8 New Trend in Instrumentation of NIR Spectroscopy …
209
8. V. Wiedemair, M. De Biasio, R. Leitner, D. Balthasar, C.W. Huck, Application of design of
experiment for detection of meat fraud with a portable near-infrared spectrometer. Curr. Anal.
Chem. 14, 58–67 (2018)
9. O.M.D. Lutz, G.K. Bonn, B.M. Rode, C.W. Huck, Towards reproducible quantification of
ethanol in gasoline via a customized mobile NIR spectrometer. Anal. Chim. Acta 826, 61–68
(2014)
10. G. Kirchler, C.K. Pezzei, K.B. Be´ c, S. Mayr, M. Ishigaki, Y. Ozaki, C.W. Huck, Critical
evaluation of spectral information of benchtop versus portable near-infrared spectrometers:
quantum chemistry and two-dimensional correlation spectroscopy for a better understanding
of PLS regression models of the rosmarinic acid content in Rosmarini folium. Analyst 142,
455–464 (2017)
11. P. Reinig, H. Grüger, J. Knobbe, T. Pügner, S. Meyer, Bringing NIR spectrometers into mobile
phones. Proc. MOEMS Miniaturized Syst. XVII 10545, 105450F (2018)
12. K.B. Be´ c, J. Grabska, H.W. Siesler, C.W. Huck, Handheld near-infrared spectrometers: Where
are we heading? NIR News 31(3-4), 28–35 (2020)
13. Y. Du, G.A. Zhou, A MEMS-driven Hadamard transform spectrometer. Proc. SPIE 10545,
MOEMS Miniaturized Syst. XVII, 105450X, (2018)
14. K. Pezzei, M. Watschinger, V.A. Huck-Pezzei, C. Lau, Z. Zuo, P.C. Leung, C.W. Huck, Infrared
spectroscopic techniques for the non-invasive and rapid quality control of Chinese traditional
medicine Si-Wu-Tang. Spectro. Eur. 28, 16–21 (2016)
15. C.K. Pezzei, S.A. Schönbichler, C.G. Kirchler, J. Schmelzer, S. Hussain, V.A. Huck-Pezzei, M.
Popp, J. Krolitzek, G.K. Bonn, C.W. Huck, Application if benchtop and portable near-infrared
spectrometers for predicting the optimum harvest time of Verbena officinalis. Talanta 169,
70–76 (2017)
16. K.B. Be´ c, J. Grabska, C.G. Kirchler, C.W. Huck, NIR spectra simulation of thymol for
better understanding of the spectra forming factors, phase and concentration effects and PLS
regression features. J. Mol. Liq. 268, 895–902 (2018)
17. J. Grabska, K.B. Be´ c, C.G. Kirchler, Y. Ozaki, C.W. Huck, Distinct difference in sensitivity
of NIR versus IR bands of melamine to inter-molecular interactions with impact on analytical
spectroscopy explained by anharmonic quantum mechanical study. Molecules 24, 1402 (2019)
18. V. Wiedemair, D. Mair, C. Held, C.W. Huck, Investigations into the use of handheld nearinfrared spectrometer and novel semi-automated data analysis for the determination of protein
content indifferent cultivars of Panicum miliaceum L. Talanta 205, 120115 (2019)
19. V. Wiedemair, D. Langore, R. Garsleitner, K. Dillinger, C.W. Huck, Investigations into the
performance of a novel pocket-sized near-infrared spectrometer for cheese analysis. Molecules
24, 428 (2019)
20. U. Hoffmann, F. Pfeifer, C. Hsuing, H.W. Siesler, Spectra transfer between a fourier transform
near-infrared laboratory and a miniaturized handheld near-infrared spectrometer. Appl. Spectro.
70, 852–860 (2016)
21. H. Yan, H.W. Siesler, Identification of textiles by handheld near infrared spectroscopy:
protecting customers against product counterfeiting. J. Near Infrared Spectro. 26, 311–321
(2018)
22. H. Yan, H.W. Siesler, Quantitative analysis of a pharmaceutical formulation: performance
comparison of different handheld near-infrared spectrometers. J. Pharm. Biomed. Anal. 160,
179–186 (2018)
23. V. Wiedemair, C.W. Huck, Evaluation of the performance of three hand-held near-infrared
spectrometer through investigation of total antioxidant capacity in gluten-free grains. Talanta
189, 233 (2018)
24. B.A. Eckenrode, Environmental and forensic applications of field-portable GC-MS: an
overview. J. Am. Soc. Mass Spectrom. 12, 683–693 (2001)
209
8. V. Wiedemair, M. De Biasio, R. Leitner, D. Balthasar, C.W. Huck, Application of design of
experiment for detection of meat fraud with a portable near-infrared spectrometer. Curr. Anal.
