[1] P. N. Kalaria, S. C. Karad, D. K. Raval, Eur. J. Med. Chem. 2018, 158, 917–936. doi: 10.1016/j.ejmech.2018.08.040.
[2] N. Desai, A. Trivedi, U. Pandit, A. Dodiya, V. K. Rao, P. Desai, Mini. Rev. Med. Chem. 2016, 16, 1500–1526. doi: 10.2174/1389557516666160609075620.
[3] M. M. Fouad, E. R. El-Bendary, G. M. Suddek, I. A. Shehata, M. M. El-Kerdawy, Bioorg. Chem. 2018, 81, 587–598. doi: 10.1016/j.bioorg.2018.09.022.
[4] P. Martins, J. Jesus, S. Santos, L. R. Raposo, C. Roma-Rodrigues, P. V. Baptista, A. R. Fernandes, Molecules 2015, 20, 16852–16891. doi: 10.3390/molecules200916852.
[5] a) N. Siddiqui, S. Andalip Bawa, R. Ali, O. Afzal, M. J. Akhtar, B. Azad, R. Kumar, J. Pharm. Bioallied. Sci. 2011, 3, 194–212. DOI: 10.4103/0975-7406.80765; b) Yamama Z. Hani1 , Israa G. Zainal, Firyal W. Asker, Luban H. Jasim Chemical Methodologies 2023, 7, 372-382. Doi:10.22034/chemm.2023.379917.1641; c) M. H. Mohammed Al-Dahlaki; Suaad M.H. Al-Majidi, Chem. Methodol. 2022, 6, 269-279. Doi:10.22034/chemm.2022.320935.1412.
[6] a) A. S. Sokolova, O. I. Yarovaya, N. I. Bormotov, L. N. Shishkina, N. F. Salakhutdinov, Med. Chem. Comm. 2018, 9, 1746–1753. doi.org/10.1039/C8MD00347E; b) Muna Abdul Jaleel Turki; Sana Hitur Awad; Sura K. Ibrahim, Chem. Methodol. 2022, 6, 649-660. DOI:10.22034/CHEMM.2022.336625.1472.
[7] A. Goel, N. Agarwal, F. V. Singh, A. Sharon, P. Tiwari, M. Dixit, R. Pratap, A. K. Srivastava, P. R. Maulik, V. Ram, J. Bioorg. Med. Chem. Lett. 2004, 14, 1089–1092. Doi:10.1016/j.bmcl.2004.01.009.
[8] M. Amir, S. A. Javed, H. Kumar, Indian. J. Pharm. Sci. 2007, 69, 337–343. DOI: 10.4103/0250-474X.34540.
[9] W. Li, S. J. Zhao, F. Gao, Z. S. Lv, J. Y. Tu, Z. Xu, Chemistry Select 2018, 3, 10250–10254. DOI: 10.1002/slct.201802185.
[10] a) X. Zhao, S. T. Chaudhry, J. Mei, Heterocyclic building blocks for organic semiconductors. Heterocyclic chemistry in the 21st Century a Tribute to Alan Katritzky 2017, 121, 133–171; b) Zainab A. K. Al-Messri Chemical Methodologies 2023, 7, 581-593. Doi:10.22034/chemm.2023.393061.1669; c) Arunkumar Patil, Somnath Udgire, D. R. Shinde, Prakash D. Patil Chemical Methodologies 2023, 7, 15-27. Doi:10.22034/chemm.2023.355289.1597.
[11] T. A. Khattab, M. A. Rehan. Egypt. J. Chem. 2018, 61, 989–1018. Doi: 10.21608/EJCHEM.2018.4131.1363.
[12] a) C. Lamberth, J. Dinges, Bioactive heterocyclic compound classes: agrochemicals. Wiley-VCH Verlag GmbH & Co, KGaA, 2012; b) Tahmineh Kohanfekr , Mohammad Hakimi, Hassan Hassani , Hasan Ali Hosseini Chemical Methodologies 2023, 7, 748-760. Doi:10.48309/chemm.2023.414603.1718; c) Camelia Gholamrezazadeh , Mohammad Hakimi, Mehdi Dadmehr, Chemical Methodologies 2023, 7, 945-962. Doi:10.48309/chemm.2023.414603.1718.
