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IR, 1H NMR, Electronic Properties and Conductivity Studies of N1 ,N4-Bis(Diphme)Benzene-l,4-Diamine Chloride Zirconium (IV) [{(Ar)2NC6H5N(Ar)2}ZrCl4] (Ar = C6H5)
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作者 Salem Et. Ashoor 《Journal of Chemistry and Chemical Engineering》 2011年第3期259-263,共5页
A range of new compounds such as N1,N4-bis(diphenylmethlene)benzene-l,4-diamine zirconium (IV) chloride [{(Ar)2NC6HsN(Ar)z}ZrCl4] (Ar = C6H5) complex counting the chelating amine and chloride in position tra... A range of new compounds such as N1,N4-bis(diphenylmethlene)benzene-l,4-diamine zirconium (IV) chloride [{(Ar)2NC6HsN(Ar)z}ZrCl4] (Ar = C6H5) complex counting the chelating amine and chloride in position trans have been prepared. Well-defined NI,N4-bis(diphenylmethlene)benzene-l,4-diamine zirconium (IV) chloride [{(Ar)2NC6H5N(Ar)2}ZrCl4] (Ar = C6H5) was obtained by stoichiometric addition of {(Ar)2NC6H5N(Ar)2} (Ar = C6H5) and {ZrC14} in ethanol at reflex temperature. IR, 1H NMR, electronic properties using hyperchem program study has been improved for this compound such as bond distance, and this compound was also defined as electric conductivity which proves to be useful for conductively compound. 展开更多
关键词 Electronic conductivity NI N4-bis(diphme)benzene-1 4-diamine N1 N4-bis(diphenylmethlene)benzene-1 4-diaminezirconium (IV) chloride.
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Thermodynamic Study and Spectroscopic Analysis of a Charge-Transfer Complex between 3,5-Diamino-1,2,4-Triazole and 6-Methyl-1,3,5-Triazine-2,4-Diamine with Chloranilic Acid
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作者 Khairia M. Al-Ahmary Ashwaq T. Alharbi 《Open Journal of Physical Chemistry》 2020年第1期33-47,共15页
Studying of charge-transfer (CT) and proton transfer interactions is essential due to their important role in many biological field and industrial applications. The current work will add more information’s about the ... Studying of charge-transfer (CT) and proton transfer interactions is essential due to their important role in many biological field and industrial applications. The current work will add more information’s about the nature of interaction between 3,5-diamino-1,2,4-triazole (DAT) and 6-methyl-1,3,5-triazine-2,4-diamine (MTDA) with 3,6-dichloro-2,5-dihydroxy-p-benzoquinone (chloranilic acid CLA) which was studied spectrophotometrically in Ethanol (EtOH) and Methanol (MeOH) solvents at different temperatures. The molecular composition of the formed complexes was studied by applying continuous variation and spectrophotometric titration methods and found to be 1:1 charge transfer complex for both Complex (DAT:CLA) and (MTDA:CLA) which are produced. Minimum-Maximum absorbance’s method has been applied to calculate the formation constant KCT and molecular extinction coefficient (ε);they recorded high values confirming high stability of the produced complexes. Oscillator strength (f), transition dipole moment (μ), ionization potential (IP) and dissociation energy (W) of the formed CT-complexes were also determined and evaluated;they showed solvent dependency. It is concluded that the formation constant (KCT) of the complexes is found to depend on the nature of both electron acceptor and donors and on the polarity of solvents. 展开更多
关键词 3 5-diamino-1 2 4-Triazole 6-Methyl-1 5-Triazine-2 4-diamine Charge Transfer Hydrogen Bond Spectroscopy
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Optical properties for N,N’-bis (lnaphyhly)N,N’-diphenyl-1,1’-biphenyl-4,4’-diamine and tris (8-hydroxyquinolinato) aluminum in organic light emitting devices 被引量:1
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作者 Mei Yee Lim Wan Mahmood Mat Yunus +1 位作者 Zainal Abidin Talib Anuar Kassim 《Natural Science》 2010年第6期631-634,共4页
The optical properties of N,N’-bis (Inaphthyl)N,N’-diphenyl-1,1’-biphenyl-4,4’-diamine (NPB) and tris (8-hydroxyquinolinato) aluminum (Alq3) organic materials used as hole transport and electron transport layers i... The optical properties of N,N’-bis (Inaphthyl)N,N’-diphenyl-1,1’-biphenyl-4,4’-diamine (NPB) and tris (8-hydroxyquinolinato) aluminum (Alq3) organic materials used as hole transport and electron transport layers in organic light-emitting devices (OLED) have been investigated. The NPB and Alq3 layers were prepared using thermal evaporation method. The results show that the energy band gap of Alq3 is thickness independence while the energy band gap of NPB decreases with the increasing of sample thickness. For the case of photoluminescence the Alq3 with thickness of 84 nm shows the highest relative intensity peak at 510 nm. 展开更多
关键词 Energy Band Gap N N’-Bis (Inaphthyl) -N N’-Diphenyl-1 1’-Biphenyl-4 4-diamine Tris (8 Hydroxyquinolinato) Aluminum Organic Light Emitting Diode Photoluminescence
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