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Arian van Asten
ProfessorForensic Analytical ChemistryUniversiteit van Amsterdam
This user account status is Approved

2021

  • Kranenburg, R. F., Lukken, C. K., Schoenmakers, P. J., & van Asten, A. C. (2021). Spotting Isomer Mixtures in Forensic Illicit Drug Casework with GC–VUV using Automated Coelution Detection and Spectral Deconvolution. Journal of Chromatography B1173, [122675]. https://doi.org/10.1016/j.jchromb.2021.122675
  • Kranenburg, R. F., Stuyver, L. I., de Ridder, R., van Beek, A., Colmsee, E., & van Asten, A. C. (2021). Deliberate evasion of narcotic legislation: Trends visualized in commercial mixtures of new psychoactive substances analyzed by GC-solid deposition-FTIR. Forensic Chemistry25(August 2021), [100346]. https://doi.org/10.1016/j.forc.2021.100346
  • Kranenburg, R. F., Verduin, J., de Ridder, R., Weesepoel, Y., Alewijn, M., Heerschop, M., Keizers, P. H. J., van Esch, A., & van Asten, A. C. (2021). Performance Evaluation of Handheld Raman Spectroscopy for Cocaine Detection in Forensic Case Samples. Drug Testing and Analysis13(5), 1054-1067. https://doi.org/10.1002/dta.2993 [details]
  • de Bruin-Hoegée, M., Kleiweg, D., Noort, D., & van Asten, A. C. (2021). Chemical attribution of fentanyl: The effect of human metabolism. Forensic Chemistry24, [100330]. https://doi.org/10.1016/j.forc.2021.100330
  • van Geenen, F. A. M. G., Kranenburg, R. F., van Asten, A. C., Martens, J., Oomens, J., & Berden, G. (2021). Isomer-Specific Two-Color Double-Resonance (IR2MS3) Ion Spectroscopy Using a Single Laser: Application in the Identification of Novel Psychoactive Substances. Analytical Chemistry93(4), 2687-2693. https://doi.org/10.1021/acs.analchem.0c05042

2020

  • Bezemer, K. D. B., Forbes, T. P., Hulsbergen, A. W. C., Verkouteren, J., Krauss, S. T., Koeberg, M., Schoenmakers, P. J., Gillen, G., & van Asten, A. C. (2020). Emerging techniques for the detection of pyrotechnic residues from seized postal packages containing fireworks. Forensic Science International308, [110160]. https://doi.org/10.1016/j.forsciint.2020.110160 [details]
  • Bezemer, K., McLennan, L., Hessels, R., Schoorl, J., van den Elshout, J., van der Heijden, A., Hulsbergen, A., Koeberg, M., Busby, T., Yevdokimov, A., de Rijke, E., Schoenmakers, P., Smith, J., Oxley, J., & van Asten, A. (2020). Chemical attribution of the homemade explosive ETN - Part II: Isotope ratio mass spectrometry analysis of ETN and its precursors. Forensic Science International313, [110344]. https://doi.org/10.1016/j.forsciint.2020.110344 [details]
  • Bezemer, K., McLennan, L., van Duin, L., Kuijpers, C-J., Koeberg, M., von den Elshout, J., van der Heijden, A., Busby, T., Yevdokimov, A., Schoenmakers, P., Smith, J., Oxley, J., & van Asten, A. (2020). Chemical attribution of the home-made explosive ETN - Part I: Liquid chromatography-mass spectrometry analysis of partially nitrated erythritol impurities. Forensic Science International307, [110102]. https://doi.org/10.1016/j.forsciint.2019.110102 [details]
  • Kranenburg, R. F., Peroni, D., Affourtit, S., Westerhuis, J. A., Smilde, A. K., & van Asten, A. C. (2020). Revealing hidden information in GC–MS spectra from isomeric drugs: Chemometrics based identification from 15 eV and 70 eV EI mass spectra. Forensic Chemistry18, [100225]. https://doi.org/10.1016/j.forc.2020.100225 [details]
  • Kranenburg, R. F., Verduin, J., Stuyver, L. I., de Ridder, R., van Beek, A., Colmsee, E., & van Asten, A. C. (2020). Benefits of derivatization in GC–MS-based identification of new psychoactive substances. Forensic Chemistry20, [100273]. https://doi.org/10.1016/j.forc.2020.100273 [details]
  • Kranenburg, R. F., Verduin, J., Weesepoel, Y., Alewijn, M., Heerschop, M., Koomen, G., Keizers, P., Bakker, F., Wallace, F., van Esch, A., Hulsbergen, A., & van Asten, A. C. (2020). Rapid and robust on-scene detection of cocaine in street samples using a handheld near-infrared spectrometer and machine learning algorithms. Drug Testing and Analysis12(10), 1404-1418. https://doi.org/10.1002/dta.2895 [details]
  • Kranenburg, R. F., van Geenen, F. A. M. G., Berden, G., Oomens, J., Martens, J., & van Asten, A. C. (2020). Mass-Spectrometry-Based Identification of Synthetic Drug Isomers Using Infrared Ion Spectroscopy. Analytical Chemistry92(10), 7282-7288. https://doi.org/10.1021/acs.analchem.0c00915 [details]

