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Synthesis, Characterization, and Applications of Highly Efficient Far-Red to Near Infra-Red Emissive β-Dicyanodistyrylbenzene Derivatives

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dc.contributor.advisor박수영-
dc.contributor.author김민아-
dc.date.accessioned2017-07-14T03:15:46Z-
dc.date.available2017-07-14T03:15:46Z-
dc.date.issued2014-02-
dc.identifier.other000000018331-
dc.identifier.urihttps://hdl.handle.net/10371/123432-
dc.description학위논문 (석사)-- 서울대학교 대학원 : 재료공학부(하이브리드 재료), 2014. 2. 박수영.-
dc.description.abstractIn the last decades, the immense interest in highly fluorescent π-conjugated compounds which emit deep red to near infrared (NIR) in the solid state has been driven by their utilities toward advanced photonic applications such as organic light-emitting diodes, fluorescent chemosensors, organic solid-state lasers. However, most of organic red emitting fluorophores suffer from aggregation-caused quenching due to their characteristics of strong π–π stacking, dipole-dipole interaction or donor (D)-acceptor (A) charge transfer interaction. Thus, the development of strongly far-red to NIR emitting materials in the solid state is still challenging.
Recently, highly fluorescent solid-state emitters based on 2Z,2'Z-3,3'(or2,2)-(2,5-dimethoxy-1,4-phenylene)bis(2(or3)-phenylacrylonitrile (MODCS) have been explored and contributed to establish the relationship between the molecular arrangement and the corresponding fluorescence features on aggregation-induced enhanced emission (AIEE) depending on the position of the pendant cyano group on the stilbene.
As an extended work for further development of β-MODCS exhibiting strong deep red-NIR fluorescence, I herein report the synthesis of the D-A-D-A-D type β-dicyanodistyrylbenzene (β-DCS) derivatives that have various N-amine moieties (β-MODEADCS, β-MODBADCS, β-MODPADCS, β-EODEADCS) with emission maximum peaks in the range of 650 nm and 718 nm. Among them, β-MODEADCS especially exhibits emission in the Near Infra-Red region with quite good quantum efficiency (ФFL = 0.42). These unique highly emissive properties in the solid-state were thoroughly investigated by UV-Vis spectroscopy, photoluminescence spectroscopy, fluorescence lifetime measurement, electrochemical measurement, and single crystal X-ray analysis. Furthermore, we also present β-dicyanodistyrylbenzene based highly red fluorescent amphiphilic molecules β-EODEADCS and β-wedge DEADCS. Their optical properties and intriguing nanostructures in water were obtained by DLS, SEM, cryo-TEM experiments and UV-Vis spectroscopy. Based on the understanding of their optoelectrical characteristics, we demonstrated p-type single crystal organic field-effect transistors (SC-OFETs) using high crystalline β-MODEADCS and bio-imaging with self-assembled nanoparticles of β-EODEADCS.
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dc.description.tableofcontentsContents

Abstract i
Contents iv
List of Tables vii
List of Schemes viii
List of Figures ix


Chapter 1 Introduction 1
1.1 Highly Efficient Solid-state Emissive π-conjugated Organic Materials 1
1.2 Aggregation-induced enhanced emission(AIEE) 4
1.2.1 Organic field-effect transistors (OFETs) 7
1.2.2 Fluorescent optical recording media 10
1.2.3 Biological imaging 12
1.3 Characteristics and Significance of Far-red Fluorophores 14
1.4 Research objective 16
1.5 Bibliography 17


Chapter 2 Synthesis and Characterization of Stimuli-Responsive β-Dicyanodistyrylbenzene
Derivatives exhibiting Highly Efficient Solid-state Emission in the Far-red to Near Infra-Red Region
20
2.1 Design concept and Target materials 20
2.2 Experimental 25
2.2.1 Synthesis 25
2.2.2 Sample preparation 29
2.2.3 Spectroscopic characterization 30
2.2.4 X-ray and Thermal analysis 31
2.2.5 Quantum chemical calculation 31
2.3 Results and Discussion 32
2.3.1 Optical properties in various phases 32
2.3.2 Single crystal analysis of β-MODEADCS 41
2.3.3 Luminescence switching by Mechanical and Thermal stimuli 46
2.3.4 Fabrication and Measurement of SC-OFETs 52
2.4 Conclusion 56
2.5 Bibliography 57


Chapter 3 Novel Far-Red Fluorescent Molecules forming Self-assembled Nanostructure in Aqueous Systems: Introducing Ethyleneoxide Groups to the β-DCS Core 59
3.1 Design concept and Target materials 59
3.2 Experimental 62
3.2.1 Synthesis 62
3.2.2 Spectroscopic characterization 67
3.2.3 Thermal analysis and Morphological analysis 68
3.2.4 Quantum chemical calculation 69
3.3 Results and Discussion 70
3.3.1 Photophysical property 70
3.3.2 Fabrication of self-assembled nanostructures and Morphology
76
3.3.3 In vitro Cell imaging 81
3.4 Conclusion 85
3.5 Bibliography 87




Abstract in Korean 88

List of Presentations 91
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dc.formatapplication/pdf-
dc.format.extent2007210 bytes-
dc.format.mediumapplication/pdf-
dc.language.isoen-
dc.publisher서울대학교 대학원-
dc.subject고효율의 근적외선 영역의 발광특성-
dc.subject.ddc620-
dc.titleSynthesis, Characterization, and Applications of Highly Efficient Far-Red to Near Infra-Red Emissive β-Dicyanodistyrylbenzene Derivatives-
dc.typeThesis-
dc.description.degreeMaster-
dc.citation.pagesiv, 91-
dc.contributor.affiliation공과대학 재료공학부(하이브리드 재료)-
dc.date.awarded2014-02-
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