[13] a) A. Domling and I. Ugi, Angew. Chem., Int. Ed., 2009, 39, 3168–3210. DOI: 10.1002/1521-3773(20000915); b) O. Ghashghaei, F. Seghetti and R. Lavilla, Beilstein J. Org. Chem., 2019, 15, 521–534. doi.org/10.3762/bjoc.15.46; c) Shamsalmiluk Mohammed Abdulghani, Muna Sameer Al-Rawi , Jumbad Hermiz Tomma, Chemical Methodologies 2022, 6, 59-66. doi.org/10.22034/chemm.2022.1.6; d) Fazeli-Nasab B, Shahraki-Mojahed L, Beigomi Z, Beigomi M, Pahlavan A Chemical Methodologies 2022, 6, 24-40. DOI: 10.22034/chemm.2022.1.3.
[14] a) I. A. Ibarra, A. Islas-Jácome, E.González-Zamora, Org. Biomol. Chem. 2018, 16, 1402–1418. Doi:10.1039/C7OB02305G; b) Fayyadh Abed Nashaan , Muna Sameer Al-Rawi Chemical Methodologies 2023, 7, 106-111. doi.org/10.22034/chemm.2023.362512.1610; c) Fayyadh Abed Nashaan , Muna Sameer Al-Rawi, Chemical Methodologies 2023, 7, 267-276. doi.org/10.22034/chemm.2023.366582.1619. d) Saad Salem Jasim, Jawdat Hilmi Abdulwahid, Shakhawan Beebany, Bari Lateef Mohammed, Chemical Methodologies 2023, 7, 509-523. doi.org/10.22034/chemm.2023.392659.1668.
[15] a) L. F. Tietze, C. Bsasche, K. M. Gericke, Domino reactions in organic synthesis. Wiley-VCH, Weinheim, 2006; b) Mohammad M. Al-Tufah, Shakhawan Beebaeny , Saad Salem Jasim , Bari Lateef Mohammed, Chemical Methodologies 2023, 7, 408-418. Doi:10.22034/chemm.2023.388126.1654.
[16] a) Israa Sattar Gatea, Entesar. O. Al-Tamimi Chemical Methodologies 2022, 6, 446-456. DOI:10.22034/CHEMM.2022.335635.1465. b) Mohammed Reda , Abbas Ali Salih Al-Hamdani Chemical Methodologies 2022, 6, 475-493. DOI:10.22034/CHEMM.2022.335815.1468.
[17] R. P. Herrera, Marqués-López, E. Multicomponent reactions: concepts and applications for design and synthesis. Wiley, Hoboken 2015.
[18] (a) Y.-S. Chong, S. Anwar and K. Chen, Mini-Rev. Org. Chem., 2018, 15, 364. DOI: 10.2174/1570193X15666171228145726; (b) D. Jo and S. Han, Chem. Commun., 2018, 54, 6750. doi.org/10.1039/C8CC02315H. (c) A. Quintavalla, Curr. Med. Chem., 2018, 25, 917. doi: 10.2174/0929867324666171106162259. ; (d) E. Chupakhin, O. Babich, A. Prosekov, L. Asyakina and M. Krasavin, Molecules, 2019, 24, 4165. https://doi.org/10.3390/molecules24224165; (e) S. Mandal and B. Thirupathi, Org. Biomol. Chem., 2020, 18, 5287. https://doi.org/10.1039/D0OB00954G.
[19] a) Y. Zheng, C. M. Tice and S. B. Singh, Bioorg. Med. Chem. Lett., 2014, 24, 3673–3682. Doi:10.1016/j.bmcl.2014.06.081; b) Y. J. Zheng and C. M. Tice, Expert Opin. Drug Discovery, 2016, 11, 831–834. doi: 10.1080/17460441.2016.1195367.
[20] R. Sahay, J. Sundaramurthy, P. Suresh Kumar, V. Thavasi, S. G. Mhaisalkar, S. Ramakrishna, J. Solid State Chem.,2012, 186, 261.Doi:org/10.1016/j.jssc.2011.12.013.
[21] B.T. Zhang, X. Zheng, H.-F. Li, J.-M. Lin, Anal. Chim. Acta, 2013, 784, 1. doi: 10.1016/j.aca.2013.03.054.
[22] T. Xin, M. Ma, H. Zhang, J. Gu, S. Wang, M. Liu, Q. Zhang, Appl. Surf. Sci. 2014, 288, 51. doi: 10.1016/j.apsusc.2013.09.108.
[23] J. Jing, J. Li, J. Feng, W. Li, W.W. Yu, Chem. Eng. J. 2013, 219, 355. Doi:10.1016/j.cej.2012.12.058
[24] K. Mandel, F. Hutter, C. Gellermann, G. Sextl, Sep. Purif. Technol. 2013, 109, 144. Doi:10.1016/j.seppur.2013.03.002.
