Silver Nanoshells with Optimized Infrared Optical Response: Synthesis for Thin-Shell Formation, and Optical/Thermal Properties after Embedding in Polymeric Films

被引:4
|
作者
Lermusiaux, Laurent [1 ]
Roach, Lucien [1 ]
Lehtihet, Moncef [2 ]
Plissonneau, Marie [3 ]
Bertry, Laure [3 ]
Buissette, Valerie [3 ]
Le Mercier, Thierry [3 ]
Duguet, Etienne [1 ]
Drisko, Glenna L. [1 ]
Leng, Jacques [2 ]
Treguer-Delapierre, Mona [1 ]
机构
[1] Univ Bordeaux, CNRS, Bordeaux INP, ICMCB,UMR 5026, F-33600 Pessac, France
[2] Univ Bordeaux, CNRS, Solvay, LOF,UMR 5258, F-33608 Pessac, France
[3] Solvay R&I, 52 Rue Haie Coq, F-93306 Aubervilliers, France
基金
欧洲研究理事会;
关键词
nanoshells; silver; ultrathin; infrared; synthesis; thin film; solar energy control; ENHANCED-RAMAN-SCATTERING; SILICA SPHERES; GOLD NANOSHELLS; SINGLE-STEP; GROWTH; NANOPARTICLES; POLYSTYRENE; AG; NANOSTRUCTURES; MICROSPHERES;
D O I
10.3390/nano13030614
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
We describe a new approach to making ultrathin Ag nanoshells with a higher level of extinction in the infrared than in the visible. The combination of near-infrared active ultrathin nanoshells with their isotropic optical properties is of interest for energy-saving applications. For such applications, the morphology must be precisely controlled, since the optical response is sensitive to nanometer-scale variations. To achieve this precision, we use a multi-step, reproducible, colloidal chemical synthesis. It includes the reduction of Tollens' reactant onto Sn2+-sensitized silica particles, followed by silver-nitrate reduction by formaldehyde and ammonia. The smooth shells are about 10 nm thick, on average, and have different morphologies: continuous, percolated, and patchy, depending on the quantity of the silver nitrate used. The shell-formation mechanism, studied by optical spectroscopy and high-resolution microscopy, seems to consist of two steps: the formation of very thin and flat patches, followed by their guided regrowth around the silica particle, which is favored by a high reaction rate. The optical and thermal properties of the core-shell particles, embedded in a transparent poly(vinylpyrrolidone) film on a glass substrate, were also investigated. We found that the Ag-nanoshell films can convert 30% of the power of incident near-infrared light into heat, making them very suitable in window glazing for radiative screening from solar light.
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页数:14
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