Theoretical Exploration about the Detonation Performance and Thermal Stability of the Nitro-substituted Derivatives of Guanine
- Corresponding author: Bu-Tong LI, libutong@hotmail.com Lu-Lin LI, lulin.li@outlook.com
Citation:
Bu-Tong LI, Lu-Lin LI, Ju PENG. Theoretical Exploration about the Detonation Performance and Thermal Stability of the Nitro-substituted Derivatives of Guanine[J]. Chinese Journal of Structural Chemistry,
;2021, 40(4): 409-414.
doi:
10.14102/j.cnki.0254-5861.2011-2954
Jensen, T. L.; Moxnes, J. F.; Kjønstad, E. F.; Unneberg, E. A study of the detonation properties, propellant impulses, impact sensitivities and synthesis of nitrated anta and nto derivatives. Cent. Eur. J. Energetic Mater. 2016, 13, 445−467.
doi: 10.22211/cejem/64995
Carvalho, T. M. T.; Amaral, L. M. P. F.; Morais, V. M. F.; Ribeiro da Silva, M. D. M. C. Calorimetric and computational studies for three nitroimidazole isomers. J. Chem. Thermodyn. 2017, 105, 267−275.
doi: 10.1016/j.jct.2016.10.026
Ravi, P. Experimental study and ab-initio calculations on the molecular structure, infrared and raman spectral properties of dinitroimidazoles. Chem. Data Collect. 2017, 9−10, 11−23.
Eberly, J. O.; Mayo, M. L.; Carr, M. R.; Crocker, F. H.; Indest, K. J. Detection of hexahydro-1,3-5-trinitro-1,3,5-triazine (RDX) with a microbial sensor. J. Gen. Appl. Microbiol. 2019, 64, 139−144.
Ariyarathna, T.; Ballentine, M.; Vlahos, P.; Smith, R. W.; Cooper, C.; Bohlke, J. K.; Fallis, S.; Groshens, T. J.; Tobias, C. Tracing the cycling and fate of the munition, hexahydro-1,3,5-trinitro-1,3,5-triazine in a simulated sandy coastal marine habitat with a stable isotopic tracer, (15)N-[RDX]. Sci. Total Environ. 2019, 647, 369−378.
doi: 10.1016/j.scitotenv.2018.07.404
Wu, J.; Huang, Y.; Yang, L.; Geng, D.; Wang, F.; Wang, H.; Chen, L. Reactive molecular dynamics simulations of the thermal decomposition mechanism of 1,3,3-trinitroazetidine (TNAZ). ChemPhysChem. 2018, 2683−2695.
Li, Y.; Feng, X.; Liu, H.; Hao, J.; Redfern, S. A. T.; Lei, W.; Liu, D.; Ma, Y. Route to high-energy density polymeric nitrogen t-N via He-N compounds. Nat. Commun. 2018, 9, 722−728.
doi: 10.1038/s41467-018-03200-4
Vetter, I. R.; Wittinghofer, A. The guanine nucleotide-binding switch in three dimensions. Science 2001, 294, 1299−1304.
doi: 10.1126/science.1062023
Li, B.; Li, L. Theoretical study on nitroimine derivatives of azetidine as high-energy-density compounds. Cent. Eur. J. Energetic Mater. 2020, 17, 107−118.
doi: 10.22211/cejem/119139
Li, B.; Li, L.; Luo, T. Theoretical exploration about the thermal stability and detonation properties of nitro-substituted hypoxanthine. J. Mol. Model. 2020, 26, 114, 23−28.
Ravi, P.; Tewari, S. P. A dft study on the structure-property relationship of amino-, nitro-and nitrosotetrazoles, and their n-oxides: new high energy density molecules. Struct. Chem. 2012, 23, 487−498.
doi: 10.1007/s11224-011-9898-5
Zheng, Y. Dbl family guanine nucleotide exchange factors. Trends Biochem. Sci. 2001, 26, 724−732.
doi: 10.1016/S0968-0004(01)01973-9
Henderson, E.; Hardin, C. C.; Walk, S. K.; Tinoco Jr, I.; Blackburn, E. H. Telomeric DNA oligonucleotides form novel intramolecular structures containing guanine· guanine base pairs. Cell 1987, 51, 899−908.
doi: 10.1016/0092-8674(87)90577-0
Yu, H. Dft study on reaction mechanism of proton transfer of guanine. J. Wuhan Univ. (Nat. Sci. Ed.) 2012, 58, 35−39.
Lee, C.; Yang, W.; Parr, R. G. Development of the colle-salvetti correlation-energy formula into a functional of the electron density. Phys. Rev. B 1988, 37, 785−789.
