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Nanoparticle polymer composite volume gratings incorporating chain transfer agents for holography and slow-neutron optics

机译:纳米粒子聚合物复合体光栅,结合了用于全息和慢中子光学的链转移剂

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摘要

We demonstrate twofold enhancement of the saturated refractive index modulation (Δn_(sat)) recorded in a photopolymerizable nanoparticle-acrylate polymer composite film by incorporating thiols acting as chain transfer agents. The chain transfer reaction of thiols with (meth)acrylate monomer reduces the polymer crosslinking density and facilitates the mutual diffusion of nanoparticles and monomer during holographic exposure. These modifications provide increased density modulations of nanoparticles and the formed polymer, resulting in the enhancement of Δn_(sat) as high as 1.6 × 10~(-2) at a wavelength of 532 nm. The incorporation of thiols also leads to shrinkage suppression and to improvement of the grating's spatial frequency response. Such simultaneous improvement is very useful for holographic applications in light and neutron optics.
机译:我们展示了通过结合用作链转移剂的硫醇,可光聚合纳米粒子-丙烯酸酯聚合物复合膜中记录的饱和折射率调制(Δn_(sat))的两倍增强。硫醇与(甲基)丙烯酸酯单体的链转移反应降低了聚合物的交联密度,并促进了全息曝光期间纳米粒子和单体的相互扩散。这些修饰提供了增加的纳米颗粒和形成的聚合物的密度调制,从而导致在532 nm波长处的Δn_(sat)增强到1.6×10〜(-2)。硫醇的掺入还导致收缩抑制并改善了光栅的空间频率响应。这种同时的改进对于光和中子光学中的全息应用非常有用。

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