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基于铌酸锂纳米晶体颗粒二次谐波发射特性研究
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作者 徐城 陈炜 +2 位作者 岳鹏 虞应 刘绍鼎 《中国科学:物理学、力学、天文学》 CSCD 北大核心 2023年第8期124-131,共8页
基于纳米结构的二次谐波发射是构建高灵敏度生化传感器等纳光子器件的重要手段,其中如何获得增强的二次谐波发射是实现这些应用的关键.本文采用溶剂热法制备出类钻石的十二面体铌酸锂纳米晶体颗粒,实现了磁偶极共振模式的有效激发.基于... 基于纳米结构的二次谐波发射是构建高灵敏度生化传感器等纳光子器件的重要手段,其中如何获得增强的二次谐波发射是实现这些应用的关键.本文采用溶剂热法制备出类钻石的十二面体铌酸锂纳米晶体颗粒,实现了磁偶极共振模式的有效激发.基于磁偶极共振对入射场能量的聚焦作用,以及铌酸锂材料本身所具有的较强二阶非线性响应,所制备铌酸锂纳米晶体颗粒能够实现二次谐波的增强发射.不同粒径铌酸锂颗粒散射光谱及二次谐波发射光谱的测试结果表明,当激发光波长与纳米颗粒的磁偶极共振模式匹配时,可有效增强二次谐波发射强度,其非线性转换效率达到2.0×10^(-6)W^(-1).这些研究结果表明本文所制备的铌酸锂纳米晶体颗粒是一种较为理想的非线性纳米材料,在非线性纳光子器件的设计等领域具有潜在的应用价值. 展开更多
关键词 二次谐波发射 铌酸锂 磁偶极共振
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Post-functionalization of disubstituted polyacetylenes via click chemistry
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作者 TONG Li QIN AnJun +3 位作者 ZHANG XiaoA MAO Yu SUN JingZhi TANG Ben Zhong 《Science China Chemistry》 SCIE EI CAS 2011年第12期1948-1954,共7页
We report a synthetic design and the experimental exploration of preparation of disubstituted polyacetylenes (PAs, P3) through 1,3-dipolar cycloaddition of azides with precursor PA bearing alkyne pendants. The precu... We report a synthetic design and the experimental exploration of preparation of disubstituted polyacetylenes (PAs, P3) through 1,3-dipolar cycloaddition of azides with precursor PA bearing alkyne pendants. The precursor PA (P2) was derived by desilylation of the pristine PA with trimethylethynylsilane side chains (P1). P1 was obtained by polymerization of a dual-alkyne containing monomer with one of the alkynes end-capping by trimethylsilane (M) under the promotion of WC16-Ph4Sn catalyst. Two synthetic routes, i.e. two-steps (from P1 to P3 via precursor P2) and one-pot (from P1 to P3 without separation and purification of P2) were tried and the results indicated that one-pot strategy is more facile and resultant P3-1 showed higher purity and higher molecular weight than the resultant of P3-2. By using the techniques such as GPC, FTIR and 1H NMR spectroscopy the polymerization behavior and the structures of the polymers were well characterized. 展开更多
关键词 disubstituted polyacetylene click chemistry one-pot method selective polymerization
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