurally defined bichromophoric and multichromophoric molecules that are held together by the paracyclophane framework. The target molecules will have a rigid structure that precisely determines the distance, orientation and number of interacting units. (2) To combine spectroscopic studies with quantum mechanical analysis to build a cohesive view of photoexcitation in multichromophore paracyclophane structures. (3) The synthesis of a homologous series of aggregated chromophores with the intent of identifying the limit at which the electronic communication between individual units ceases to be important. These are truly organic nanomaterials in that their electronic description intermediate between those of individual chromophores and of bulk materials (i.e. crystals, polymer films). (4) The synthesis of organic molecules with geometries that discourage crystallization. Of interest is to examine how topology translates into bulk morphology. Materials of this type can be purified to a greater extent than polymer counterparts and therefore may offer advantages in situations where a small concentration of contaminants disproportionately affects charge migration in the solid.%%%The fundamental knowledge obtained through these studies will enable the engineering of organic materials for use in emerging optoelectronic technologies. This area of technology is likely to find widespread use in society. Specific examples include organic-based light emitting diodes for display applications, thin film transistors, solid state lasers, more efficient organic solar cells for energy generation and photodetectors. The issue of interchromophore delocalization is significant beyond the confines of materials design because it makes a profound impact in other areas of science, such the mechanism of photosynthesis and oxidative charge migration in double-stranded DNA.
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会议论文
Design and Processing of Conjugated Polymers with High Charge Carrier Mobilities
Conjugated Polyelectrolytes for Optoelectronic Applications
Conjugated Polyelectrolytes for Optoelectronic Applications
ACT/SGER: Novel Conjugated Polymer Structures for Use in Bioterrorism Threat Assays
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海外基金
Capture and Release of Droplets Using Advanced Materials for High Technology Applications
  • 批准号:
    52073127
  • 项目类别:
    面上项目
  • 资助金额:
    58.0万元
  • 批准年份:
    2020
  • 负责人:
    Alidad Amirfazli
  • 依托单位:
Journal of Materials Science & Technology
  • 批准号:
    51024801
  • 项目类别:
    专项基金项目
  • 资助金额:
    24.0万元
  • 批准年份:
    2010
  • 负责人:
    罗东
  • 依托单位: