Zeitschriftenartikel zum Thema „Pyrazolone derivatives“
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Abd-Ella, Aly A., Saoud A. Metwally, Mokhtar A. Abd ul-Malik, Yasser A. El-Ossaily, Fathy M. Abd Elrazek, Safwat A. Aref, Youssra A. Naffea und Shaban A. A. Abdel-Raheem. „A review on recent advances for the synthesis of bioactive pyrazolinone and pyrazolidinedione derivatives“. Current Chemistry Letters 11, Nr. 2 (2022): 157–72. http://dx.doi.org/10.5267/j.ccl.2022.2.004.
Der volle Inhalt der QuelleEdrees, Mastoura M. „Synthesis of 4-hydrazinopyrazolo[3,4-d]pyrimidines and their Reactions with Carbonyl Compounds“. Journal of Chemical Research 37, Nr. 1 (Januar 2013): 6–10. http://dx.doi.org/10.3184/174751912x13543818811749.
Der volle Inhalt der QuelleGil-Ordóñez, Marta, Camille Aubry, Cristopher Niño, Alicia Maestro und José M. Andrés. „Squaramide-Catalyzed Asymmetric Mannich Reaction between 1,3-Dicarbonyl Compounds and Pyrazolinone Ketimines: A Pathway to Enantioenriched 4-Pyrazolyl- and 4-Isoxazolyl-4-aminopyrazolone Derivatives“. Molecules 27, Nr. 20 (17.10.2022): 6983. http://dx.doi.org/10.3390/molecules27206983.
Der volle Inhalt der QuelleGediz Erturk, Aliye, und Hilal Omerustaoglu. „Synthesis and Cytotoxic Evaluation of Some Substituted 5-Pyrazolones and Their Urea Derivatives“. Molecules 25, Nr. 4 (18.02.2020): 900. http://dx.doi.org/10.3390/molecules25040900.
Der volle Inhalt der QuellePattan, S. R., P. A. Chavan, R. A. Muluk, S. S. Dengale, S. V. Hiremath, K. D. Pansare, S. S. Vetal und J. S. Pattan. „SYNTHESIS AND BIOLOGICAL EVALUATION OF SOME HETEROCYCLES CONTAINING OXADIAZOLE AND PYRAZOLE RING FOR ANTI-BACTERIAL, ANTI-FUNGAL AND ANTI-TUBERCULAR ACTIVITIES“. INDIAN DRUGS 49, Nr. 03 (28.03.2012): 18–24. http://dx.doi.org/10.53879/id.49.03.p0018.
Der volle Inhalt der QuelleYang, Kai, Xiaoze Bao, Ye Yao, Jingping Qu und Baomin Wang. „Iodine-mediated cross-dehydrogenative coupling of pyrazolones and alkenes“. Organic & Biomolecular Chemistry 16, Nr. 34 (2018): 6275–83. http://dx.doi.org/10.1039/c8ob01645c.
Der volle Inhalt der QuelleBrogden, Rex N. „Pyrazolone Derivatives“. Drugs 32, Supplement 4 (1986): 60–70. http://dx.doi.org/10.2165/00003495-198600324-00006.
Der volle Inhalt der QuelleManojkumar, Parameswaran, Thengungal Ravi und Gopalakrishnan Subbuchettiar. „Synthesis of coumarin heterocyclic derivatives with antioxidant activity and in vitro cytotoxic activity against tumour cells“. Acta Pharmaceutica 59, Nr. 2 (01.06.2009): 159–70. http://dx.doi.org/10.2478/v10007-009-0018-7.
Der volle Inhalt der QuelleZhang, Wande, Shah Nawaz, Yue Huang, Wenjing Gong, Xingfu Wei, Jingping Qu und Baomin Wang. „C-4 benzofuranylation of pyrazolones by a metal-free catalyzed indirect heteroarylation strategy“. Organic & Biomolecular Chemistry 19, Nr. 46 (2021): 10215–22. http://dx.doi.org/10.1039/d1ob01920a.
Der volle Inhalt der QuelleBao, Xiaoze, Xingyue Wang, Jin-Miao Tian, Xinyi Ye, Baomin Wang und Hong Wang. „Recent advances in the applications of pyrazolone derivatives in enantioselective synthesis“. Organic & Biomolecular Chemistry 20, Nr. 12 (2022): 2370–86. http://dx.doi.org/10.1039/d1ob02426d.