2019

  • Bezemer, K. D. B., van Duin, L. V. A., Martín-Albercab , C., Somsen, G. W., Schoenmakers, P. J., Haselberg, R., & van Asten, A. C. (2019). Rapid forensic chemical classification of confiscated flash banger fireworks using capillary electrophoresis. Forensic Chemistry16, [100187]. https://doi.org/10.1016/j.forc.2019.100187 [details]
  • Kranenburg, R. F., García-Cicourel, A. R., Kukurin, C., Janssen, H-G., Schoenmakers, P. J., & van Asten, A. C. (2019). Distinguishing drug isomers in the forensic laboratory: GC-VUV in addition to GC-MS for orthogonal selectivity and the use of library match scores as a new source of information. Forensic Science International302, [109900]. https://doi.org/10.1016/j.forsciint.2019.109900 [details]
  • Pintabona, L., Astefanei, A., Corthals, G. L., & van Asten, A. C. (2019). Utilizing Surface Acoustic Wave Nebulization (SAWN) for the Rapid and Sensitive Ambient Ionization Mass Spectrometric Analysis of Organic Explosives. Journal of the American Society for Mass Spectrometry30(12), 2447-2804. https://doi.org/10.1007/s13361-019-02335-y [details]

2018

  • Bezemer, K., Woortmeijer, R., Koeberg, M., Schoenmakers, P., & van Asten, A. (2018). Multicomponent characterization and differentiation of flash bangers - Part I: Sample collection and visual examination. Forensic Science International290, 327-335. https://doi.org/10.1016/j.forsciint.2018.06.011 [details]
  • Bezemer, K., Woortmeijer, R., Koeberg, M., Wiarda, W., Schoenmakers, P., & van Asten, A. (2018). Multicomponent characterization and differentiation of flash bangers - Part II: Elemental profiling of plastic caps. Forensic Science International290, 336-348. https://doi.org/10.1016/j.forsciint.2018.06.012 [details]
  • Sampat, A. A. S., van Daelen, B., Lopatka, M., Mol, H., van der Weg, G., Vivó-Truyols , G., Sjerps, M., Schoenmakers, P. J., & van Asten, A. C. (2018). Detection and Characterization of Ignitable Liquid Residues in Forensic Fire Debris Samples by Comprehensive Two-Dimensional Gas Chromatography. Separations5(3), [43]. https://doi.org/10.3390/separations5030043 [details]

2017

  • Langstraat, K., Knijnenberg, A., Edelman, G., van de Merwe, L., van Loon, A., Dik, J., & van Asten, A. (2017). Large area imaging of forensic evidence with MA-XRF. Scientific Reports7, [15056]. https://doi.org/10.1038/s41598-017-15468-5 [details]
  • Lopatka, M., Sampat, A. A., Jonkers, S., Adutwum, L. A., Mol, H. G. J., van der Weg, G., ... Vivó-Truyols, G. (2017). Local Ion Signatures (LIS) for the examination of comprehensive two-dimensional gas chromatography applied to fire debris analysis. Forensic Chemistry3, 1-13. https://doi.org/10.1016/j.forc.2016.10.003 [details]
  • Teunissen, S. F., Fedick, P. W., Berendsen, B. J. A., Nielen, M. W. F., Eberlin, M. N., Graham Cooks, R., & van Asten, A. C. (2017). Novel Selectivity-Based Forensic Toxicological Validation of a Paper Spray Mass Spectrometry Method for the Quantitative Determination of Eight Amphetamines in Whole Blood. Journal of the American Society for Mass Spectrometry28(12), 2665-2676. https://doi.org/10.1007/s13361-017-1790-0 [details]
  • Woldegebriel, M., van Asten, A., Kloosterman, A., & Vivó-Truyols, G. (2017). Probabilistic peak detection in CE-LIF for STR DNA typing. Electrophoresis38(13-14), 1713-1723. https://doi.org/10.1002/elps.201600550 [details]

