LumiPhos - Luminescence of functionalized phosphane oxides in structurally fixed environment: Mechanisms, targeted synthesis and application potential
LumiPhos - Luminescence of functionalized phosphane oxides in structurally fixed environment: Mechanisms, targeted synthesis and application potential
批准号:
470576387
负责人:
Professor Dr. Konstantin Karaghiosoff
金额:
$0.0万
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
--
资助国家:
德国
项目状态:
未结题
起止时间:
中文摘要
在一个日益数字化的世界中,开发用于光电应用的发光材料,如显示器中的彩色转换器和发光二极管,是科学研究的主要焦点。通常,这是在试验和错误的基础上完成的,没有在分子水平上解释发光的结构原因。然而,为了有效和有针对性的实施,后者是最重要的。因此,该项目的目标是通过合成、理论和应用科学专业知识的密切合作,实现发光染料的系统开发和优化。研究的重点是功能化的、结构灵活的磷化氧化物及其金属配合物,在初步工作中已被证明是有机发光染料的有前途的候选者。除了具有高稳定性和易于通过廉价和可扩展的合成获得外,这类化合物的主要优势在于其几乎无限的可改性性。这允许通过磷原子取代基的变化来精确调整优选的性质。从综合的角度来看,这也为广泛适用的磷碳键形成的合成方案的进步和优化提供了潜力。结构-发光关系的确定对于有针对性地开发发光染料至关重要。为此,需要进行理论研究。除了研究光致发光机制以及取代基和金属中心变化的影响外,本项目还将开发模拟电致发光的新方法。特别是,理论研究将回答以何种方式需要结构固定来诱导发光。根据所获得的知识,建议合适的合成候选人。为了进行广泛的表征,在以纯形式进行彻底检查的同时,所获得的化合物也将作为光电器件中的发射器进行测试。合适的候选材料将在可打印的油墨中配制,并将生产定制的OLED和彩色转换器器件。通过材料合成、建模和应用的合理结合,本项目有望对发射机理有新的认识,并为新材料的针对性设计提供可能性。
英文摘要
In an increasingly digitized world the development of luminescent materials for optoelectronic applications, such as color converters and light emitting diodes in monitors, lies in the main focus of scientific research. Commonly, this is done on a trial and error basis without an explanation of structural causes of the luminescence on a molecular level. However, for an efficient and targeted implementation the latter is of utmost importance.Therefore, the goal of this project is to achieve a systematic development and optimization of luminescent dyes through a close collaboration of synthetic, theoretical and application-oriented scientific expertise. The focus lies on functionalized, structurally flexible phosphane oxides and their metal complexes, which have proven to be promising candidates for organic luminescent dyes in preliminary works. Besides featuring high stability and being easily accessible through a cheap and well scalable synthesis, the key advantage of this type of compounds lies in their nearly unlimited modifiability. This allows a precise adjustment of preferred properties through a variation of substituents at the phosphorus atom. From a synthetical point of view this also offers potential for advancement and optimization of widely applicable synthetic protocols for phosphorus-carbon bond formation. The determination of structure-luminescence relationships is essential for a targeted development of luminescent dyes. For this, theoretical investigations are needed. In addition to examining the photoluminescence mechanisms and the impact of substituent and metal center variation, new methodologies for the simulation of electroluminescence are to be developed during this project. In particular, theoretical studies will answer in which way structural fixation is needed to induce luminescence. With the gained knowledge suitable candidates for synthesis shall be suggested.For an extensive characterization, while being thoroughly examined in pure form, the obtained compounds will also be tested as emitters in optoelectronic devices. Suitable candidates will be formulated in printable inks, and customized OLED and color converter devices will be produced. Through the rational combination of materials synthesis, modeling and application, a new understanding of emission mechanisms is anticipated in this project, and possibilities for targeted design of new materials will be demonstrated.
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会议论文
Structure Determinations of the Sulfonic Acid Monofluoromethylesters FSO2OCH2F and CF3SO2OCH2F in the Solid and Gaseous Phases
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批准号:463890295
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项目类别:Research Grants
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资助金额:$0.0万
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财政年份:2021
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负责人:Professor Dr. Konstantin Karaghiosoff
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依托单位:
Structure Determinations of Methyl- and Fluoromethyl Nitrate XCH2ONO2 (X = H, F) in the Solid and Gaseous Phases
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批准号:416982996
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项目类别:Research Grants
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资助金额:$0.0万
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财政年份:2018
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负责人:Professor Dr. Konstantin Karaghiosoff
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依托单位:
海外基金