[25] A. B. Djurišić, X. Chen, Y. H. Leung, A. Man, J. Mater, Chem.,2012, 22,6526-6535. https://doi.org/10.1039/C2JM15548F.
[26] (a) B. Halliwell, Free Radical Res. 1999, 31, 261–272. DOI: 10.1080/10715769900300841; (b) F. Ahmadi, M. Kadivar, M. Shahedi, Food Chem. 2007, 105, 57–64. doi:10.1016/j.foodchem.2007.03.056.
[27] M. A. Babizhayev, A. I. Deyev, V. N. Yermakovea, I.V. Brikman, J. Bours, Drugs R D 2004, 5, 125–139. doi: 10.2165/00126839-200405030-00001.
[28] L. Liu, M. Meydani, Nutr. Rev. 2002, 60, 368–371. DOI: 10.1301/00296640260385810.
[29] (a) E. Ezzatzadeh, E. Pourghasem, S. Fallah Iri Sofla, Journal of Essential Oil 2014, 17, 577-583. doi.org/10.1080/0972060X.2014.901616; b) S. Naderi, R. Sandaroos; S. Peiman; B. Maleki, Chem. Methodol. 2023, 7, 392-404. DOI:10.22034/CHEMM.2023.385248.1651; c) E. Ezzatzadeh, Z.S. Hossaini, R. Rostamian, S. Vaseghi, S. F. Mousavi, Journal of Heterocyclic Chemistry 2017, 54 (5), 2906-2911. https://doi.org/10.1002/jhet.2900; d) M. Mohammadi, F. Alirezapour, A. Khanmohammadi, Theoretical Chemistry Accounts 2021, 140 (8), 104. DOI: 10.1007/s00214-021-02813-1
[30] (a) M. Mohammadi, A. Khanmohammadi, Theoretical Chemistry Accounts 2019, 138 (8), 101. Doi.org/10.1007/s00214-019-2492-4; b) S. Saeednia, P. Iranmanesh, M. Hatefi Ardakani, M. Mohammadi, Gh. Norouzi, Materials Research Bulletin 2016, 78, 1-10. DOI: 10.1016/j.materresbull.2016.02.010; c) A. Khanmohammadi, M. Mohammadi; Journal of the Chilean Chemical Society 2019, 64 (1), 4337-4344. doi.org/10.4067/s0717-97072019000104337; d) M Pirgheibi, M Mohammadi, A Khanmohammadi, Structural Chemistry 2021, 32 (4), 1529-1539. Doi.org/10.1007/s11224-021-01728-8; e) Mohammad M. Al-Tufah; Shakhawan Beebaeny; Saad Salem Jasim; Bari Lateef Mohammed, Chem. Methodol. 2023, 7, 408-418. Doi:10.22034/chemm.2023.388126.1654.
[31] a) N. Karami Hezarcheshmeh, F. Godarzbod, N. Faal Hamedanii, S. Vaseghi, Polycyclic Aromatic Compounds, 2023, 1-23. Doi.org/10.1080/10406638.2022.2162553; b) N. Karami Hezarcheshmeh, J. Azizian Polycyclic Aromatic Compounds 2022, 42 (10), 7686-7696. Doi.org/10.1080/10406638.2021.2006250; c) N. K. Hezarcheshmeh, J. Azizian, Molecular Diversity 2022, 26 (4), 2011-2024. Doi:10.1007/s11030-021-10311-6; d) Khadija F. Mohammed; Hasan A. Hasan, Chem. Methodol. 2022, 6, 905-913. DOI:10.22034/CHEMM.2022.353591.1584; e) Taghreed Q. Abd Alkareem; Enass J. Waheed, Chem. Methodol. 2022, 6, 914-928. Doi.org/10.22034/chemm.2022.342599.1528.
