33273-15-3Relevant academic research and scientific papers
Crystal Growth and Molecular Orientation of Vanadylnaphthalocyanine in Thin Films
Yanagi, H.,Ashida, M.,Elbe, J.,Woehrle, D.
, p. 7056 - 7061 (1990)
Vanadyl-2,3-naphthalocyanine (VONc) was vacuum-evaporated onto a KCl (0001) surface.The crystal structure and molecular arrangement were determined by high-resolution electron microscopy (HREM) and electron diffraction.The crystal growth depended on the s
Epitaxial growth of ultrathin vanadyl-naphthalcoyanine films on RbI, KI and KBr
Tada, Hirokazu,Morioka, Toshiko,Koma, Atsushi
, (1994)
Ultrathin films of vanadyl-naphthalocyanine (VONc) have been prepared on the (001) faces of Rbi, KI, and KBr by molecular beam epitaxy. Molecular arrangements were determined by reflection high-energy electron diffraction. VONc molecules form square latti
BLUE COLORED RESIN COMPOSITION COMPRISING NAPHTHALOCYANINE, COLOR FILTER, AND SOLID-STATE IMAGE SENSOR
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Paragraph 0066, (2018/03/30)
PROBLEM TO BE SOLVED: To provide a blue colored resin composition which enables preparation of an optical filter layer that has a blue color filter function and a function of cutting near infrared light at a wavelength of 900 nm or more for a solid-state image sensor, and which has excellent dispersion stability and heat resistance. SOLUTION: The blue colored resin composition comprises an organic coloring pigment classified as Pigment Blue, an organic coloring pigment classified as Pigment Violet, a naphthalocyanine compound having a specific structure, and a photopolymerizable monomer. A thin film having a thickness of 0.8 μm obtained by using the above blue colored resin composition shows a transmittance of 60% or more at a wavelength of 450 nm, a transmittance of 15% or less at a wavelength of 700 nm, and a transmittance of 80% or less at a wavelength of 910 nm. SELECTED DRAWING: None COPYRIGHT: (C)2018,JPOandINPIT
Mu-oxo bridged heterometal compound and selective production method thereof
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Page 8, (2010/02/06)
An object of the present invention is to provide a new μ-oxo bridged heterometal compound, which can make the photo-functional materials to have diversified properties, and a production method such that the μ-oxo bridged heterometal compound is obtained simply, selectively and with high yield. The present invention provides μ-oxo bridged heterometal compounds, NcM1-O-M2Nc, PcM1-O-M2Nc and NcM1-O-M2Pc wherein Nc represents naphthalocyanine, Pc represents phthalocyanine, M1 represents a metal atom which is able to have a valence of up to three, and M2 represents a metal atom which is able to have a valence of four or five.