Chem. 14, 58–67 (2018)
9. O.M.D. Lutz, G.K. Bonn, B.M. Rode, C.W. Huck, Towards reproducible quantification of
ethanol in gasoline via a customized mobile NIR spectrometer. Anal. Chim. Acta 826, 61–68
(2014)
10. G. Kirchler, C.K. Pezzei, K.B. Be´ c, S. Mayr, M. Ishigaki, Y. Ozaki, C.W. Huck, Critical
evaluation of spectral information of benchtop versus portable near-infrared spectrometers:
quantum chemistry and two-dimensional correlation spectroscopy for a better understanding
of PLS regression models of the rosmarinic acid content in Rosmarini folium. Analyst 142,
455–464 (2017)
11. P. Reinig, H. Grüger, J. Knobbe, T. Pügner, S. Meyer, Bringing NIR spectrometers into mobile
phones. Proc. MOEMS Miniaturized Syst. XVII 10545, 105450F (2018)
12. K.B. Be´ c, J. Grabska, H.W. Siesler, C.W. Huck, Handheld near-infrared spectrometers: Where
are we heading? NIR News 31(3-4), 28–35 (2020)
13. Y. Du, G.A. Zhou, A MEMS-driven Hadamard transform spectrometer. Proc. SPIE 10545,
MOEMS Miniaturized Syst. XVII, 105450X, (2018)
14. K. Pezzei, M. Watschinger, V.A. Huck-Pezzei, C. Lau, Z. Zuo, P.C. Leung, C.W. Huck, Infrared
spectroscopic techniques for the non-invasive and rapid quality control of Chinese traditional
medicine Si-Wu-Tang. Spectro. Eur. 28, 16–21 (2016)
15. C.K. Pezzei, S.A. Schönbichler, C.G. Kirchler, J. Schmelzer, S. Hussain, V.A. Huck-Pezzei, M.
Popp, J. Krolitzek, G.K. Bonn, C.W. Huck, Application if benchtop and portable near-infrared
spectrometers for predicting the optimum harvest time of Verbena officinalis. Talanta 169,
70–76 (2017)
16. K.B. Be´ c, J. Grabska, C.G. Kirchler, C.W. Huck, NIR spectra simulation of thymol for
better understanding of the spectra forming factors, phase and concentration effects and PLS
regression features. J. Mol. Liq. 268, 895–902 (2018)
17. J. Grabska, K.B. Be´ c, C.G. Kirchler, Y. Ozaki, C.W. Huck, Distinct difference in sensitivity
of NIR versus IR bands of melamine to inter-molecular interactions with impact on analytical
spectroscopy explained by anharmonic quantum mechanical study. Molecules 24, 1402 (2019)
18. V. Wiedemair, D. Mair, C. Held, C.W. Huck, Investigations into the use of handheld nearinfrared spectrometer and novel semi-automated data analysis for the determination of protein
content indifferent cultivars of Panicum miliaceum L. Talanta 205, 120115 (2019)
19. V. Wiedemair, D. Langore, R. Garsleitner, K. Dillinger, C.W. Huck, Investigations into the
performance of a novel pocket-sized near-infrared spectrometer for cheese analysis. Molecules
24, 428 (2019)
20. U. Hoffmann, F. Pfeifer, C. Hsuing, H.W. Siesler, Spectra transfer between a fourier transform
near-infrared laboratory and a miniaturized handheld near-infrared spectrometer. Appl. Spectro.
70, 852–860 (2016)
21. H. Yan, H.W. Siesler, Identification of textiles by handheld near infrared spectroscopy:
protecting customers against product counterfeiting. J. Near Infrared Spectro. 26, 311–321
(2018)
22. H. Yan, H.W. Siesler, Quantitative analysis of a pharmaceutical formulation: performance
comparison of different handheld near-infrared spectrometers. J. Pharm. Biomed. Anal. 160,
179–186 (2018)
23. V. Wiedemair, C.W. Huck, Evaluation of the performance of three hand-held near-infrared
spectrometer through investigation of total antioxidant capacity in gluten-free grains. Talanta
189, 233 (2018)
24. B.A. Eckenrode, Environmental and forensic applications of field-portable GC-MS: an
overview. J. Am. Soc. Mass Spectrom. 12, 683–693 (2001)