[32] a) F. Sheikholeslami-Farahani, A. S. Shahvelayati, Bulg. Chem. Commun 2015, 47, 830-836; b) F. Sheikholeslami-Farahani, Asian Journal of Nanosciences and Materials 2022, 5, 132-143. Doi.org/10.26655/AJNANOMAT.2022.2.5; c) E. Ezzatzadeh, F. Sheikholeslami-Farahani, K. Yadollahzadeh, S. Rezayati; Combinatorial Chemistry & High Throughput Screening 2021, 24 (9), 1465-1475. Doi.org/10.2174/1386207323666201007154343; d) Zainab A. K. Al-Messri, Chemical Methodologies 2023, 7, 581-593. Doi.org/10.22034/chemm.2023.393061.1669; e) Zahraa Q. Mahdi; Mahasin F. Alias, Chem. Methodol. 2022, 6, 929-939. DOI:10.22034/CHEMM.2022.355688.1591
[33] a) S. Esfahani, J. Akbari, S. Soleimani-Amiri, M. Mirzaei, AG Gol, Diamond and Related Materials 135, 109893. https://doi.org/10.1016/j.diamond.2023.109893; b) M. Z. Kassaee, E. Motamedi, M. Majdi, A. Cheshmehkani, S. Soleimani-Amiri, F. Buazar, Journal of Alloys and Compounds 2008, 453 (1-2), 229-232. Doi.org/10.1016/j.jallcom.2007.06.002; c) S. Soleimani‐Amiri, Z. S. Hossaini, M. Arabkhazaeli, H. Karami, Journal of the Chinese Chemical Society 2019, 66 (4), 438-445. https://doi.org/10.1002/jccs.201800199; d) Rasha Khider Hussain Al-Daffay, Abbas Ali Salih Al-Hamdani Chemical Methodologies 2022, 6, 507-521. Doi.org/10.22034/chemm.2022.335777.1467; e) Amna Ahmed Neamah, Asmaa Mohammed Noori Khaleel Chemical Methodologies 2022, 6, 372-384. Doi.org/10.22034/chemm.2022.333061.1451.
[34] a) M. Ghashghaee, M. Ghambarian, Z. Azizi, Black phosphorus: synthesis, properties and applications, 2020, 59-72. DOI:10.1007/978-3-030-29555-4; b) S Reihani, Z Azizi, M Khaleghian, H Passdar, L Pishkar, R Ahmadi, Journal of Physical & Theoretical Chemistry 2007, 4 (2), 51-56; c) S. Soleimani‐Amiri, M. Koohi, Z. Azizi Journal of the Chinese Chemical Society 2018, 65, 1453-1464. Doi.org/10.1002/jccs.201800163; d) Mohammed Hasan Mohammed Al-Dahlaki, Suaad M.H. Al-Majidi Chemical Methodologies 2022, 6, 269-279. https://doi.org/10.22034/chemm.2022.320935.1412; e) Ashok P. Acharya, Milind V. Gaikwad, Bhaskar S. Dawane Chemical Methodologies 2022, 6, 339-346. https://doi.org/10.22034/chemm.2022.329102.1441.
[35] a) MZ Kassaee, M Ghambarian, SM Musavi, FA Shakib, MR Momeni Journal of Physical Organic Chemistry 2009, 22 (10), 919-924. Doi.org/10.1002/poc.1540; b) M Ghadiri, M Ghashghaee, M Ghambarian Physical Chemistry Chemical Physics 2020, 22 (27), 15549-15558. Doi.org/10.1039/D0CP02013C; c) M Ghambarian, Z Azizi, M Ghashghaee Black phosphorus: synthesis, properties and applications, 2020, 1-30. DOI:10.1007/978-3-030-29555-4; d) Shirzadi P, Masomi M, Nazemi A Chemical Methodologies 2022, 6, 197-211. Doi:10.22034/chemm.2022.317992.1403; e) Jasem N, Al-Quzweny M, Alsammarraie A Chemical Methodologies 2022, 6, 237-245. Doi:10.22034/chemm.2022.322390.1416.
[36] FK Feizabad, K Khandan-Barani, A Hassanabadi, Journal of Chemical Research 2017, 41, 673-675. https://doi.org/10.3184/174751917X151056906628; b) MT Maghsoodlou, K Khandan-Barani, N Hazeri, SM Habibi-Khorasani, Research on Chemical Intermediates 2014, 40, 779-785. https://doi.org/10.1007/s11164-012-1002-2; c) E Ezzatzadeh, S Soleimani-Amiri, Z Hossaini, K Khandan Barani, Frontiers in Chemistry 2022, 10, 1001707. https://doi.org/10.3389/fchem.2022.1001707; d) Abdulameer J, Alias M Chemical Methodologies 2022, 6, 184-196; e) Masjedi M, Nateghi L, Berenjy S, Eshaghi M Chemical Methodologies 2022, 6, 212-227. DOI:10.22034/chemm.2022.316157.1398
[37] a) I Yavari, Z Hossaini, M Sabbaghan Tetrahedron Letters 2008, 49 (5), 844-846, doi:10.1016/j.tetlet.2007.11.174; b) I Yavari, Z Hossaini, E Karimi, Monatshefte für Chemie-Chemical Monthly 2007, 138, 1267-1271. Doi:10.1007/s00706-007-0711-5; c) B Azizi, MRP Heravi, Z Hossaini, A Ebadi, E Vessally RSC advances 2021, 11 (22), 13138-13151. DOI: 10.1039/D0RA09848E; d) R Katal, S Masudy-Panah, M Sabbaghan, Z Hossaini, MHDA Farahani Separation and Purification Technology 2020, 250, 117239. doi.org/10.1016/j.seppur.2020.117239.
