Our Infrared Research

FT-IR5,6,23,25,35–42,8,43–52,10,53–59,15,16,18,20–22

 

REFERENCES

(5)         Hernández-Rivera, S. P.; Castro-suarez, J. R.; Pacheco-Londoño, L. C.; Primera-pedrozo, O. M.; Rey-villamizar, N.; Vélez-reyes, M.; Diem, M. Mid-Infrared Vibrational Spectroscopy Standoff Detection of Highly Energetic Materials : New Developments. 2011, No. April, 2–9.

(6)         Hernández-Rivera, S. P.; Manrique-Bastidas, C. A.; Blanco, A.; Primera, O. M.; Pacheco-Londoño, L. C.; Castillo-Chara, J.; Castro, M. E.; Mina, N. Spectroscopic Characterization of Nitroaromatic Landmine Signature Explosives. Detect. Remediat. Technol. Mines Minelike Targets IX 20045415, 474. https://doi.org/10.1117/12.542895.

(8)         Infante-Castillo, R.; Pacheco-Londoño, L. C.; Hernández-Rivera, S. P. Vibrational Spectra and Structure of RDX and Its 13C- and 15N-Labeled Derivatives: A Theoretical and Experimental Study. Spectrochim. Acta – Part A Mol. Biomol. Spectrosc. 201076 (2), 137–141. https://doi.org/10.1016/j.saa.2010.02.051.

(10)      Infante-Castillo, R.; Hernández-Rivera, S. P. Effects of Isotopic Substitution on the Vibrational Spectra of α-RDX. Sensors, Command. Control. Commun. Intell. Technol. Homel. Secur. Homel. Def. VI 20076538, 653825. https://doi.org/10.1117/12.720349.

(15)      Manrique-Bastidas, C. A.; Mina, N.; Castro, M. E.; Hernández-Rivera, S. P. Raman Microspectroscopy and FTIR Crystallization Studies of 2,4,6-TNT in Soil. Detect. Remediat. Technol. Mines Minelike Targets X 20055794, 1358. https://doi.org/10.1117/12.604469.

(16)      Manrique-Bastidas, C. A.; Castillo-Chara, J.; Mina, N.; Castro, M. E.; Hernández-Rivera, S. P. Nucleation and Crystalization Studies: A Vibrational-Spectroscopy Investigation of 2,4,6-TNT. Detect. Remediat. Technol. Mines Minelike Targets IX 20045415, 1345. https://doi.org/10.1117/12.543302.

(18)      Núñez-Quintero, D.; Hernández-Rivera, S. P. Spectroscopic Modeling of Nitro Group in Explosives. Indep. Compon. Anal. Wavelets, Unsupervised Smart Sensors, Neural Networks IV 20066247, 62470Z. https://doi.org/10.1117/12.666546.

(20)      Pacheco-Londoño, L. C.; Primera-Pedrozo, O. M.; Castro, W. O. M.; Hernández-Rivera, S. P. Modeling of Nitro Group in Explosives: Spectroscopic Measurements and Theoretical Calculations. IEEE Antennas Propag. Soc. AP-S Int. Symp. 2007, 4937–4940. https://doi.org/10.1109/APS.2007.4396652.

(21)      Pacheco-Londoño, L. C.; Primera-Pedrozo, O. M.; Hernández-Rivera, S. P. Experimental and Theoretical Model of Reactivity and Vibrational Detection Modes of Triacetone Triperoxide (TATP) and Homologues. Opt. Based Biol. Chem. Sens. Def. 20045617, 190. https://doi.org/10.1117/12.578603.

(22)      Pacheco-Londoño, L. C.; Pena, A. J.; Primera-Pedrozo, O. M.; Hernández-Rivera, S. P.; Mina, N.; Garcia, R.; Chamberlain, R. T.; Lareau, R. T. An Experimental and Theoretical Study of the Synthesis and Vibrational Spectroscopy of Triacetone Triperoxide (TATP). Sensors, Command. Control. Commun. Intell. Technol. Homel. Secur. Homel. Def. III 20045403, 279. https://doi.org/10.1117/12.542851.

(23)      Peña-Quevedo, A. J.; Mina-Calmide, N.; Rodríguez, N.; Nieves, D.; Cody, R. B.; Hernández-Rivera, S. P. Synthesis, Characterization and Differentiation of High Energy Amine Peroxides by MS and Vibrational Microscopy. Sensors, Command. Control. Commun. Intell. Technol. Homel. Secur. Homel. Def. V 20066201, 62012E. https://doi.org/10.1117/12.666202.

(25)      Peña-Quevedo, A. J.; Figueroa, J.; Rodríguez, N.; Nieves, D.; Hernández, N.; Rivera, R.; Mina, N.; Hernández-Rivera, S. P. Effect of Water and Common Salts on the Vibrational Spectra of High Energy Cyclic Organic Peroxides. Sensors, Command. Control. Commun. Intell. Technol. Homel. Secur. Homel. Def. V 20066201, 62012D. https://doi.org/10.1117/12.666171.

