2000Journal of Materials ChemistryRequires access

Novel polydiacetylenes for optical materials: beyond the conventional polydiacetylenes

Abhijit Sarkar, Shuji Okada, Hiroshi Matsuzawa, Hiro Matsuda, Hachiro Nakanishi

Open publisher page 140 citations

Abstract

Polydiacetylenes (PDAs) are of great interest due to their π-conjugated backbone related properties, such as linear and nonlinear optical properties. As a consequence, design and preparation of PDAs assume enormous importance today. This review deals with one aspect of PDA, that is, design and preparation of the diacetylene monomers and their polymers, PDAs having conjugated side groups. The aim of such an investigation is to produce materials which exhibit large third-order nonlinear optical susceptibilities and which consequently, can be obtained in a form to be customised for optical devices.

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What this paper is about

Polydiacetylenes (PDAs) are of great interest due to their π-conjugated backbone related properties, such as linear and nonlinear optical properties. As a consequence, design and preparation of PDAs assume enormous importance today. This review deals with one aspect of PDA, that is, design and preparation of the diacetylene monomers and their polymers, PDAs having conjugated side groups. The aim of such an investigation is to produce materials which exhibit large third-order nonlinear optical susceptibilities and which consequently, can be obtained in a form to be customised for optical devices.

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OpenAlex reports 140 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Polydiacetylenes (PDAs) are of great interest due to their π-conjugated backbone related properties, such as linear and nonlinear optical properties. As a consequence, design and preparation of PDAs assume enormous importance today. This review deals with one aspect of PDA, that is, design and preparation of the diacetylene monomers and their polymers, PDAs having conjugated side groups. The aim of such an investigation is to produce materials which exhibit large third-order nonlinear optical susceptibilities and which consequently, can be obtained in a form to be customised for optical devices.

Key concepts: Polydiacetylenes, Diacetylene, Conjugated system, Polymer, Materials science, Nonlinear optical, Monomer, Nanotechnology

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