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《聚合物多层次结构中稀土络合物的光谱性质》(英文版)张其锦

已有 3728 次阅读 2013-2-4 17:10 |个人分类:校友文库|系统分类:科研笔记| 稀土络合物, 光谱性质

丛书名:当代科学技术基础理论与前沿问题研究丛书——中国科学技术大学校友文库
(“十一五”国家重点图书出版规划项目)
出版日期:2009年1月
出版社:中国科学技术大学出版社
正文页码:212页(16开)
字数:217千
定价:48.00元
编辑邮箱:edit@ustc.edu.cn(欢迎来索要目录、样章的PDF)
 

内容简介

聚合物是通过化学键将小分子连接起来而形成的长链状大分子。由这种分子聚集形成的固体材料具有多层次的物质结构,这些结构会影响掺杂其中的各种功能基团的性质。本书将具有不同结构的稀土掺杂聚合物作为研究对象,从理论和实验的角度对这些聚合物进行了光谱分析、掺杂基质结构设计、发光性质与各层次结构的关系以及光量子调控等多方面的研究,包括各种新颖结构的设计和由其产生的各种特异性质。其中光量子调控是迅速发展的宽带通讯领域的关键技术,相应的基础和应用基础研究已形成一个由聚合物科学和光子学交叉而成的新兴学科——光子学聚合物科学。书中介绍的发光调控、三维光学存储和稀土掺杂聚合物光纤的光放大性质等均为光子学聚合物领域的最新进展。虽然本书是非常专业的学术专著,但是通过阅读,读者也能从中了解这一新兴交叉学科的概况。书中还列出了相关原始文献以满足感兴趣的读者进一步了解相关内容的需要。

 

【目录】

Chapter 1 Synthesis and characterizationof rare earth complex doped polymers
1.1 Synthesis of rare earth complex doped polymer
1.2 Uniformity and thermal stability of rare earth complex doped polymer
1.2.1 X-ray diffraction of rare earth complex doped
1.2.2 Near-field scanning analysis of rare earth complex doped
1.2.3 Thermal properties of rare earth complex doped PMMA
Chapter 2 Spectroscopic properties of rare earth complex doped PMMA and their Judd-Ofelt treatment
2.1 The theory of spectroscopic analysis
2.1.1 Energy level analysis and nephelauxetic effect of rare earth complexes
2.1.2 Judd-Ofelt Theory
2.2 Spectroscopic analysis of Nd
DBM3Phen and NdDBM3 TPPO2 in PMMA
2.2.1 Energy level analysis and nephelauxetic effect of Nd
DBM3Phen and NdDBM3 TPPO2 in MMA and
2.2.2 Radiative properties of Nd
DBM3Phen and NdDBM3 TPPO2 doped PMMA
2.3 Spectroscopic analysis of Eu complexes in PMMA
2.3.1 Fluorescence of Eu complexes in PMMA
2.3.2 Radiative properties of Eu complexes in PMMA
2.4 Spectroscopic analysis of Er complexes in PMMA
2.4.1 Fluorescence of Er complexes in PMMA
2.4.2 Energy level analysis and nephelauxetic effect of Er
DBM3 TPPO2 in PMMA
2.4.3 Radiative properties of Er
DBM3 TPPO2 doped PMMA
2.5 Spectroscopic analysis of Pr complexes in PMMA
2.5.1 Fluorescence of Pr complexes in PMMA
2.5:2 Energy level analysis and Nephelauxetic effect of
Pr
DBM3Phen and PrDBM3 TPPO2 in PMMA
2.5.3 Radiative properties of Pr
DBM3 TPPO2 doped PMMA
2.6 Spectroscopic analysis of Sm complexes in PMMA
2.6.1 Fluorescent analysis of Sm complexes in MMA
2.6.2 Energy level analysis and nephelauxetic effect of Sm
TTAa TPPO2 in MMA and PMMA
2.6.3 Radiative properties of Sm
DBMa TPPO2 in MMA and PMMA
Chapter 3 Rectification of excitation with bathochromic shift during emission measurement of Eu complexes
3.1 Bathochromic shift during fluorescence measurement
3.2 Theoretical model for treatment of Bathochromic shift
3.3 Prediction of best exciting wavelength for fluorescence measurement
Chapter 4 Fluorescence enhancing of rare earth complexes in PMMA
4.1 Fluorescence enhancement of Eu
DBM3Phen codoped with the other rare earth complexes in PMMA
4.2 Fluorescence enhancement of Sm
DBM3Phen codoped with other rare earth complexes in PMMA
4.3 Model for luminescence enhancement in PMMA codoped with two kinds of rare earth complexes
4.3.1 Intra-molecular energy transfer within each complex
4.3.2 Inter-molecular energy transfer between complexes
4.3.3 Quantitative model for luminescence enhancement of Eux Tby-PMMA
Chapter 5 Effects of synergetic ligands on radiative properties of Eu
TTA3 nL doped PMMA and LB films
……

7.1 J-aggregates of rare earth complexes formed on the surface of silver nanoparticles
7.2 Effects of Ag colloidal nanoparticles on luminescent properties of Eu
l]I -diketone
7.3 Nanocomposite composed of Eu
TTA3Bipy/TbTTA3Bipy/Silver Nanoparticles
Chapter 8 Modulation in luminescence of rare earth complexes doped in photo-responsive polymer
8.1 Photo-induced optical anisotropy and polarized emission of europium complex doped azobenzene polymer film
8.2 Reversible modulation in fluorescence intensity of a single vesicle composed of diblock azo-copolymer and Eu
DBM 3 Phen
Chapter 9 Polymer optical fibers doped with rare earth complexes
9.1 Gradient refractive index distribution of POF
9.1.1 Qualitative description of interfacial-gel polymerization
9.1.2 Diffusion process given by free volume theory
9.1.3 Gradient refractive index distribution of undoped POF~
9.1.4 Gradient refractive index distribution of rare earth complex doped POF
9.2 Design and fabrication of SCPOF preform doped with rare earth complexes
9.3 Optical amplification of rare earth complexes doped SI POF
Postscript
References

 

【作者简介】

张其锦,男,19827月获中国科学技术大学理学学士学位,19861月获中国科学技术大学理学硕士学位,19881月获中国科学院化学研究所理学博士学位。从19884月起在中国科学技术大学任教。2000年获国家杰出青年基金资助。主要从事光子学聚合物材料,包括掺杂聚合物光纤材料和偶氮聚合物液晶材料的合成和性能研究。先后主持国家自然科学基金《稀土掺杂聚合物光纤材料和性质研究》等多项研究工作,并参与进行国家科技部《超高密度光存储材料和器件》重大基础研究项目和中科院《梯度折射率聚合物光纤及其链路系统》创新工程方向性项目等多项研究工作。


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