References
185
References
1. McNesby KL, Coffey CS (1997) Spectroscopic determination of impact sensitivities of
explosives. J Phys Chem B 101(16):3097–3104
2. Bernstein J (2018) Ab Initio study of energy transfer rates and impact sensitivities of crystalline
explosives. J Chem Phys 148(8):084502
3. Ye, Koshi M (2006) Theoretical studies of energy transfer rates of secondary explosives. J Phys
Chem B 110(37):18515–18520
4. Ye S, Tonokura K, Koshi M (2003) Energy transfer rates and impact sensitivities of crystalline
explosives. Combust Flame 132(1–2):240–246
5. Fried LE, Ruggiero AJ (1994) Energy-transfer rates in primary, secondary, and insensitive
explosives. J Phys Chem 98(39):9786–9791
6. Storm CB, Stine JR, Kramer JF (1990) Sensitivity relationships in energetic materials. In:
Bulusu SN (ed) Chemistry and physics of energetic materials. Springer, Dordrecht, pp 605–639
7. Gamage NDH, Stiasny B, Stierstorfer J, Martin PD, Klapötke TM, Winter CH (2015) Less sensitive oxygen-rich organic peroxides containing geminal hydroperoxy groups. Chem Commun
51(68):13298–13300
8. Klapötke TM, Piercey DG (2011) 1,1 -Azobis(Tetrazole): a highly energetic nitrogen-rich
compound with a N10 chain. Inorg Chem 50(7):2732–2734
9. Klapötke TM (2012) Chemistry of high-energy materials, 2nd ed. De Gruyter, Berlin
10. Millar DIA, Maynard-Casely H, Kleppe A, Marshall WG, Pulham C, Cumming A (2010)
Putting the squeeze on energetic materials—structural characterisation of high-pressure phase
of CL-20. CrystEngComm 12:2524–2527
11. Millar DIA, Oswald IDH, Barry C, Francis DJ, Marshall WG, Pulham CR, Cumming AS (2010)
Pressure-cooking of explosives—the crystal structure of ε-RDX as determined by X-ray and
neutron diffraction. Chem Commun 46(31):5662–5664
12. Davidson AJ, Oswald IDH, Francis DJ, Lennie AR, Marshall WG, Millar DIA, Pulham CR,
Warren JE, Cumming AS (2008) Explosives under pressure—the crystal structure of γ-RDX
as determined by high-pressure X-ray and neutron diffraction. CrystEngComm 10(2):162–165
13. Millar DIA, Oswald IDH, Francis DJ, Marshall WG, Pulham CR, Cumming AS (2009) The
crystal structure of beta-RDX-an elusive form of an explosive revealed. Chem Commun 5:562–
564
14. Fabbiani FPA, Pulham CR (2006) High-pressure studies of pharmaceutical compounds and
energetic materials. Chem Soc Rev 35(10):932–942
15. Achuthan CP, Jose C (1990) Studies on HMX polymorphism. Propellants Explos Pyrotech
275:271–275
16. Price SL (2014) Predicting crystal structures of organic compounds. Chem Soc Rev 43(7):2098–
2111
185
References
1. McNesby KL, Coffey CS (1997) Spectroscopic determination of impact sensitivities of
explosives. J Phys Chem B 101(16):3097–3104
2. Bernstein J (2018) Ab Initio study of energy transfer rates and impact sensitivities of crystalline
explosives. J Chem Phys 148(8):084502
3. Ye, Koshi M (2006) Theoretical studies of energy transfer rates of secondary explosives. J Phys
Chem B 110(37):18515–18520
4. Ye S, Tonokura K, Koshi M (2003) Energy transfer rates and impact sensitivities of crystalline
explosives. Combust Flame 132(1–2):240–246
5. Fried LE, Ruggiero AJ (1994) Energy-transfer rates in primary, secondary, and insensitive
explosives. J Phys Chem 98(39):9786–9791
6. Storm CB, Stine JR, Kramer JF (1990) Sensitivity relationships in energetic materials. In:
Bulusu SN (ed) Chemistry and physics of energetic materials. Springer, Dordrecht, pp 605–639
7. Gamage NDH, Stiasny B, Stierstorfer J, Martin PD, Klapötke TM, Winter CH (2015) Less sensitive oxygen-rich organic peroxides containing geminal hydroperoxy groups. Chem Commun
51(68):13298–13300
8. Klapötke TM, Piercey DG (2011) 1,1 -Azobis(Tetrazole): a highly energetic nitrogen-rich
compound with a N10 chain. Inorg Chem 50(7):2732–2734
9. Klapötke TM (2012) Chemistry of high-energy materials, 2nd ed. De Gruyter, Berlin
10. Millar DIA, Maynard-Casely H, Kleppe A, Marshall WG, Pulham C, Cumming A (2010)
Putting the squeeze on energetic materials—structural characterisation of high-pressure phase
of CL-20. CrystEngComm 12:2524–2527
11. Millar DIA, Oswald IDH, Barry C, Francis DJ, Marshall WG, Pulham CR, Cumming AS (2010)
Pressure-cooking of explosives—the crystal structure of ε-RDX as determined by X-ray and
neutron diffraction. Chem Commun 46(31):5662–5664
12. Davidson AJ, Oswald IDH, Francis DJ, Lennie AR, Marshall WG, Millar DIA, Pulham CR,
Warren JE, Cumming AS (2008) Explosives under pressure—the crystal structure of γ-RDX
as determined by high-pressure X-ray and neutron diffraction. CrystEngComm 10(2):162–165
13. Millar DIA, Oswald IDH, Francis DJ, Marshall WG, Pulham CR, Cumming AS (2009) The
crystal structure of beta-RDX-an elusive form of an explosive revealed. Chem Commun 5:562–
564
14. Fabbiani FPA, Pulham CR (2006) High-pressure studies of pharmaceutical compounds and
energetic materials. Chem Soc Rev 35(10):932–942
15. Achuthan CP, Jose C (1990) Studies on HMX polymorphism. Propellants Explos Pyrotech
275:271–275
16. Price SL (2014) Predicting crystal structures of organic compounds. Chem Soc Rev 43(7):2098–
2111
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