Der volle Inhalt der QuelleNamera, Dipti L., Khushal M. Kapadiya, Mitesh M. Chhatrola und Umed C. Bhoya. „Microwave Assisted Synthesis of some Novel Sulphonamide Bearing Pyrazolone Core Structure“. International Letters of Chemistry, Physics and Astronomy 30 (März 2014): 116–26. http://dx.doi.org/10.18052/www.scipress.com/ilcpa.30.116.
Der volle Inhalt der QuelleNamera, Dipti L., Khushal M. Kapadiya, Mitesh M. Chhatrola und Umed C. Bhoya. „Microwave Assisted Synthesis of some Novel Sulphonamide Bearing Pyrazolone Core Structure“. International Letters of Chemistry, Physics and Astronomy 30 (12.03.2014): 116–26. http://dx.doi.org/10.56431/p-d7mgbf.
Der volle Inhalt der QuelleGadhave, Anil, Shashikant Kuchekar und Bhausaheb Karale. „Ultrasonication-Induced Synthesis and Antimicrobial Evaluation of Some Multifluorinated Pyrazolone Derivatives“. Journal of Chemistry 2013 (2013): 1–9. http://dx.doi.org/10.1155/2013/741953.
Der volle Inhalt der QuelleAbdel Hafez, Ali A. „Synthesis of Some Heterocyclic Sulfones Related to Quinolinol“. Collection of Czechoslovak Chemical Communications 58, Nr. 9 (1993): 2222–26. http://dx.doi.org/10.1135/cccc19932222.
Der volle Inhalt der QuelleZaiter, Jamila, Hanane Achibat, Ouafa Amiri, Abderrafia Hafid, Mostafa Khouili, El Mostapha Rakib, Cláudia M. B. Neves et al. „An easy synthetic access to new pyrazole spiro derivatives from 3-amino-1-phenyl-2-pyrazolin-5-one“. New Journal of Chemistry 39, Nr. 9 (2015): 6738–41. http://dx.doi.org/10.1039/c5nj01306b.
Der volle Inhalt der QuelleEl-Ossaily, Yasser A., Nuha M. M. Alanazi, Ibrahim O. Althobaiti, Hamud A. Altaleb, Nayef S. Al-Muailkel, Mohamed Y. El-Sayed, Modather F. Hussein et al. „Multicomponent approach to the synthesis and spectral characterization of some 3,5-pyrazolididione derivatives and evaluation as anti-inflammatory agents“. Current Chemistry Letters 13, Nr. 1 (2024): 127–40. http://dx.doi.org/10.5267/j.ccl.2023.8.003.
Der volle Inhalt der QuelleYuan, Huijun, Yao Li, Hanhui Zhao, Zhihong Yang, Xin Li und Wenjun Li. „Asymmetric synthesis of atropisomeric pyrazole via an enantioselective reaction of azonaphthalene with pyrazolone“. Chemical Communications 55, Nr. 84 (2019): 12715–18. http://dx.doi.org/10.1039/c9cc06360a.
Der volle Inhalt der QuelleA. Almehizia, Abdulrahman, Ahmad M. Naglah, Amer A. Zen, Tamer K. Khatab und Ashraf S. Hassan. „TCS/ZnCl2 as a controlled reagent for the Michael addition and heterocyclic cyclization based on the phenyl pyrazolone scaffold with docking validation as a Covid-19 protease inhibitor“. Bulletin of the Chemical Society of Ethiopia 38, Nr. 4 (30.04.2024): 1119–27. http://dx.doi.org/10.4314/bcse.v38i4.24.
Der volle Inhalt der QuelleLi, Jun-Hua, und Da-Ming Du. „Enantioselective synthesis of chiral heterocycles containing both chroman and pyrazolone derivatives catalysed by a chiral squaramide“. Organic & Biomolecular Chemistry 13, Nr. 20 (2015): 5636–45. http://dx.doi.org/10.1039/c4ob02653e.
Der volle Inhalt der QuelleHamama, Wafaa S., Mohamed A. Ismail, Hana’a A. Al-Saman und Hanafi H. Zoorob. „Convenient Selective Synthesis of Substituted Pyrido[2,3-d]pyrimidones and Annulated Derivatives“. Zeitschrift für Naturforschung B 62, Nr. 1 (01.01.2007): 104–10. http://dx.doi.org/10.1515/znb-2007-0115.
