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The nonlinear optical properties of silver nanoparticles decorated glass obtained from sintering mesoporous powders
Authors:Yuye Zhao  Ningning Dong  Pengpeng Qiu  Wan Jiang  Jun Wang  Lianjun Wang  Shijia Gu  Beiying Zhou  Wei Luo
Affiliation:1. Engineering Research Center of Advanced Glasses Manufacturing Technology, Ministry of Education, Donghua University, Shanghai, P. R. China

State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Institute of Functional Materials, Donghua University, Shanghai, P. R. China;2. Laboratory of Micro-Nano Optoelectronic Materials and Devices, Key Laboratory of Materials for High-Power Laser, Shanghai Institute of Optics and Fine Mechanics, CAS, Shanghai, China;3. Engineering Research Center of Advanced Glasses Manufacturing Technology, Ministry of Education, Donghua University, Shanghai, P. R. China

Abstract:Silver nanoparticles (Ag NPs) have excellent third-order nonlinear optical properties but it is still difficult to obtain silica glass containing Ag NPs with homogenous dispersion and small particle size. Herein, silica glass with homogenously distributed Ag NPs in its matrix was derived from sintering a famous type of mesoporous silica (FDU-12) encapsulated with Ag NPs (Ag NPs/FDU-12) through Spark Plasma Sintering (SPS) technique. Benefited from the low-temperature sintering property of the Ag NPs/FDU-12 powders (~930°C within 5 min), the Ag NPs can be directly trapped in the derived silica glass with small particle size (<3.0 nm) and without mass loss. The as-prepared Ag NPs/glass showed a typical reverse saturable absorption curve, which is measured via the Z-scan method by using a 532 nm nanosecond laser. The nonlinear coefficient urn:x-wiley:00027820:media:jace17651:jace17651-math-0001 and imaginary third-order susceptibility urn:x-wiley:00027820:media:jace17651:jace17651-math-0002 were calculated as 11.46 cm/GW and 2.22 × 10−12 esu, respectively, indicating the excellent third-order nonlinear optical properties of the Ag NPs/glass. This study demonstrates a great potential for preparing silica glasses functionalized with well dispersed ultrafine functional particles, which is appealing in photonic field.
Keywords:glass  nanoparticles  nonlinear optical properties  spark plasma sintering
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