RETRACTED: Advances in organic electro-optic materials and processing
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- Published
- 2004-11-01
- Cited by
- 29
- References
- 66
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:93254058
References
- Specular x-ray reflectivity studies of microstructure and ordering in self-assembled multilayers
- What the ultimate polymeric electro-optic materials will be: guest-host, crosslinked, or side-chain?
- Layer-by-Layer Self-Assembled Pyrrole-Based Donor-Acceptor Chromophores as Electro-Optic Materials
- Synthesis of Chromophores with Extremely High Electro-optic Activities. 2. Isophorone- and Combined Isophorone−Thiophene-Based Chromophores
- Specular x-ray reflectivity study of ordering in self-assembled organic and hybrid organic–inorganic electro-optic multilayer films
- Polymeric electro-optic modulator based on 1×2 Y-fed directional coupler
- Design and construction of molecular assemblies with large second-order optical nonlinearities. Quantum chemical aspects
- Traveling wave electro-optic phase modulators based on intrinsically polar self-assembled chromophoric superlattices
- Chromophoric Self-Assembled Superlattices
- Photostability of High μβ Electro-Optic Chromophores at 1550 nm†
- Design and Preparation of Zwitterionic Organic Thin Films: Self-Assembled Siloxane-Based, Thiophene-Spaced N-Benzylpyridinium Dicyanomethanides as Nonlinear Optical Materials
- Progress toward device-quality second-order nonlinear optical materials. 1. Influence of composition and processing conditions on nonlinearity, temporal stability, and optical loss
- Focused Microwave‐Assisted Synthesis of 2,5‐Dihydrofuran Derivatives as Electron Acceptors for Highly Efficient Nonlinear Optical Chromophores
- Single Reactor Route to Polar Superlattices. Layer-by-Layer Self-Assembly of Large-Response Molecular Electrooptic Materials by Protection−Deprotection
- Electrically Tunable Ring Resonators Incorporating Nematic Liquid Crystals as Cladding Layers
- Chromophoric Self-Assembled Multilayers. Organic Superlattice Approaches to Thin-Film Nonlinear Optical Materials
- Low-voltage electro-optic modulation using amorphous polycarbonate host material
- Frequency doubling in two-component self-assembled chromophoric waveguide structures
- Remarkable NLO response and infrared absorption in simple twisted molecular π-chromophores
- Systematic development of high bandwidth, low drive voltage organic electro-optic devices and their applications
Cited by
- Polymeric Smart Skin Materials: Concepts, Materials, and Devices
- High nonlinear optical anisotropy of urea nanofibers
- Advances in Organic Materials for Optical Modulation
- Low-Volt Electro-Optical Light Modulator Based on Thin Monocrystalline Dast Film
- A 3-phenoxypropane-1, 2-diol based bichromophore for enhanced nonlinear optical properties
- Polymeric electrooptic composite based on Disperse Red and its derivatives for use in photonics
- Enhancement of nonlinear optical activity in new six-branched dendritic dipolar chromophore
- Single-molecule confocal microscopy studies of electric-field induced orientation in chromophore-polymer composite materials
- Functionalized Guanidines for Electro-Optic Materials.
- Theory-inspired development of organic electro-optic materials.
- Modulation of the fluorescence intensity of single squaraine-derived rotaxane molecules by an electric field
- Organic electro-optic glasses for WDM applications
- Synthesis and properties of nonlinear optical chromophore containing alkoxy-substituted phenylene as conjugation bridge
- New hyperbranched polyaryleneethynylene containing azobenzenechromophore moieties in the main chain: facile synthesis, large optical nonlinearity and high thermal stability
- Polymeric and Hybrid Materials for Electrooptical Devices: Polar Order Dynamics
- Applications of single-molecule microscopy to problems in dyed composite materials
- Design and synthesis of bichromophores for nonlinear optical applications in polymer films
- Enhanced electro-optic coefficient (r33) in nonlinear optical chromospheres with novel donor structure
- Six-branched chromophores with isolation groups: synthesis and enhanced optical nonlinearity
- Organic electro-optic materials
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