[38] a) B Norouzi, A Malekan, M Moradian Russian Journal of Electrochemistry 2016, 52, 330-339. /doi.org/10.1134/S1023193516040108; b) SMH Khorassani, MT Maghsoodlou, A Ebrahimi, H Roohi, Phosphorus, Sulfur, and Silicon 2006, 181 (5), 1103-1115. DOI:10.1080/10426500500326446; c) T Pezeshkvar, B Norouzi, M Moradian, A Mirabi Journal of Solid State Electrochemistry 2022, 26 (6-7), 1479-1492. DO:10.1007/s10008-022-05182-2; d) B Norouzi, M Moradian, A Malekan Portugaliae Electrochimica Acta 2015, 33 (2), 111-124. DOI: 10.4152/pea.201502111.
[39] a) MR Nazari, V Abdossi, FZ Hargalani, K Larijani Scientific Reports 2022, 12, 6156. https://doi.org/10.1038/s41598-022-10109-y; b) M Abbasi, F Zamani Hargalani, S Afrashteh, R Rostamian Canadian Journal of Chemistry 2019, 97, 848-855. https://doi.org/10.1139/cjc-2019-0167; c) Dhahir Z, Turkie N Chemical Methodologies 2022, 6, 91-102. DOI: 10.22034/chemm.2022.2.2; d) Faehad M, Shafiq N, Arshad U, Radhi A Chemical Methodologies 2022, 6, 122-136; DOI: 10.22034/chemm.2022.2.5 e) Kareem F, Hammood M Chemical Methodologies 2022, 6, 41-51; DOI: 10.22034/chemm.2022.1.4.
[40] a) Mohammad M. Al-Tufah; Shakhawan Beebaeny; Saad Salem Jasim; Bari Lateef Mohammed, Chem. Methodol. 2023, 7, 408-418. doi.org/10.22034/chemm.2023.388126.1654; b) Khadija F. Mohammed; Hasan A. Hasan, Chem. Methodol. 2022, 6, 905-913, DOI:10.22034/CHEMM.2022.353591.1584; c) Taghreed Q. Abd Alkareem; Enass J. Waheed, Chem. Methodol. 2022, 6, 914-928. doi.org/10.22034/chemm.2022.342599.1528; d) Zahraa Q. Mahdi; Mahasin F. Alias, Chem. Methodol. 2022, 6, 929-939. DOI:10.22034/CHEMM.2022.355688.1591.
[41] a) Fayyadh Abed Nashaan; Muna Sameer Al-Rawi, Chem. Methodol. 2023, 7, 267-276. Doi:10.22034/chemm.2023.366582.1619; b) Reza Taghavi; Sadegh Rostamnia, Chem. Methodol. 2022, 6, 639-648. doi.org/10.22034/chemm.2022.340599.1511; c) Muna Abdul Jaleel Turki; Sana Hitur Awad; Sura K. Ibrahim, Chem. Methodol. 2022, 6, 649-660. DOI:10.22034/CHEMM.2022.336625.1472; d) Mohammed Hasan Mohammed Al-Dahlaki; Suaad M.H. Al-Majidi, Chem. Methodol. 2022, 6, 269-279. doi.org/10.22034/chemm.2022.320935.1412.
[42] K. Shimada, K. Fujikawa, K. Yahara, T. Nakamura, J. Agric. Food Chem. 1992, 40, 945–948. https://doi.org/10.1021/jf00018a005
[43] Yen G. C.; Duh P. D.; J. Agric. Food Chem. 1994, 42, 629–632. Doi;10.1021/jf00039a005.
[44] Yildirim A.; Mavi A.; Kara A. A.; J. Agric. Food Chem., 2001, 49, 4083-4089. DOI: 10.1021/jf0103572
[45] Saundane A. R.; Nandibeoor M. K.; Monatsh Chem. 2015, 146, 1751. https://doi.org/10.1007/s00706-015-1440-9
[46] Bidchol A. M.; Food Bioprocess Techol,. 2011, 4, 1137. DOI:10.1007/s11947-009-0196-9.