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The preparation and spectral properties of some monosubstituted 1,3,5,-Triphenyl-2-pyrazolines

DE Rivett, J Rosevear and JFK Wilshire
32(7) pp.1601 - 1612


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Wei Xiao-Qiang, Yang Gang, Cheng Jian-Bo, Lu Zhi-Yun, Xie Ming-Gui
Optical Materials. 2007 29(8). p.936
Study on the electronic structure of pyrazoline derivatives with different substituents
Yang G.B., Wu Y., Tian W.J., Zhou X., Ren A.M.
Current Applied Physics. 2005 5(4). p.327
Fluorescence modulation in azobenzene-substituted triphenyl pyrazoline derivative
Jin Ming, Lu Ran, Bao Chun Yan, Xu Ting Hua, Zhao Ying Ying
Optical Materials. 2004 26(1). p.85
Synthesis and assessment of substituent effect of some 3-((E)-3-substituted phenylacryloyl)benzonitriles
Kamalakkannan D., Senbagam R., Vanangamudi G., Thirunarayanan G.
Journal of Molecular Structure. 2022 1264 p.133218
Synthesis and characterisation of new fluorescent Na+ and K+ indicators
Ver Heyen Katja, Cielen Els, Tahri Abdellah, Saleh Ashty, Boens Noël, Hoornaert Georges J.
Tetrahedron. 1999 55(16). p.5207
A mild and highly efficient one-pot synthesis of 1,3,5-triaryl-2-pyrazolines
Movassagh B., Rooh H., Bijanzadeh H. R.
Chemistry of Heterocyclic Compounds. 2013 48(11). p.1719
The new fluorescent probe in the process of methyl methacrylate polymerization
Yan Zheng-Lin, Wu Shi-Kang
Journal of Photochemistry and Photobiology A: Chemistry. 1996 96(1-3). p.199
Synthesis and properties of photoluminescence and electroluminescence of pyrazoline derivatives
Jin Ming, Liang Yu Jun, Lu Ran, Chuai Xiao Hong, Yi Zhao Hui, Zhao YingYing, Zhang Hong Jie
Synthetic Metals. 2004 140(1). p.37
Temperature dependence of photo-induced birefringence in azo-doped polymers containing different substitutions
Pan Lingyun, Yang Qingxin, Jin Ming, Sun Guijuan, Jiang Zhankui
Journal of Physics D: Applied Physics. 2004 37(7). p.1002
Luminescent coolants for solid-state lasers
Fletcher A. N., Hollins R. A., Kubin R. F., Henry R. A., AtienzaMoore T. M., Pietrak M. E.
Applied Physics B Photophysics and Laser Chemistry. 1983 30(4). p.195
Intramolecular Charge Transfer in Arylpyrazolines
Ming-Liang Wang, Ju-Zheng Liu, Chun-Xiang Xu
Chinese Physics Letters. 2006 23(11). p.3088
Temperature Dependent Fluorescence of ‘Tunable Fluorophore-Fissile Bond’ Systems Based on 1-Phenyl, 3-Aryl Δ2-Pyrazolines as a Means of Quantitating Photofission Processes
Silva A Prasanna de, Gunaratne H Q Nimal, Jayasekera K Ranjith, O’Callaghan Sean, Sandanayake K R A Samankumara
Chemistry Letters. 1995 24(2). p.123
Photoinduced electron transfer of [ Ru (bpy)2 (4,4′‐dcbpy) ]2+ with electron donors
Pu‐Hui Xie, Lian‐Qi Zhang, Yuan‐Jun Hou, Bao‐Wen Zhang, Yi Cao, Fang Wu, Wen‐Jing Tian, Jia‐Cong Shen
Chinese Journal of Chemistry. 2000 18(2). p.152
1,3-Diphenyl-5-(9-phenanthryl)-4,5-dihydro-1H-pyrazole (DPPhP): structure, properties, and application in organic light-emitting diodes
Ma C. Q., Zhang L. Q., Zhou J. H., Wang X. S., Zhang B. W., Cao Y., Bugnon P., Schaer M., Nüesch F., Zhang D. Q., Qiu Y.
J. Mater. Chem.. 2002 12(12). p.3481
(1998)
Schmidhammer Helmut
Designed To Dissolve: Suppression of Colloidal Aggregation of Cu(I)-Selective Fluorescent Probes in Aqueous Buffer and In-Gel Detection of a Metallochaperone
Morgan M. Thomas, Bagchi Pritha, Fahrni Christoph J.
Journal of the American Chemical Society. 2011 133(40). p.15906
Synthesis, characterizations and photo-physical properties of novel lanthanum(III) complexes
Ameen Iffat, Tripathi Abhishek Kumar, Siddiqui Afshan, Kapil Gaurav, Pandey Shyam S., Tripathi Umesh Nath
Journal of Taibah University for Science. 2018 12(6). p.796
Crystal structures of methyl and benzyl 5-ferrocenyl-3,5-dimethyl-2-pyrazoline-1-dithiocarboxylate
Zhu X., Xiang D. -S., Shi W. -Y.
