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Bottom-up fabrication approaches to novel plasmonic materials 被引量:1

Bottom-up fabrication approaches to novel plasmonic materials
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摘要 Recent research effort towards developing novel metal nanoparticles(NPs)and their ordered arrays have been motivated by the emergence of plasmonics.In particular,tuning the size,morphology,composition and the separation of metal NPs has allowed us to engineer the collective properties of plasmonic crystals for specific applications.Here we present our recent development of bottom-up growth methods and demonstrate convenience for the preparation of such plasmonic materials.By implementation of physical,chemical,or electrochemical deposition of a metal in combination with micromolding on two-dimensional colloidal crystals,metallic NPs with a variety of morphologies can be created in an ordered lattice.The prepared novel plasmonic crystals could find applications in optics,optoelectronics,materials science,sensing and biophysics. Recent research effort towards developing novel metal nanoparticles (NPs) and their ordered arrays have been motivated by the emergence of plasmonics. In particular, tuning the size, morphology, composition and the separation of metal NPs has allowed us to engineer the collective properties of plasmonic crystals for specific applications. Here we present our recent development of bottom-up growth methods and demonstrate convenience for the preparation of such plasmonic materials. By implementation of physical, chemical, or electrochemical deposition of a metal in combination with micromolding on two-dimensional colloidal crystals, metallic NPs with a variety of morphologies can be created in an ordered lattice. The prepared novel plasmonic crystals could find applications in optics, optoelectronics, materials science, sensing and biophysics.
出处 《Chinese Science Bulletin》 SCIE EI CAS 2010年第24期2600-2607,共8页
基金 supported by the State Key Program for Basic Research of China,NSFC and NCET(10734010,50771054,10804044,NCET-09-0453) sponsored by NSFC under Excellent Youth Foundation and RFDP
关键词 新型材料 等离激元 金属纳米粒子 生物物理学 制造 金属纳米颗粒 有序阵列 胶体晶体 surface plasmons, plasmonic crystal, colloidal crystal, transmission resonance, plasmonic sensor
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