Der volle Inhalt der QuelleHassan, Alaa A., Yusria R. Ibrahim und Ahmed M. Shawky. „Reactions of Substituted Carbohydrazides with Electron-poor Olefins“. Zeitschrift für Naturforschung B 63, Nr. 8 (01.08.2008): 998–1004. http://dx.doi.org/10.1515/znb-2008-0813.
Der volle Inhalt der QuelleLeleu-Chavain, Natascha, Romain Regnault, Hania Ahouari, Raphaël Le Biannic, Mostafa Kouach, Frédérique Klupsch, Romain Magnez et al. „Antioxidant Properties and Aldehyde Reactivity of PD-L1 Targeted Aryl-Pyrazolone Anticancer Agents“. Molecules 27, Nr. 10 (21.05.2022): 3316. http://dx.doi.org/10.3390/molecules27103316.
Der volle Inhalt der QuelleCho, Joungmo, Venkata Subbaiah Sadu, Yohan Han, Yunsoo Bae, Hwajeong Lee und Kee-In Lee. „Structural Requirements of 1-(2-Pyridinyl)-5-pyrazolones for Disproportionation of Boronic Acids“. Molecules 26, Nr. 22 (11.11.2021): 6814. http://dx.doi.org/10.3390/molecules26226814.
Der volle Inhalt der QuelleMahajan, Suruchi, Pankaj Chauhan, Uğur Kaya, Kristina Deckers, Kari Rissanen und Dieter Enders. „Enantioselective synthesis of pyrazolone α-aminonitrile derivatives via an organocatalytic Strecker reaction“. Chemical Communications 53, Nr. 49 (2017): 6633–36. http://dx.doi.org/10.1039/c7cc02874a.
Der volle Inhalt der QuelleShyshkina, Olena O., Volodymyr V. Medviediev, Oleg V. Shishkin, Andrii I. Kysil und Yulian M. Volovenko. „Unexpected synthesis of pyrazolone derivatives“. Tetrahedron 71, Nr. 8 (Februar 2015): 1283–86. http://dx.doi.org/10.1016/j.tet.2014.12.082.
Der volle Inhalt der QuelleAchuthanandhan, Jyothi, und Baskar Lakshmanan. „Docking studies of tetra substituted pyrazolone derivatives as potential antiviral agents“. JOURNAL OF PHARMACEUTICAL CHEMISTRY 5, Nr. 2 (20.12.2018): 5–8. http://dx.doi.org/10.14805/jphchem.2018.art103.
Der volle Inhalt der QuelleParveen, Mehtab, Shaista Azaz, Ali Mohammed Malla, Faheem Ahmad, Musheer Ahmad und Mayank Gupta. „An SiO2/ZnBr2 mediated expeditious approach to 3-methyl-1-phenyl-1H-pyrazol-5(4H)-one derivatives in water under microwave irradiation“. RSC Advances 6, Nr. 1 (2016): 148–62. http://dx.doi.org/10.1039/c5ra21146h.
Der volle Inhalt der QuelleAhmed, Badie, und Jasim Abdullah. „Ultrasound Assisted Synthesis Of Pyrazolone Derivatives“. JOURNAL OF EDUCATION AND SCIENCE 26, Nr. 5 (01.12.2013): 57–63. http://dx.doi.org/10.33899/edusj.2013.163055.
Der volle Inhalt der QuellePavlov, P. T., A. F. Goleneva, A. E. Lesnov und T. S. Prokhorova. „Biological activity of some pyrazolone derivatives“. Pharmaceutical Chemistry Journal 32, Nr. 7 (Juli 1998): 370–72. http://dx.doi.org/10.1007/bf02645994.
Der volle Inhalt der QuelleIshihara, Yoshimi, Takeyuki Ito, Hiroshi Saito und Jiro Takano. „Reaction of acridine with pyrazolone derivatives“. Journal of Heterocyclic Chemistry 42, Nr. 5 (Juli 2005): 963–67. http://dx.doi.org/10.1002/jhet.5570420533.
Der volle Inhalt der QuelleZonouz, Adeleh Moshtaghi, Masoumeh Beiranvand, Rahim Mohammad-Rezaei und Soheila Naderi. „Green and Efficient Synthesis of Fluorescent Bis(pyrazolyl)methanes in Choline Chloride/Urea Deep Eutectic Solvent“. Letters in Organic Chemistry 17, Nr. 7 (07.07.2020): 548–54. http://dx.doi.org/10.2174/1570178617666191111121813.