(35)      Castro-Suarez, J. R.; Pacheco-Londoño, L. C.; Vélez-Reyes, M.; Diem, M.; Tague, T. J.; Hernández-Rivera, S. P. FT-IR Standoff Detection of Thermally Excited Emissions of Trinitrotoluene (TNT) Deposited on Aluminum Substrates. Appl. Spectrosc. 201367 (2), 181–186. https://doi.org/10.1366/11-06229.

(36)      Colon, Y. M.; Alzate, L. F.; Ramos, C. M.; Santana, A.; Hernández-Rivera, S. P.; Castro, M. E.; Munoz, M.; Mina, N. Adsorption of RDX on Clay. Detect. Remediat. Technol. Mines Minelike Targets IX 20045415, 1419. https://doi.org/10.1117/12.541703.

(37)      Espinosa-Fuentes, E. A.; Castro-Suarez, J. R.; Meza-Payares, D.; Pacheco-Londoño, L. C.; Hernández-Rivera, S. P. Sublimation Enthalpy of Homemade Peroxide Explosives Using a Theoretically Supported Non-Linear Equation. J. Therm. Anal. Calorim. 2015119 (1), 681–688. https://doi.org/10.1007/s10973-014-4088-5.

(38)      Espinosa-Fuentes, E. A.; Pacheco-Londoño, L. C.; Barreto-Cabán, M. A.; Hernández-Rivera, S. P. Novel Uncatalyzed Synthesis and Characterization of Diacetone Diperoxide. Propellants, Explos. Pyrotech. 201237 (4), 413–421. https://doi.org/10.1002/prep.201000130.

(39)      Espinosa-Fuentes, E. A.; Peña-Quevedo, A. J.; Pacheco-Londoño, L. C.; Infante-Castillo, R.; Hernández-Rivera, S. P. A Review of Peroxide Based Homemade Explosives: Characterization and Detection. Explos. Mater. Classif. Compos. Prop. 2011, No. December, 259–282.

(40)      Galán-Freyle, N. J.; Pacheco-Londoño, L. C.; Figueroa-Navedo, A. M.; Hernández-Rivera, S. P. Standoff Detection of Highly Energetic Materials Using Laser-Induced Thermal Excitation of Infrared Emission. Appl. Spectrosc. 201569 (5), 535–544. https://doi.org/10.1366/14-07501.

(41)      Galán-Freyle, N. Y.; Pacheco-Londoño, L. C.; Figueroa-Navedo, A.; Hernández-Rivera, S. P. Standoff Laser-Induced Thermal Emission of Explosives. Thermosense Therm. Infrared Appl. XXXV 20138705 (July), 870508. https://doi.org/10.1117/12.2016067.

(42)      Gomez, L. M.; Santana, A.; Mina, N.; Hernández-Rivera, S. P.; Castro, M. E. Femtosecond Laser UV Photochemistry of TNT Deposits: The Role of Hydroxyls. Detect. Remediat. Technol. Mines Minelike Targets IX 20045415 (5), 486. https://doi.org/10.1117/12.542844.

(43)      Herrera-Sandoval, G. M.; Ballesteros-Rueda, L. M.; Mina-Camilde, N.; Castro-Rosario, M. E.; Briano, J. G.; Hernández-Rivera, S. P. FT-IR Signatures of TNT on Montmorillonite-Clay Particles. Detect. Remediat. Technol. Mines Minelike Targets XI 20066217, 62173B. https://doi.org/10.1117/12.666338.

(44)      Infante-Castillo, R.; Hernández-Rivera, S. P. Theoretical and Experimental Vibrational and NMR Studies of RDX. Sensors, Command. Control. Commun. Intell. Technol. Homel. Secur. Homel. Def. V 20066201 (July), 62012F. https://doi.org/10.1117/12.666211.

(45)      Mina, N.; Cotte, I.; Colon, Y.; Ramos, C. M.; Alzate, L. F.; Hernández-Rivera, S. P.; Castro, M. E.; Thomas Chamberlain, R.; Lareau, R. Chemical Spectroscopic Signature of RDX. Proc. SPIE – Int. Soc. Opt. Eng. 20035089 (2), 1363–1374. https://doi.org/10.1117/12.487334.

(46)      Ortega-Zuñiga, C. A.; Galán-Freyle, N. Y.; Castro-Suarez, J. R.; Aparicio-Bolaño, J.; Pacheco-Londoño, L. C.; Hernández-Rivera, S. P. Dependence of Detection Limits on Angular Alignment, Substrate Type and Surface Concentration in Active Mode Standoff IR. Act. Passiv. Signatures IV 20138734 (April), 87340R. https://doi.org/10.1117/12.2016196.

(47)      Pacheco-Londoño, L. C.; Ruiz-Caballero, J. L.; Ramírez-Cedeño, M. L.; Infante-Castillo, R.; Gálan-Freyle, N. J.; Hernández-Rivera, S. P. Surface Persistence of Trace Level Deposits of Highly Energetic Materials. Molecules 201924 (19), 1–21. https://doi.org/10.3390/molecules24193494.