2016

  • Bezemer, K. D. B., Koeberg, M., van der Heijden, A. E. D. M., van Driel, C. A., Blaga, C., Bruinsma, J., & van Asten, A. C. (2016). The Potential of Isotope Ratio Mass Spectrometry (IRMS) and Gas Chromatography-IRMS Analysis of Triacetone Triperoxide in Forensic Explosives Investigations. Journal of Forensic Sciences61(5), 1198-1207. https://doi.org/10.1111/1556-4029.13135
  • Bruijns, B., van Asten, A., Tiggelaar, R., & Gardeniers, H. (2016). Microfluidic Devices for Forensic DNA Analysis: A Review. Biosensors6(3), [41]. https://doi.org/10.3390/bios6030041
  • Cuypers, E., Flinders, B., Boone, C. M., Bosman, I. J., Lusthof, K. J., Van Asten, A. C., ... Heeren, R. M. A. (2016). Consequences of Decontamination Procedures in Forensic Hair Analysis Using Metal-Assisted Secondary Ion Mass Spectrometry Analysis. Analytical Chemistry88(6), 3091-3097. https://doi.org/10.1021/acs.analchem.5b03979 [details]
  • Sampat, A. A. S., Lopatka, M., Vivó-Truyols, G., Schoenmakers, P. J., & van Asten, A. C. (2016). Towards chemical profiling of ignitable liquids with comprehensive two-dimensional gas chromatography: Exploring forensic application to neat white spirits. Forensic Science International267, 183-195. https://doi.org/10.1016/j.forsciint.2016.08.006
  • Sampat, A., Lopatka, M., Sjerps, M., Vivo-Truyols, G., Schoenmakers, P., & van Asten, A. (2016). Forensic potential of comprehensive two-dimensional gas chromatography. Trends in Analytical Chemistry80, 345-363. https://doi.org/10.1016/j.trac.2015.10.011 [details]
  • Smijs, T., Galli, F., & van Asten, A. C. (2016). Forensic potential of Atomic Force Microscopy. Forensic Chemistry2, 93-104.
  • Woldegebriel, M., Gonsalves, J., van Asten, A., & Vivó-Truyols, G. (2016). Robust Bayesian Algorithm for Targeted Compound Screening in Forensic Toxicology. Analytical Chemistry88(4), 2421-2430. https://doi.org/10.1021/acs.analchem.5b04484 [details]

2015

  • Brust, H., Koeberg, M., van der Heijden, A., Wiarda, W., Mügler, I., Schrader, M., ... van Asten, A. (2015). Isotopic and elemental profiling of ammonium nitrate in forensic explosives investigations. Forensic Science International248, 101-112. https://doi.org/10.1016/j.forsciint.2014.11.024 [details]
  • Kloosterman, A., Mapes, A., Geradts, Z., van Eijk, E., Koper, C., van den Berg, J., Verheij, S., van der Steen, M., & van Asten, A. (2015). The interface between forensic science and technology: how technology could cause a paradigm shift in the role of forensic institutes in the criminal justice system. Philosophical Transactions of the Royal Society B - Biological Sciences370(1674), [20140264]. https://doi.org/10.1098/rstb.2014.0264 [details]
  • Muramoto, S., Forbes, T. P., van Asten, A. C., & Gillen, G. (2015). Test Sample for the Spatially Resolved Quantification of Illicit Drugs on Fingerprints Using Imaging Mass Spectrometry. Analytical Chemistry87(10), 5444-5450. https://doi.org/10.1021/acs.analchem.5b01060 [details]
  • van Asten, A., Neuteboom, W., Wiersma, S., & Geradts, Z. (2015). The Netherlands. In D. H. Ubelaker (Ed.), The Global Practice of Forensic Science (pp. 217-230). Wiley Blackwell. https://doi.org/10.1002/9781118724248.ch21 [details]

