Vasudeva Navyashree, Jayasing Annie, Sindogi Kishorkumar, Yadav Isha, Row T N Guru, Jain Sheetal K, Pandey Anshu
Solid State and Structural Chemistry Unit, Indian Institute of Science, CV Raman Road Bengaluru 560012 India
Nanoscale Adv. 2024 Mar 5;6(10):2602-2610. doi: 10.1039/d4na00008k. eCollection 2024 May 14.
Embedding nanoparticles with different functionalities into soft substrates is a convenient tool to realize technologically significant multifunctional materials. This study focuses on incorporating bimetallic plasmonic nanoparticles into soft crystals made of cetyltrimethylammonium bromide-iodide. We observed the emergence of a novel symmetry-lowered cetrimonium crystal polymorph that enables the realization of strong interparticle plasmonic coupling in these composite materials. The observed crystal polymorph exhibits a triclinic structure with significantly reduced unit cell volume compared to standard CTAB. Solid-state nuclear magnetic resonance studies revealed an enhanced cetrimonium chain rigidity and a commensurate decrease in the mobility of the methyl groups. This is attributed to iodide incorporation. To study the influence of these interactions on solution phase dynamical properties, we employed light scattering measurements using gold nanospheres as markers, where we observed aggregation of these particles. We then develop a two step synthetic scheme that successfully enables high levels (533 particles per μm) of incorporation of bimetallic plasmonic particles into the emergent crystal polymorph.
将具有不同功能的纳米颗粒嵌入软质基底是实现具有重要技术意义的多功能材料的便捷工具。本研究聚焦于将双金属等离子体纳米颗粒掺入由十六烷基三甲基溴化铵 - 碘化物制成的软晶体中。我们观察到一种新型的对称性降低的十六烷基三甲基铵晶体多晶型物的出现,这使得在这些复合材料中能够实现强粒子间等离子体耦合。观察到的晶体多晶型物呈现三斜结构,与标准十六烷基三甲基溴化铵相比,其单位晶胞体积显著减小。固态核磁共振研究表明十六烷基三甲基铵链的刚性增强,甲基的迁移率相应降低。这归因于碘化物的掺入。为了研究这些相互作用对溶液相动力学性质的影响,我们使用金纳米球作为标记物进行光散射测量,在此过程中我们观察到了这些颗粒的聚集。然后我们开发了一种两步合成方案,成功地使双金属等离子体颗粒以高水平(每微米533个颗粒)掺入到新出现的晶体多晶型物中。