Der volle Inhalt der QuelleKashinath, Dhurke, Kota Sathish und Sakkani Nagaraju. „Synthesis of Spiro Pyrazolone-Oxindole and Bicyclic Pyrazolone Derivatives via Solvent-Dependent Regioselective Aza-1,4/1,6-Michael and Intramolecular Cycloaddition under Catalyst-Free Conditions“. SynOpen 05, Nr. 02 (13.04.2021): 123–33. http://dx.doi.org/10.1055/a-1480-9837.
Der volle Inhalt der QuelleGuo, Jixi, Yucai Zhang, Dianzeng Jia, Mingxi Guo und Yinhua Li. „Design and synthesis of reversible solid-state photochromic pyrazolones by introducing a pyridine ring“. Photochemical & Photobiological Sciences 15, Nr. 10 (2016): 1222–26. http://dx.doi.org/10.1039/c6pp00119j.
Der volle Inhalt der QuelleWang, Jun, Guan-Cheng Xu, Yan-Ping Zhang, Hua-Ying Luo, Jin-Yao Li, Li Zhang und Dian-Zeng Jia. „Copper(ii) complexes with 4-acyl pyrazolone derivatives and diimine coligands: synthesis, structural characterization, DNA binding and antitumor activity“. New Journal of Chemistry 43, Nr. 6 (2019): 2529–39. http://dx.doi.org/10.1039/c8nj02695e.
Der volle Inhalt der QuelleDeyab, M. A., A. S. Fouda, M. M. Osman und S. Abdel-Fattah. „Mitigation of acid corrosion on carbon steel by novel pyrazolone derivatives“. RSC Advances 7, Nr. 71 (2017): 45232–40. http://dx.doi.org/10.1039/c7ra08761f.
Der volle Inhalt der QuelleAo, Chaoqun, Jingjing Huang, Xinfang Xu, Shikun Jia, Zhenghui Kang und Wenhao Hu. „A Rh-catalyzed three-component reaction for the diastereoselective synthesis of pyrazolone derivatives with contiguous quaternary stereocenters“. Organic & Biomolecular Chemistry 18, Nr. 18 (2020): 3466–70. http://dx.doi.org/10.1039/d0ob00482k.
Der volle Inhalt der QuelleMarzouk, Magda Ismail, Galal Hosni Sayed, Mohamed Said Abd ElHalim und Salma Yehia Mansour. „Synthesis and characterization of novel pyrazolone derivatives“. European Journal of Chemistry 5, Nr. 1 (31.03.2014): 24–32. http://dx.doi.org/10.5155/eurjchem.5.1.24-32.870.
Der volle Inhalt der QuelleRadini, Ibrahim. „Design, Synthesis, and Antimicrobial Evaluation of Novel Pyrazoles and Pyrazolyl 1,3,4-Thiadiazine Derivatives“. Molecules 23, Nr. 9 (21.08.2018): 2092. http://dx.doi.org/10.3390/molecules23092092.
Der volle Inhalt der QuelleDe Crescentini, L., F. R. Perrulli, G. Favi, S. Santeusanio, G. Giorgi, O. A. Attanasi und F. Mantellini. „Reactions of 1,2-diaza-1,3-butadienes with propargyl alcohol as an approach to novel bi-heterocyclic systems“. Organic & Biomolecular Chemistry 14, Nr. 37 (2016): 8674–78. http://dx.doi.org/10.1039/c6ob01595f.
Der volle Inhalt der QuelleLi, Jun-Hua, und Da-Ming Du. „Correction: Enantioselective synthesis of chiral heterocycles containing both chroman and pyrazolone derivatives catalysed by a chiral squaramide“. Organic & Biomolecular Chemistry 13, Nr. 26 (2015): 7337. http://dx.doi.org/10.1039/c5ob90099a.
Der volle Inhalt der QuelleMOHAMMAD, Abeer Essa, Munther Abduljaleel MUHAMMAD-ALI und Ekhlas Qanber JASIM. „SYNTHESIS, DOCKING STUDY, AND BIOLOGICAL EVALUATION OF 4-AMINOANTIPYRINE-ISONIAZID DERIVATIVES AS A HYBRID ANTIBACTERIAL AND ANALGESIC AGENTS“. Periódico Tchê Química 19, Nr. 42 (11.10.2022): 12–28. http://dx.doi.org/10.52571/ptq.v19.n42.2022.02_munther_pgs_12_28.pdf.
