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1 d illuminates the MTP using a light-emitting-diode array.
2 e liquid chromatography (UHPLC) coupled with diode array and accurate mass spectrometry detection usi
3 ocedure, based on liquid chromatography with diode array and fluorescence detection, has been propose
4 chromatography coupled to refraction index, diode array and fluorescence detector, respectively); ph
6 optimized liquid chromatographic coupled to diode array and fluorimetric detectors procedure, obtain
7 performance liquid chromatography coupled to diode array and mass spectrometer detectors (HPLC-DAD-MS
8 high-performance liquid chromatography with diode array and mass spectrometric detection (LC-DAD-MS)
11 rformance liquid chromatography with a photo diode array and positive mode in-line electrospray ioniz
12 em based on a single-photon, avalanche photo-diode array and the other system on a time-gated, intens
13 nce liquid chromatography method, coupled to diode-array and fluorescence detectors, with a previous
15 using liquid chromatography (LC) coupled to diode array (DAD) and electrospray ionization mass spect
16 erformance Liquid Chromatography (HPLC) with diode array (DAD) and fluorescence (FLD) detection was u
17 ermo HyPURITY C18 column in combination with diode array dectector and mass spectrometer with HPLC so
19 ry liquid chromatography (Cap-LC) coupled to diode array detection (DAD) has the potential to estimat
20 High-performance liquid chromatography with diode array detection (HPLC-DAD) analysis allowed the id
21 high performance liquid chromatography with diode array detection (HPLC-DAD) based on two unique che
22 of a high-performance liquid chromatography-diode array detection (HPLC-DAD) method for the determin
25 high-performance liquid chromatography photo-diode array detection (HPLC-PDA) coupled with positive i
26 high performance liquid chromatography with diode array detection (HPLC/DAD) or by gas chromatograph
28 For the first time, liquid chromatography-diode array detection (LC-DAD) and liquid-chromatography
29 e method using liquid chromatography with UV-diode array detection (LC-DAD) for simultaneous determin
32 performance liquid chromatography coupled to diode array detection (RP-HPLC/DAD) was developed using
33 rformance liquid chromatography coupled with diode array detection and electron spray-mass spectromet
34 performance liquid chromatography coupled to diode array detection and electrospray ionisation mass s
35 ified using liquid chromatography coupled to diode array detection and electrospray ionization tandem
37 rformance liquid chromatography coupled with diode array detection and electrospray-mass spectrometry
38 rformance liquid chromatography coupled with diode array detection and high-resolution accurate-mass
39 high-performance liquid chromatography with diode array detection method for determination of 13 sul
41 the analytes were carried out by HILIC with diode array detection, after proper optimization of the
42 ins, (using liquid chromatography coupled to diode array detection, and mass spectrometry with electr
43 erformance liquid chromatography (HPLC) with diode array detection, and vitamin E by HPLC with fluore
44 high-performance liquid chromatography with diode array detection, was developed and validated for t
46 using high-performance liquid chromatography-diode array detection-electrospray ionisation multistage
47 ultra-high-performance liquid chromatography-diode array detection-high resolution accurate mass-mass
48 ctive high performance liquid chromatography-diode array detection-tandem mass spectrometry (HPLC-DAD
53 hemical profiles using liquid chromatography/diode array detection/electrospray ion trap tandem mass
58 high-performance liquid chromatography with diode-array detection and characterized by matrix-assist
59 high-performance liquid chromatography with diode-array detection and mass spectrometry (HPLC-DAD-MS
61 dly detected by online liquid chromatography-diode-array detection in a relatively high signal intens
65 ctures were elucidated using HPLC coupled to diode array detector (DAD) and electrospray ionization m
66 liquid chromatography (LCxLC) coupled with a diode array detector (DAD), the change in the refractive
70 s were studied by Liquid Chromatography with Diode Array Detector (LC-DAD) and Mass Spectrometry (LC-
71 rformance liquid chromatography coupled to a diode array detector and a fluorescence detector set in
72 rformance liquid chromatography coupled to a diode array detector and a heated electrospray ionisatio
73 rformance liquid chromatography coupled to a diode array detector and a mass spectrometer (HPLC-DAD-E
74 liquid chromatography (UHPLC) coupled with a diode array detector and a triple-quadrupole mass spectr
75 Trap mass analyzer, and UHPLC coupled with a diode array detector and a triple-quadrupole mass spectr
76 n an ion-pair mode and then monitored with a diode array detector and an electrochemical detector.
77 rmined by liquid chromatography coupled to a diode array detector and an ultrahigh resolution hybrid
78 s are directly analyzed by HPLC coupled with diode array detector and mass spectrometer if required.
79 esolution liquid chromatography coupled with diode array detector and mass spectrometry, which allowe
83 romatography (reversed phase columns, UV-Vis diode array detector) at time points during storage; mea
84 High Performance Liquid Chromatography with Diode Array Detector), as far as by the colorimetric enz
90 he UV spectrum of the major peak on the HPLC diode-array detector was representative of DNPH adducts,
91 e liquid chromatography with fluorescent and diode array detectors (HPLC-FLD/DAD) and confirmed by ga
93 an AF4 apparatus to the following detectors: diode array, fluorescence, multiangle light scattering,
94 r sample preparation and an HPLC system with diode array for anthocyanin separation and detection.
95 R fiber-optic spectrometer with a high-speed diode array for calibration-free monitoring and modeling
96 ogies (a chemical imaging unit, a commercial diode array instrument, and a light tube non-commercial
97 e fruits were determined on-line using a NIR diode array instrument, operating on a conveyor belt.
99 generally applicable to ultraviolet-visible diode array or rapid-scanning spectrophotometers and the
100 by DART/MS scaled closely with those of the diode array or the total ion chromatogram obtained by LC
101 omatography (HPLC) platform coupled to photo diode array (PDA) and high resolution mass spectrometry
102 ate mass-Mass Spectrometry (am-MS) and Photo Diode Array (PDA) detection the C17-polyacetylene standa
105 s measurements of hemoglobin spectra using a diode array spectrophotometer and oxygen tensions using
108 rmance liquid chromatography with hyphenated diode array tandem mass spectrometry (UHPLC-DAD-MS/MS).
109 We established a method for using HPLC and diode-array ultraviolet scanning to quantitate soy isofl
110 yl-2'-deoxycytidine was obtained by combined diode array UV spectra analysis and mass spectra of chro
111 n-line characterization via a combination of diode array UV, 1H NMR, FT-IR spectroscopy, and mass spe
112 del NSAIDs was achieved via a combination of diode array UV, 1H NMR, FT-IR spectroscopy, and time-of-
113 formance liquid chromatography system with a diode array UV-visible detector and a Viscotek 300 EZ Pr
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