孫萌濤教授,主要從事基于表面等離激元增強的分子拉曼光譜的實驗和理論研究。研發(fā)高真空針尖增強拉曼和熒光光譜儀,實現(xiàn)目標(biāo)分子拉曼光譜的超靈敏檢測,并揭示表面等離激元增強拉曼光譜的物理和化學(xué)機制。以通訊作者(或一作者)在國際重要學(xué)術(shù)期刊上發(fā)表SCI 論文超過150 篇(其中ESI 高引論文8篇)。所有論文引用約4800多次,H-index 36。Researcher ID: B-1131-2008。10次應(yīng)邀在國際重要期刊撰寫本領(lǐng)域的綜述。應(yīng)邀撰寫英文專著(科學(xué)出版社)2 本(第作者)。2016 年,獲遼寧省科學(xué)技術(shù)(自然科學(xué))二等獎(個人第二)。專著: 1. Mengtao Sun, et al., Photoinduced Electron Transfer in organic Solar Cell: Principle and Applications, 科學(xué)出版社, 2017年. 2. Mengtao Sun, et al., Tip-enhanced Raman and fluorescence spectroscopy, 科學(xué)出版社, 2017年.
圖書目錄
CONTENTS
PlasmonEnhanced Fluorescence: Principles and Applications CONTENTS
Chapter ⅠIntroduction
References
Chapter ⅡPhysical Mechanism of PlasmonEnhanced Fluorescence
2.1Introduction
2.2The principle of PEF
References
Chapter ⅢPlasmonEnhanced Fluorescence
3.1Introduction
3.2PEF from periodical metallic plasmonic nanostructures
3.2.1PEF from nanograting substrate
3.2.2PEF from nanohole arrays substrate
3.2.3PEF from nanoparticle arrays substrate
3.2.4PEF from nanorod arrays substrate
3.3PEF from nonperiodical metallic plasmonic nanostructure
3.3.1PEF from metallic silver island substrate
3.3.2PEF from metallic fractallike substrate
3.3.3PEF from deposited metallic nanoparticle substrate
3.4The wavelength and spacer effect towards the fluorescence enhancement
3.5Conclusion and prospect
References
Chapter ⅣTipEnhanced Fluorescence
4.1Introduction
4.2Experimental works on tipenhanced fluorescence
4.3Theoretical calculations on tipenhanced Raman spectroscopy
4.4Results and discussion
4.5Conclusion and outlook
References
Chapter ⅤPlasmonEnhanced Upconversion Photoluminescence: Physical Mechanism and Applications 5.1Introduction
5.2Mechanism model of upconversion fluorescence
5.3Plasmonenhanced upconversion
5.3.1Plasmonenhanced upconversion photoluminescence from periodic plasmonic nanostructures
5.3.2Plasmonenhanced upconversion photoluminescence from nonperiodic plasmonic nanostructures
5.4Plasmonenhanced from single rareearthdoped nanoparticles
5.5The applications of plasmonenhanced UC luminescence
5.6Conclusion
References
Chapter ⅥTimeResolved PlasmonEnhanced Fluorescence for ExcitonPlasmon Interaction 6.1Introduction
6.2Two methods for the excitonplasmon coupling
6.2.1The first method
6.2.2The second method
6.3Conclusion
References
Chapter ⅦPlasmonEnhanced Fluorescence Resonance Energy Transfer
7.1Introduction
7.2Fluorescence resonance energy transfer
7.2.1The definition and physical mechanism of FRET