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Organic Non-Linear Optical (NLO) Materials

 Advancements of lasers and optical fibers contributed to optical communications and optical disks for practical use. Further development of optical materials is urgently required. Nonlinear optical materials efficiently exhibit nonlinear optical phenomena, which are conversion of light wavelength, amplification of light, and conversion of the refractive index depending on optical intensity. Since a laser oscillation was reported from an inorganic compound in the 1960s, inorganic nonlinear optical materials have been well developed. In addition to these inorganic materials, organic nonlinear optical materials have also been studied. This is because organic materials show efficient nonlinear optical properties and rapid responsiveness based on highly movable -electrons, thanks to delocalized electrons in organic materials. Nonlinear optical materials may be important for large-capacity communications, because further application of this material may provide a device in an all optical system. As one of the basic technologies of photonics, lightwave technology using organic nonlinear optical effects are important to develop. Further research on organic materials with excellent nonlinear optical properties and vigorous applied studies has been carried out.

References

  • 1) S. Miyata, et al., Preprints of IUPAC 32nd International Symposium on Macromolecules, Kyoto, 1988, p.582.
  • 2) D. S. Chemla, J. Zyss, in Nonlinear Optical Properties of Organic Molecules and Crystals, Academic Press, New York, 1987.
  • 3) L. M. Hayden, S. T. Kowel, M. P. Srinivasan, Optics Comm. 1987, 61, 351.
  • 4) C. Flytzanis, J. L. Oudar, in Nonlinear Optics: Materials and Devices, Springer, Berlin, 1986.
  • 5) P. N. Prasad, D. R. Ulrich, in Nonlinear Optical and Electroactive Polymers, Plenum, New York, 1988.
  • 6) D. R. Ulrich, J. Orenstein, A. J. Heeger, in Nonlinear Optical Properties, of Polymers, Material Research Society, Pittsbourgh, 1988.
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Product Number A2634
CAS RN 108714-73-4
Purity / Analysis Method: >99.0%(T)(HPLC)

Product Number N0118
CAS RN 88-74-4
Purity / Analysis Method: >99.0%(GC)
Chemical Substance Law (ENCS):   3-392, 5-2301

Product Number N0281
CAS RN 611-08-5
Purity / Analysis Method: >99.0%(T)(HPLC)

Product Number N0529
CAS RN 99-52-5
Purity / Analysis Method: >99.0%(GC)
Chemical Substance Law (ENCS):   3-401

Product Number A0621
CAS RN 153-78-6
Purity / Analysis Method: >98.0%(T)(HPLC)

Product Number A0794
CAS RN 4214-76-0
Purity / Analysis Method: >98.0%(T)

Product Number A0838
CAS RN 4214-75-9
Purity / Analysis Method: >98.0%(T)

Product Number C0214
CAS RN 121-87-9
Purity / Analysis Method: >98.0%(GC)
Chemical Substance Law (ENCS):   3-407

Product Number C0943
CAS RN 2578-45-2
Purity / Analysis Method: >98.0%(GC)

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CAS RN 6085-92-3
Purity / Analysis Method: >98.0%(GC)

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CAS RN 107023-66-5
Purity / Analysis Method: >98.0%(GC)
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Product Number D0289
CAS RN 96-31-1
Purity / Analysis Method: >98.0%(GC)
Chemical Substance Law (ENCS):   2-1734

Product Number:   A2634 | Purity / Analysis Method:   >99.0%(T)(HPLC)

Product Number:   N0118 | Purity / Analysis Method:   >99.0%(GC)| Chemical Substance Law (ENCS):   3-392, 5-2301

Product Number:   N0281 | Purity / Analysis Method:   >99.0%(T)(HPLC)

Product Number:   N0529 | Purity / Analysis Method:   >99.0%(GC)| Chemical Substance Law (ENCS):   3-401

Product Number:   A0621 | Purity / Analysis Method:   >98.0%(T)(HPLC)

Product Number:   A0794 | Purity / Analysis Method:   >98.0%(T)

Product Number:   A0838 | Purity / Analysis Method:   >98.0%(T)

Product Number:   C0214 | Purity / Analysis Method:   >98.0%(GC)| Chemical Substance Law (ENCS):   3-407

Product Number:   C0943 | Purity / Analysis Method:   >98.0%(GC)

Product Number:   C1209 | Purity / Analysis Method:   >98.0%(GC)

Product Number:   C1349 | Purity / Analysis Method:   >98.0%(GC)| Deleterious substance

Product Number:   D0289 | Purity / Analysis Method:   >98.0%(GC)| Chemical Substance Law (ENCS):   2-1734

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