Journal of Structural Chemistry. 2013 54(6). p.1107
A study of the photophysical properties of various triaryl-2-pyrazolines in solution and microcrystalline form
Wilkinson Francis, Kelly Graeme P., Michael Chrysostomos, Oelkrug Dieter
Journal of Photochemistry and Photobiology A: Chemistry. 1990 52(2). p.309
Intramolecular energy and charge transfer in 5-(9-anthryl)-3-(4-nitrophenyl)-1-phenyl-2-pyrazoline
Wang Mingliang, Zhang Junxiang, Liu Juzheng, Xu Chunxiang, Ju Huangxian
Journal of Luminescence. 2002 99(1). p.79
Luminescence and charge transfer. Part 4. ‘On–off’ fluorescent PET (photoinduced electron transfer) sensors with pyridine receptors: 1,3-diaryl-5-pyridyl-4,5-dihydropyrazoles
de Silva A. Prasanna, Gunaratne H. Q. Nimal, Lynch P. L. Mark
J. Chem. Soc., Perkin Trans. 2. 1995 (4). p.685
Benzyl 5-ferrocenyl-3-(4-methylphenyl)-2-pyrazoline-1-dithiocarboxylate
Liu Xiao-Lan, Tong Ben-Wan, Zhao Yue, Ye Jun, Liu Yong-Hong
Acta Crystallographica Section E Structure Reports Online. 2008 64(1). p.m209
1,3,5-Triarylpyrazolines — pH-driven off-on-off molecular logic devices based on a “receptor1-fluorophore-spacer-receptor2” format with internal charge transfer (ICT) and photoinduced electron transfer (PET) mechanisms
Zammit Ramon, Pappova Maria, Zammit Esther, Gabarretta John, Magri David C.
Canadian Journal of Chemistry. 2015 93(2). p.199
Synthesis and photo-induced birefringence of pyrazoline substituted azo-dyes in PMMA films
Jin Ming, Xin Yang Qing, Lu Ran, Yun Pan Ling, Chong Xue Peng, Zhao YingYing
Optical Materials. 2003 24(3). p.445
Determination of the absolute configuration of 1,3,5-triphenyl-4,5-dihydropyrazole enantiomers by a combination of VCD, ECD measurements, and theoretical calculations
Vanthuyne Nicolas, Roussel Christian, Naubron Jean-Valère, Jagerovic Nadine, Lázaro Paula Morales, Alkorta Ibon, Elguero José
Tetrahedron: Asymmetry. 2011 22(10). p.1120
Study on the fluorescence properties of a new intramolecular charge transfer compound 1,5-diphenyl-3-(N-ethylcarbazole-3-yl)-2-pyrazoline
Li J.F., Guan B., Li D.X., Dong C.
Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy. 2007 68(2). p.404
One- and two-photon absorption properties of a series of derived pyrazolines
Zhou Xin, Ren Ai-Min, Feng Ji-Kang, Liu Xiao-Juan, Yang Guo-Bo, Tian Wen-Jing
Optical Materials. 2004 27(2). p.315
Dictionary of Organic Compounds (1990)
Buckingham J.
Photoinduced Electron Transfer V (1993)
Bissell Richard A., Prasanna de Silva A., Nimal Gunaratne H. Q., Mark Lynch P. L., Maguire Glenn E. M., McCoy Colin P., Samankumara Sandanayake K. R. A.
Cascade Oxidation/Halogenoaminocyclization Reaction of Trifluoromethylated Homoallylic N-Acylhydrazines: Metal-free Synthesis of CF3-Substituted Pyrazolines
Wang Yuxiang, Wang Ke-Hu, Su Yingpeng, Yang Zheng, Wen Lan, Liu Lili, Wang Juanjuan, Huang Danfeng, Hu Yulai
The Journal of Organic Chemistry. 2018 83(2). p.939
Blue organic electroluminescence of 1,3,5-triaryl-2-pyrazoline
Gao Z.Q, Lee C.S, Bello I, Lee S.T, Wu S.K, Yan Z.L, Zhang X.H
Synthetic Metals. 1999 105(2). p.141
Properties of 2,6-di-tert.-butyl-4-(2,5-diphenyl-3,4-dihydro-2H-pyrazol-3-yl)-phenol as hole-transport material for life extension of organic light emitting diodes
Cherpak V., Stakhira P., Khomyak S., Volynyuk D., Hotra Z., Voznyak L., Dovbeshko G., Fesenko O., Sorokin V., Rybalochka A., Oliynyk O.