doi: 10.1103/PhysRevB.37.785
Frisch, M. J.; Trucks, G. W.; Schlegel, H. B.; Scuseria, G. E.; Robb, M. A.; Cheeseman, J. R.; Montgomery Jr., J. A.; Vreven, T.; Kudin, K. N.; Burant, J. C.; Millam, J. M.; Iyengar, S. S.; Tomasi, J.; Barone, V.; Mennucci, B.; Cossi, M.; Scalmani, G.; Rega, N.; Petersson, G. A.; Nakatsuji, H.; Hada, M.; Ehara, M.; Toyota, K.; Fukuda, R.; Hasegawa, J.; Ishida, M.; Nakajima, T.; Honda, Y.; Kitao, O.; Nakai, H.; Klene, M.; Li, X.; Knox, J. E.; Hratchian, H. P.; Cross, J. B.; Adamo, C.; Jaramillo, J.; Gomperts, R.; Stratmann, R. E.; Yazyev, O.; Austin, A. J.; Cammi, R.; Pomelli, C.; Ochterski, J. W.; Ayala, P. Y.; Morokuma, K.; Voth, G. A.; Salvador, P.; Dannenberg, J. J.; Zakrzewski, V. G.; Dapprich, S.; Daniels, A. D.; Strain, M. C.; Farkas, O.; Malick, D. K.; Rabuck, A. D.; Raghavachari, K.; Foresman, J. B.; Ortiz, J. V.; Cui, Q.; Baboul, A. G.; Clifford, S.; Cioslowski, J.; Stefanov, B. B.; Liu, G.; Liashenko, A.; Piskorz, P.; Komaromi, I.; Martin, R. L.; Fox, D. J.; Keith, T.; Al-Laham, M. A.; Peng, C. Y.; Nanayakkara, A.; Challacombe, M.; Gill, P. M. W.; Johnson, B.; Chen, W.; Wong, M. W.; Gonzalez, C.; Pople, J. A. Gaussian 03, Revision B. 01, Gaussian, Inc., Pittsburgh PA 2003.
Ghule, V. D.; Jadhav, P. M.; Patil, R. S.; Radhakrishnan, S.; Soman, T. Quantum-chemical studies on hexaazaisowurtzitanes. J. Phys. Chem. A 2009, 114, 498−503.
Hehre, W. J.; Ditchfield, R.; Radom, L.; Pople, J. A. Molecular orbital theory of the electronic structure of organic compounds. V. Molecular theory of bond separation. J. Am. Chem. Soc. 1970, 92, 4796−4801.
doi: 10.1021/ja00719a006
Fan, X. W.; Ju, X. H. Theoretical studies on four-membered ring compounds with NF2, ONO2, N3, and NO2 groups. J. Comput. Chem. 2008, 29, 505−513.
doi: 10.1002/jcc.20809
Rice, B. M.; Pai, S. V.; Hare, J. Predicting heats of formation of energetic materials using quantum mechanical calculations. Combust. Flame 1999, 118, 445−458.
doi: 10.1016/S0010-2180(99)00008-5
Linstrom, P. J.; Mallard, W. G. The nist chemistry webbook: a chemical data resource on the internet. J. Chem. Eng. Data 2001, 46, 1059−1063.
doi: 10.1021/je000236i
Kamlet, M. J.; Jacobs, S. J. Chemistry of detonations. I. A simple method for calculating detonation properties of C−H−N−O explosives. J. Chem. Phys. 1968, 48, 23−35.
doi: 10.1063/1.1667908
Paquet, L.; Monteil-Rivera, F.; Hatzinger, P. B.; Fuller, M. E.; Hawari, J. Analysis of the key intermediates of rdx (hexahydro-1,3,5-trinitro-1,3,5-triazine) in groundwater: occurrence, stability and preservation. J. Environ. Monit. 2011, 13, 2304−2311.
doi: 10.1039/c1em10329f
Emel'yanenko, V. N.; Zaitsau, D. H.; Verevkin, S. P. Thermochemical properties of xanthine and hypoxanthine revisited. J. Chem. Eng. Data 2017, 62, 2606−2609.
doi: 10.1021/acs.jced.7b00085
Li, B.; Li, L.; Ye, M. Thermal stability and detonation character of nitro-substituted derivatives of cytosine. Chem. Phys. 2020, 536, 110846−5.
doi: 10.1016/j.chemphys.2020.110846
Drake, R. High-Energy-Density Physics: Fundamentals, Inertial Fusion, and Experimental Astrophysics (Shock Wave and High Pressure Phenomena). Springer, Berlin 2006, p214−215
Qingyun Hu , Wei Wang , Junyuan Lu , He Zhu , Qi Liu , Yang Ren , Hong Wang , Jian Hui . High-throughput screening of high energy density LiMn1-xFexPO4 via active learning. Chinese Chemical Letters, 2025, 36(2): 110344-. doi: 10.1016/j.cclet.2024.110344
Xu Huang , Kai-Yin Wu , Chao Su , Lei Yang , Bei-Bei Xiao . Metal-organic framework Cu-BTC for overall water splitting: A density functional theory study. Chinese Chemical Letters, 2025, 36(4): 109720-. doi: 10.1016/j.cclet.2024.109720
Maitri Bhattacharjee , Rekha Boruah Smriti , R. N. Dutta Purkayastha , Waldemar Maniukiewicz , Shubhamoy Chowdhury , Debasish Maiti , Tamanna Akhtar . Synthesis, structural characterization, bio-activity, and density functional theory calculation on Cu(Ⅱ) complexes with hydrazone-based Schiff base ligands. Chinese Journal of Inorganic Chemistry, 2024, 40(7): 1409-1422. doi: 10.11862/CJIC.20240007
Yunfei Shen , Long Chen . Gradient imprinted Zn metal anodes assist dendrites-free at high current density/capacity. Chinese Journal of Structural Chemistry, 2024, 43(10): 100321-100321. doi: 10.1016/j.cjsc.2024.100321
Zhilong Xie , Guohui Zhang , Ya Meng , Yefei Tong , Jian Deng , Honghui Li , Qingqing Ma , Shisong Han , Wenjun Ni . A natural nano-platform: Advances in drug delivery system with recombinant high-density lipoprotein. Chinese Chemical Letters, 2024, 35(11): 109584-. doi: 10.1016/j.cclet.2024.109584
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