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dc.contributor.author소정현-
dc.creator소정현-
dc.date.accessioned2016-08-25T02:08:31Z-
dc.date.available2016-08-25T02:08:31Z-
dc.date.issued2007-
dc.identifier.otherOAK-000000027931-
dc.identifier.urihttps://dspace.ewha.ac.kr/handle/2015.oak/175286-
dc.identifier.urihttp://dcollection.ewha.ac.kr/jsp/common/DcLoOrgPer.jsp?sItemId=000000027931-
dc.description.abstract1장에서는 형광의 원리에 대하여 간단히 설명하고, 금속 이온 검출을 위한 Fluorimetric 방법에 대하여 소개하였다. Fluorescent chemosensor 로서 사용되는 fluorescein 유도체와 rhodamine B base 유도체에 대하여 간단히 소개하였다. 2장에서는 pH 7.4 수용액에서 Fluorescent chemosensor 로 이용될 수 있는 두 가지의 상대적으로 단순한 fluorescein 유도체를 합성하고 그것의 결정 구조를 분석하였다. 이 구조적으로 유사한 Fluorescent chemosensor 는 각각 morpholine 과thiomorpholine 을 각각 binding unit 으로 가지고 있고, Ag^(+) 이온에 대하여 선택성을 보였다. 두 가지 Fluorescent chemosensor 에 Ag^(+) 이온을 첨가하였을 때, 다른 결합메커니즘 때문에 완전히 다른 형광변화가 관찰될 수 있었다. 3장에서는 금속 이온의 검출을 위한 urea group 을 포함하는 rhodamine 유도체를 합성하였다. 이것은 Hg^(2+) 이온에 대한 Fluorescent chemosensor 로 연구되었다. 특별히 dimeric 구조를 가지는 센서 2는 Hg^(2+) 이온을 첨가하였을 때, 형광 증가와 색깔 변화를 관찰할 수 있었다. Hg^(2+) 이온에 대한 결합 상수는 3.2×10^(5)M^(-1)로 계산되었다.;Chapter Ⅰ : Principle of fluorescence was explained briefly. Fluorimetric Methods for Metal Ion Detection was introduced. Rhodamin B Base and Fluorescein derivatives have been used as fluorescent chemosensors. Chapter Ⅱ : Two relatively simple fluorescein derivatives were prepared, and the crystal structures of these compounds are also presented. These two structurally similar compounds, which have morpholine and thiomorpholine as a binding unit, showed an extremely high selectivity towards Ag^(+) ion through a relatively different binding mechanism than the previously reported fluorescein derivatives. Furthermore, upon the addition of Ag^(+) ions, these two chemosensors showed completely different fluorescent changes through different binding modes. Chapter Ⅲ : New rhodamine derivatives bearing urea group have been synthesized for the detection of metal ions. Especially, the dimeric system 2 displayed a selective fluorescent enhancement and colorimetric change upon the addition of Hg^(2+), in which the spirolactam (nonfluorescent) to ring opened amide (fluorescent) process was utilized. The association constant of 2 with Hg^(2+) was calculated as 3.2×10^(5)M^(-1).-
dc.description.tableofcontentsChapter Ⅰ Introduction of Fluorescent Chemosensors = 2 Ⅰ-1. Brief Introduction of Fluorescence = 3 Ⅰ-2. Fluorimetric Methods for Metal Ion Detection = 5 Ⅰ-3. Fluorescein and Rhodamine B Base Derivatives as Fluorescent Chemosensors = 12 Ⅰ-4. References = 14 Chapter Ⅱ Simple Fluorescein Derivatives as Highly Selective Fluorescent Chemosensors for Silver Ion in Aqueous Solution: Different Binding Mechanisms from Similar Structures = 16 Ⅱ-1. Introduction = 17 Ⅱ-2. Results and Discussion = 18 Ⅱ-3. Conclusion = 28 Ⅱ-4. Experimental Section = 29 Ⅱ-5. References = 32 Chapter Ⅲ Rhodamine Urea Derivatives as Fluorescent Chemosensors for Hg^(2+) = 38 Ⅲ-1. Introduction = 39 Ⅲ-2. Results and Discussion = 40 Ⅲ-3. Conclusion = 44 Ⅲ-4. Experimental Section = 45 Ⅲ-5. Reference = 47 국문 초록 = 53-
dc.formatapplication/pdf-
dc.format.extent2150196 bytes-
dc.languageeng-
dc.publisher이화여자대학교 대학원-
dc.subject.ddc620-
dc.titleFluorescent Chemosensors for Silver(Ⅰ) and Mercury(Ⅱ)-
dc.typeMaster's Thesis-
dc.format.pageⅵ, 53 p.-
dc.identifier.thesisdegreeMaster-
dc.identifier.major대학원 나노과학부-
dc.date.awarded2007. 8-
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일반대학원 > 화학·나노과학과 > Theses_Master
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