Der volle Inhalt der QuelleRegnault, Romain, Frédérique Klupsch, Hassiba El-Bouazzati, Romain Magnez, Raphaël Le Biannic, Natascha Leleu-Chavain, Hania Ahouari et al. „Novel PD-L1-Targeted Phenyl-Pyrazolone Derivatives with Antioxidant Properties“. Molecules 28, Nr. 8 (15.04.2023): 3491. http://dx.doi.org/10.3390/molecules28083491.
Der volle Inhalt der QuelleSun, Bing-Bing, Jun-Bo Chen, Jun-Qi Zhang, Xiao-Peng Yang, Hao-Peng Lv, Zheng Wang und Xing-Wang Wang. „Organo-catalyzed asymmetric cascade annulation reaction for the construction of bi-spirocyclic pyrazolone and oxindole derivatives“. Organic Chemistry Frontiers 7, Nr. 5 (2020): 796–809. http://dx.doi.org/10.1039/d0qo00001a.
Der volle Inhalt der QuelleArora, Kishor. „In-Silico QSAR Studies of Some Pyrazolone Compounds“. European Journal of Advanced Chemistry Research 4, Nr. 4 (18.10.2023): 1–8. http://dx.doi.org/10.24018/ejchem.2023.4.4.148.
Der volle Inhalt der QuelleEl-Mahdy, Kamelia. „Synthesis of Some New Tetracyclic Pyrimidine Derivatives Using Exocyclic α,β-Unsaturated Ketone and Evaluation of Their Antitumor Activities“. JOURNAL OF ADVANCES IN CHEMISTRY 12, Nr. 8 (01.05.2016): 311–17. http://dx.doi.org/10.24297/jac.v12i8.2840.
Der volle Inhalt der QuelleEl-Mahdy, Kamelia. „Synthesis of Some New Tetracyclic Pyrimidine Derivatives Using Exocyclic α,β-Unsaturated Ketone and Evaluation of Their Antitumor Activities“. JOURNAL OF ADVANCES IN CHEMISTRY 4, Nr. 1 (19.04.2008): 311–17. http://dx.doi.org/10.24297/jac.v4i1.960.
Der volle Inhalt der QuelleAshtekar, Harsha, Prarambh S. R. Dwivedi, Natasha Aggarwal, Zeena Fernandes und Nimmy Varghese. „In-silico Validation of Pyrazolone Derivatives as the Potent Scaff old for Modulating Protein Abnormalities Associated with Parkinson’s Disease“. INTERNATIONAL JOURNAL OF DRUG DELIVERY TECHNOLOGY 13, Nr. 01 (25.03.2023): 1–9. http://dx.doi.org/10.25258/ijddt.13.1.01.
Der volle Inhalt der QuelleYoon, Sanghyun, Byunghun Choi, Md Morshedur Rahman, Santosh Kumar, Shekh Md Mamun Kabir und Joonseok Koh. „Dyeing of Polyester with 4-Fluorosulfonylphenylazo-5-pyrazolone Disperse Dyes and Application of Environment-Friendly Aftertreatment for Their High Color Fastness“. Materials 12, Nr. 24 (14.12.2019): 4209. http://dx.doi.org/10.3390/ma12244209.
Der volle Inhalt der QuellePégurier, Cécile, Philippe Collart, Pierre Danhaive, Sabine Defays, Michel Gillard, Frédéric Gilson, Thierry Kogej et al. „Pyrazolone methylamino piperidine derivatives as novel CCR3 antagonists“. Bioorganic & Medicinal Chemistry Letters 17, Nr. 15 (August 2007): 4228–31. http://dx.doi.org/10.1016/j.bmcl.2007.05.035.
Der volle Inhalt der QuelleWang, Jin-Jun, Bing-Zhu Yin, Gui-Ji Jiang und Kimiaki Imafuku. „Synthesis of isochroman-fused pyrazolone and pyrimidine derivatives“. Journal of Heterocyclic Chemistry 27, Nr. 5 (Juli 1990): 1181–84. http://dx.doi.org/10.1002/jhet.5570270504.
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