Optical Materials. 2011 33(11). p.1727
Solubility Modeling of 4-(Methylsulfonyl)benzaldehyde in Nine Organic Solvents at Elevated Temperatures
Cong Yang, Du Cunbin, Han Shuo, Xu Jian, Meng Long, Wang Jian, Zhao Hongkun
Journal of Chemical & Engineering Data. 2016 61(4). p.1657
Synthesis and Properties of Highly Photoluminescent and Electrochemically Active Polymers Containing 2‐Pyrazoline Units in the Main Chain
Fang Qiang, Jiang Biao, Xu Bing, Cao Amin
Macromolecular Rapid Communications. 2004 25(21). p.1856
Substituted 1,5-Diphenyl-3-benzothiazol-2-yl-Δ2-pyrazolines:  Synthesis, X-ray Structure, Photophysics, and Cation Complexation Properties
Rurack Knut, Bricks Julia L., Schulz Burkhard, Maus Michael, Reck Günter, Resch-Genger Ute
The Journal of Physical Chemistry A. 2000 104(26). p.6171
A Handbook for DNA‐Encoded Chemistry (2014)
Luk Kin‐Chun, Satz Alexander Lee
Microwave Assisted Synthesis and Antimicrobial Activities of Carboxylpyrazoline Derivatives: Molecular Docking and DFT Influence in Bioisosteric Replacement
Farooq Saba, Ngaini Zainab, Daud Adibah Izzati, Khairul Wan M.
Polycyclic Aromatic Compounds. 2022 42(8). p.5422
Role of the 5-aryl moiety in the photophysics of triaryl-2-pyrazolines
Blair J.T., Sahyun M.R.V., Sharma D.K.
Journal of Photochemistry and Photobiology A: Chemistry. 1994 77(2-3). p.133
Organic Reactions (1996)
Jones Gurnos, Stanforth Stephen P.
Metal-free [3+2] cycloaddition of glycosyl olefinic ester with in situ generated CF3CHN2: Access to CF3-substituted pyrazoline glycoconjugates
Javed , Mandal Pintu Kumar
Carbohydrate Research. 2020 495 p.108080
Potent and Selective Indolomorphinan Antagonists of the Kappa-Opioid Receptor
Stevens William C., Jones Robert M., Subramanian Govindan, Metzger Thomas G., Ferguson David M., Portoghese Philip S.
Journal of Medicinal Chemistry. 2000 43(14). p.2759
Molecular engineering of fluorescent bichromophore 1,3,5-triaryl-Δ2-pyrazoline and 4-amino-1,8-naphthalimide molecular logic gates
Sammut Darlene, Bugeja Nathalie, Szaciłowski Konrad, Magri David C.
New Journal of Chemistry. 2022 46(31). p.15042
Tandem Addition/Cyclization/Halogenation Reaction of Difluoromethylated N-Acylhydrazones with Allyltrimethylsilanes
Zhou Yuxiu, Ma Ransong, Li Xiaoyong, Liu Xiaokang, Wang Ke-Hu, Wang Junjiao, Huang Danfeng, Hu Yulai
The Journal of Organic Chemistry. 2023 88(24). p.17356
Redox‐Enabled, pH‐Disabled Pyrazoline–Ferrocene INHIBIT Logic Gates
Scerri Glenn J., Cini Miriam, Schembri Jonathan S., da Costa Paola F., Johnson Alex D., Magri David C.
ChemPhysChem. 2017 18(13). p.1742
Molecular engineering of 1,3,5-triaryl-2-pyrazoline fluorescent logic systems responsive to acidity and oxidisability and attachment to polymer beads
Zerafa Nicole, Cini Miriam, Magri David C.
Molecular Systems Design & Engineering. 2021 6(1). p.93
Synthesis of Difluoromethyl Pyrazolines and Pyrazoles by [3+2] Cycloaddition Reaction of Difluoroacetohydrazonoyl Bromides with Electron‐deficient Olefins
Ren Yuanyuan, Ma Ransong, Feng Yang, Wang Ke‐Hu, Wang Junjiao, Huang Danfeng, Lv Xiaobo, Hu Yulai
Asian Journal of Organic Chemistry. 2022 11(11).
ChemInform Abstract: THE PREPARATION AND SPECTRAL PROPERTIES OF SOME MONOSUBSTITUTED 1,3,5‐TRIPHENYL‐2‐PYRAZOLINES
RIVETT D. E., ROSEVEAR J., WILSHIRE J. F. K.
Chemischer Informationsdienst. 1979 10(52).
(R)-4-menthenone in reactions of 1,4-conjugate and 1,3-dipolar addition
Ishmuratov G. Yu., Latypova E. R., Kharisov P. Ya., Muslukhov R. R., Bannova A. A., Talipov R. F., Tolstikov G. A.
Russian Journal of Organic Chemistry. 2008 44(5). p.652
A study on the photoinduced charge transfer process of triaryl-2-pyrazoline compounds
Zhenglin Yan, Shikang Wu
Journal of Luminescence. 1993 54(5). p.303
1,3‐Diphenyl‐5‐(9‐phenanthryl)‐2‐pyrazoline(DPPhP): An Excellent Hole‐Transport Material for Use in Organic Light‐Emitting Diodes
Ma Chang‐Qi, Zhang Lian‐Qi, Zhou Jia‐Hong, Wang Xue‐Song, Zhang Bao‐Wen, Cao Yi, Bugnon P., Schaer M., Nüesch F., Zhang De‐Qiang, Qiu Yong
Chinese Journal of Chemistry. 2002 20(10). p.929

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