 

(48)      Pacheco-Londoño, L. C.; Castro-Suarez, J. R.; Aparicio-Bolaños, J. A.; Hernández-Rivera, S. P. Angular Dependence of Source-Target-Detector in Active Mode Standoff Infrared Detection. Sensors, Command. Control. Commun. Intell. Technol. Homel. Secur. Homel. Def. XII 20138711 (July), 871108. https://doi.org/10.1117/12.2016153.

(49)      Pacheco-Londoño, L. C.; Castro-Suarez, J. R.; Hernández-Rivera, S. P. Detection of Nitroaromatic and Peroxide Explosives in Air Using Infrared Spectroscopy: QCL and FTIR. Adv. Opt. Technol. 20132013. https://doi.org/10.1155/2013/532670.

(50)      Pacheco-Londoño, L. C.; Santiago, A.; Pujols, J.; Primera-Pedrozo, O. M.; Mattei, A.; Ortiz, W.; Ruiz, O.; Ramirez, M.; Hernández-Rivera, S. P. Characterization of Layers of Tetryl, TNB and HMX on Metal Surfaces Using Fiber Optics Coupled Grazing Angle-FTIR. Infrared Technol. Appl. XXXIII 20076542, 65423K. https://doi.org/10.1117/12.720976.

(51)      Pacheco-Londoño, L. C.; Primera-Pedrozo, O. M.; de la Torre, L. F.; Hernández-Rivera, S. P. Determination of TATP, DNT, and TNT in Air by FTIR and PLS-Discriminant Analysis. Opt. Pattern Recognit. XVI 20055816, 180. https://doi.org/10.1117/12.602449.

(52)      Pacheco-Londoño, L. C.; Primera, O. M.; Ramirez, M.; Ruiz, O.; Hernández-Rivera, S. P. Review of the Various Analytical Techniques and Algorithms for Detection and Quantification of TATP. Sensors, Command. Control. Commun. Intell. Technol. Homel. Secur. Homel. Def. IV 20055778, 317. https://doi.org/10.1117/12.603073.

(53)      Primera-Pedrozo, O. M.; Rodríguez, N.; Pacheco-Londoño, L. C.; Hernández-Rivera, S. P. Detection of 2,4,6-Trinitrotoluene on Non-Traditional Surfaces Using Fiber Optic Coupled Grazing Angle Probe: FTIR. Infrared Technol. Appl. XXXIII 20076542, 65423J. https://doi.org/10.1117/12.720405.

(54)      Primera-Pedrozo, O. M.; Soto-Feliciano, Y.; Pacheco-Londoño, L. C.; De La Torre-Quintana, L. F.; Hernandez-Rivera, S. P. Detection of Explosive Mixtures on Surfaces Using Grazing Angle Probe – FTIR: Model for Classification. Sensors, Command. Control. Commun. Intell. Technol. Homel. Secur. Homel. Def. V 20066201, 62012A. https://doi.org/10.1117/12.665944.

(55)      Primera-Pedrozo, O. M.; Pacheco-Londoño, L. C.; Ruiz, O.; Ramirez, M.; Hernández-Rivera, S. P.; Briano, J. Spectroscopic Characterization of Thermal Inkjet Transfer of Deposits of Energetic Materials. Adv. Eng. Technol. A Glob. Perspect. 2005810, 1–12.

(56)      Primera-Pedrozo, O. M.; Pacheco-Londoño, L. C.; Ruiz, O.; Ramirez, M.; Soto-Feliciano, Y. M.; De La Torre-Quintana, L. F.; Hernandez-Rivera, S. P. Characterization of Thermal Inkjet Technology TNT Deposits by Fiber Optic-Grazing Angle Probe FTIR Spectroscopy. Sensors, Command. Control. Commun. Intell. Technol. Homel. Secur. Homel. Def. IV 20055778, 543. https://doi.org/10.1117/12.602451.

(57)      Primera-Pedrozo, O. M.; Pacheco-Londoño, L. C.; De la Torre-Quintana, L. F.; Hernández-Rivera, S. P.; Chamberlain, R. T.; Lareau, R. T. Use of Fiber Optic Coupled FT-IR in Detection of Explosives on Surfaces. Sensors, Command. Control. Commun. Intell. Technol. Homel. Secur. Homel. Def. III 20045403, 237. https://doi.org/10.1117/12.542812.

(58)      Soto-Feliciano, Y.; Primera-Pedrozo, O. M.; Pacheco-Londoño, L. C.; Hernández-Rivera, S. P. Temperature Dependence of Detection Limits of TNT on Metallic Surfaces Using Fiber Optic Coupled FTIR. Sensors, Command. Control. Commun. Intell. Technol. Homel. Secur. Homel. Def. V 20066201, 62012H. https://doi.org/10.1117/12.665897.

(59)      Wrable-Rose, M.; Primera-Pedrozo, O. M.; Pacheco-Londoño, L. C.; Hernández-Rivera, S. P. Preparation of TNT, RDX and Ammonium Nitrate Standards on Gold-on-Silicon Surfaces by Thermal Inkjet Technology. Sens. Imaging 201011 (4), 147–169. https://doi.org/10.1007/s11220-010-0057-7.