2014

  • Brust, H., Willemse, S., Zeng, T., van Asten, A., Koeberg, M., van der Heijden, A., ... Schoenmakers, P. (2014). Impurity profiling of trinitrotoluene using vacuum-​outlet gas chromatography-​mass spectrometry. Journal of Chromatography A1374, 224-230. https://doi.org/10.1016/j.chroma.2014.11.055 [details]
  • Brust, H., van Asten, A., Koeberg, M., Dalmolen, J., van der Heijden, A., & Schoenmakers, P. (2014). Accurate quantitation of pentaerythritol tetranitrate and its degradation products using liquid chromatography-​atmospheric pressure chemical ionization-​mass spectrometry. Journal of Chromatography A1338, 111-116. https://doi.org/10.1016/j.chroma.2014.02.067 [details]
  • Cuypers, E., Flinders, B., Bosman, I. J., Lusthof, K. J., van Asten, A. C., Tytgat, J., & Heeren, R. M. A. (2014). Hydrogen peroxide reactions on cocaine in hair using imaging mass spectrometry. Forensic Science International242, 103-110. https://doi.org/10.1016/j.forsciint.2014.06.035 [details]
  • Espy, R. D., Teunissen, S. F., Manicke, N. E., Ren, Y., Ouyang, Z., van Asten, A., & Cooks, R. G. (2014). Paper Spray and Extraction Spray Mass Spectrometry for the Direct and Simultaneous Quantification of Eight Drugs of Abuse in Whole Blood. Analytical Chemistry86(15), 7712-7718. https://doi.org/10.1021/ac5016408 [details]
  • van Asten, A. C. (2014). On the added value of forensic science and grand innovation challenges for the forensic community. Science & justice54(2), 170-179. https://doi.org/10.1016/j.scijus.2013.09.003 [details]

2013

  • Brust, H., van Asten, A., Koeberg, M., van der Heijden, A., Kuijpers, C. J., & Schoenmakers, P. (2013). Pentaerythritol tetranitrate (PETN) profiling in post-explosion residues to constitute evidence of crime-scene presence. Forensic Science International230(1-3), 37-45. https://doi.org/10.1016/j.forsciint.2013.03.042 [details]

2010

  • Basketter, D., Pons-Giraud, A., van Asten, A. C., Laverdet, C., & Marty, J-P. (2010). Fragrance allergy: assessing the safety of washed fabrics. Contact Dermatitis62(6).

2006

  • Corea, N., Basketter, D., Clapp, C., van Asten, A. C., Marty, J-P., Pons-Giraud, A., & Laverdet, C. (2006). Fragrance allergy: assessing the risk from washed fabrics. Contact Dermatitis55(1), 48-53.

2002

  • van Asten, A. C. (2002). The importance of GC and GC-MS in perfume analysis. Trends in Analytical Chemistry21(9), 698-708.

2000

  • van Asten, A. C., van Veenendaal, N., & Koster, S. (2000). Surface characterization of industrial fibers with inverse gas chromatography. Journal of Chromatography A888(1), 175-196.

1994

  • van Asten, A. C., Kok, W. T., Tijssen, R., & Poppe, H. (1994). Thermal field flow fractionation of polytetrahydrofuran. Journal of Chromatography A676(2), 361-373.

1993

  • van Asten, A. C., Venema, E., Kok, W. T., & Poppe, H. (1993). Use of thermal field flow fractionation for the fractionation of polybutadiene in various organic solvents. Journal of Chromatography A644(1), 83-94.

1992

  • Bruin, G., van Asten, A. C., Xu, X., & Poppe, H. (1992). Theoretical and experimental aspects of indirect detection in capillary electrophoresis. Journal of Chromatography A608(1), 97-107.

1991

  • Bruin, G., Stegeman, G., van Asten, A. C., Xu, X., Kraak, J. C., & Poppe, H. (1991). Optimization and evaluation of the performance of arrangements for UV detection in high-resolution separations using fused-silica capillaries. Journal of Chromatography A559(1), 163-181.