[1] A. Breccia, B. Cavalleri, G.E. Adams, Nitroimidazoles:Chemistry, Pharmacology and Clinical Applications, Plenum Press, New York, 1982. [2] H.A. Shahid, S. Jahangir, S. Yousuf, M. Hanif, S.K. Sherwani, Synthesis, crystal structure, structural characterization and in vitro antimicrobial activities of 1-methyl-4-nitro-1H-imidazole, Arab. J. Chem. 9(2016) 668-675. [3] K. Shinhama, Method of manufacturing 2-chloro-4-nitroimidazole, JP Patent 2006117655A, (2006). [4] G. Wuellner, F.W. Erkenrath, A. Juelich, Y. Yamada, S. Kawabe, Methods for the production of 2-halo-4-nitroimidazole and intermediates thereof, JP Patent 2012500183A, (2012). [5] R.T. Li, S.L. Cao, W.B. Sun, M.S. Cai, Synthesis and biological activities of 1-alky-2-methyl-4(5)-nitroimidazole derivatives, Chem. J. Chinese U. 18(1997) 1325-1328. [6] M.R. Grimmett, S.T. Hua, K.C. Chang, S.A. Foley, J. Simpson, 1,4-Dinitroimidazole and derivatives:Structure and thermal rearrangement, Aust. J. Chem. 42(1989) 1281-1289. [7] V. Sudarsanam, K. Nagarajan, T. George, S.J. Shenoy, V.V. Iyer, A.P. Kaulgud, Nitroimidazoles:Part XI. some halonitro-& dinitroimidazoles, Indian J. Chem. 21B (1982) 1022-1026. [8] K. Bhaumik, K.G. Akamanchia, 2,4-Dinitroimidazole:microwave assisted synthesis and use in synthesis of 2,3-dihydro-6-nitroimidazo[2,1-b]oxazole analogues with antimycobacterial activity, J. Heterocyclic Chem. 41(2004) 51-55. [9] S.S. Novikov, L.I. Khmel'nitskii, O.V. Lebedev, V.V. Sevast'yanova, L.V. Epishina, Nitration of imidazoles with various nitrating agents, Chem. Heterocycl. Compd. 6(1970) 465-469. [10] H.X. Gao, C.F. Ye, O.D. Gupta, J.C. Xiao, M.A. Hiskey, B. Twamley, J.M. Shreeve, 2,4,5-Trinitroimidazole-based energetic salts, Chem. Eur. J. 13(2007) 3853-3860. [11] J.R. Cho, K.J. Kim, S.G. Cho, Synthesis and characterization of 1-methyl-2,4,5-trinitroimidazole(MTNI), J. Heterocycl. Chem. 39(2002) 141-147. [12] R.G. Fargher, F.L. Pyman, XXVI.-Nitro-, arylazo-, and amino-glyoxalines, J. Chem. Soc. Trans. 115(1919) 217-260. [13] L.Z. Chen, L. Song, Y.P. Gao, A.P. Zhu, D.L. Cao, Experimental determination of solubilities and supersolubilities of 2,2',4,4',6,6'-hexanitrostilbene in different organic solvents, Chin. J. Chem. Eng. 25(2017) 809-814. [14] D.J.W. Grant, M. Mehdizadeh, A.H.L. Chow, J.E. Fairbrother, Non-linear van't Hoff solubility-temperature plots and their pharmaceutical interpretation, Int. J. Pharm. 18(1984) 25-38. [15] A. Apelblat, E. Manzurola, Solubilities of L-aspartic, DL-aspartic, DL-glutamic, phydroxybenzoic, o-anistic, p-anisic, and itaconic acids in water from T=278 K to T=345 K, J. Chem. Thermodyn. 29(1997) 1527-1533. [16] A. Apelblat, E. Manzurola, Solubilities of o-acetylsalicylic, 4-aminosalicylic, 3,5-dinitrosalicylic, and p-toluic acid, and magnesium-DL-aspartate in water from T=(278 to 348) K, J. Chem. Thermodyn. 31(1999) 85-91. [17] G.C. Lan, J.L. Wang, L.Z. Chen, H. Hou, J. Li, Y.P. Gao, Measurement and correlation of the solubility of 3,4-bis(3-nitrofurazan-4-yl)furoxan (DNTF) in different solvents, J. Chem. Thermodyn. 89(2015) 264-269. [18] H. Buchowski, A. Ksiazczak, S. Pietrzyk, Solvent activity along a saturation line and solubility of hydrogen-bonding solids, J. Phys. Chem. 84(1980) 975-979. [19] L.Z. Chen, L. Song, G.C. Lan, J.L. Wang, Solubility and metastable zone width measurement of 3,4-bis(3-nitrofurazan-4-yl)furoxan (DNTF) in ethanol + water, Chin. J. Chem. Eng. 25(2017) 646-651. [20] P.B. Lian, H.P. Zhao, J.L. Wang, L.Z. Chen, Y. Xiang, Q.H. Ren, Determination and correlation solubility of m-phenylenediamine in (methanol, ethanol, acetonitrile and water) and their binary solvents from 278.15 K to 313.15 K, Chin. J. Chem. Eng. 27(2019) 1149-1158. |