博碩士論文 100226008 完整後設資料紀錄

DC 欄位 語言
DC.contributor光電科學與工程學系zh_TW
DC.creator李展進zh_TW
DC.creatorChan-chin Lien_US
dc.date.accessioned2014-8-20T07:39:07Z
dc.date.available2014-8-20T07:39:07Z
dc.date.issued2014
dc.identifier.urihttp://ir.lib.ncu.edu.tw:444/thesis/view_etd.asp?URN=100226008
dc.contributor.department光電科學與工程學系zh_TW
DC.description國立中央大學zh_TW
DC.descriptionNational Central Universityen_US
dc.description.abstract本論文以奈米球微影術製作週期性銀粒子陣列之表面增強拉曼散射基板。首先藉由文獻得知改變週期性銀粒子的大小、結構高度及形狀等各類製程參數,其共振波長位移之趨勢。實驗上以加熱基板的方式,使銀粒子形狀改變並量測其吸光譜,得到共振波長紅移並與文獻相符;另外選用銀粒子陣列共振波長與綠光雷射波長相近的位置進行拉曼量測,且明顯得到R6G分子的拉曼光譜訊號,證明此結構有足夠的增強能力且適用於分子檢測上;最後利用TCSPC系統量測R6G在不同基板上的螢光生命期並探討其與增強係數的關係zh_TW
dc.description.abstractSurface enhanced Raman scattering (SERS) active silver periodic particle array (PPA) substrates are fabricated by nanosphere lithographic technique. Base on the reported results in literatures, the shift of plasmon resonance wavelength can be manipulated via varying the fabrication parameters such as particle size, thickness and shape. Experimentally, thermally induced shape change was observed which results in the red shift of the resonant wavelength. The result is in close agreement with that obtained by Van Duyne. In addition, a local site on the PPA with resonance wavelength close to =532 nm was chosen to examine the resonant Raman response from model molecule Rhodamine 6G (R6G). The measured Raman spectrum, clearly reveals the vibrational fingerprint of the R6G molecule, demonstrating the enhancement capability of the fabricated substrate for molecular analysis substrate. Finally, fluorescence life time measurement of R6G on various substrates was conducted by TCSPC system, with the aim to justify the interplay between substrate quenching effect and the enhancement factor of R6G.en_US
DC.subject奈米球微影術zh_TW
DC.subject周期性銀粒子陣列zh_TW
DC.subject表面增強拉曼散射zh_TW
DC.subject表面電漿共振zh_TW
DC.subjectnanosphere lithographic techniqueen_US
DC.subjectperiodic particle arrayen_US
DC.subjectSurface Enhanced Raman Scatteringen_US
DC.subjectSurface Plasmon Resonanceen_US
DC.title以奈米球微影術製作表面電漿增強拉曼基板zh_TW
dc.language.isozh-TWzh-TW
DC.titleSurface enhanced Raman active substrate fabricated by nanosphere lithographic techniqueen_US
DC.type博碩士論文zh_TW
DC.typethesisen_US
DC.publisherNational Central Universityen_US

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