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2 reproducibility data are presented for both isocratic and gradient chromatography, using ion-exchang
5 ons on liquid chromatographic performance in isocratic and gradient elution are now well understood.
9 -run and column-to-column reproducibility of isocratic and gradient elution separations were found.
12 achiral and chiral) and eluent combinations (isocratic and gradient elution) under reversed-phase LC
13 e the ability of microring arrays to perform isocratic and gradient elutions under ambient conditions
15 CoVs by adjusting modifier concentrations in isocratic and gradient modes is beneficial for optimizin
18 s an overlapping impurity), were analyzed in isocratic and gradient runs with nonlinear baselines.
22 algorithms capable of predicting and ranking isocratic and gradient separations over vast amounts of
23 (isocratic), the effect of volume overload (isocratic), and separations of a limited number of pepti
27 ht on the mechanism of protein separation by isocratic CEC, which is believed to be a combination of
30 rated by reversed-phase chromatography under isocratic conditions and 5-CH(3)-H(4)PteGlu is quantifie
32 of retention modulation under fully aqueous isocratic conditions through incorporation of smart poly
33 isothermal conditions were used in GC, while isocratic conditions were used both in CLC and in CEC.
34 of these tryptic peptides was measured under isocratic conditions with different mobile-phase composi
35 -A pore size, 3-microm particle size), under isocratic conditions with mixtures of acetonitrile, meth
42 igh-throughput protein identification, using isocratic, either methanol- or acetonitrile-based buffer
45 ss than 3.5 min), a sub-2 mum C18 column and isocratic elution (toluene/methanol, 45:55 v/v) was used
47 or, and ovalbumin was separated using CEC by isocratic elution in the codirectional mode with aqueous
48 nalytical strategy based on the use of multi-isocratic elution mode, to achieve arbitrary selectivity
51 We have employed a solvent system for the isocratic elution of a reverse phase HPLC column in whic
53 trite by an optimised RP-HPLC technique with isocratic elution using n-octylamine in 20.0% methanol a
56 rst, on an octadecylsilyl (C18) column using isocratic elution with a methanol/water mobile phase con
60 sodium acetate, in contrast to conventional isocratic elution, for the simultaneous separation of 16
67 on (5min separation using acidified 10% MeOH isocratic flow in a CORTECS C18 column) to allow unparal
68 rorings was demonstrated through a series of isocratic GPC separations using narrow MWD polystyrene (
73 fied and quantified by a rapid and sensitive isocratic HPLC method and identification was further con
74 ng the cyclocondensation product by a simple isocratic HPLC method and using an automatic integrator,
77 to quantify iodine as iodide (I(-)) using an isocratic HPLC system with UV detection; algal iodine wa
80 ere able to achieve this separation using an isocratic LC method with a run time of less than 9min, w
81 y invariant separation environments, such as isocratic liquid chromatographic systems and isothermal
83 ationary phase to develop a high-throughput, isocratic liquid chromatography-mass spectrometry (LC-MS
84 eved on bare silica stationary phase with an isocratic mobile phase composed of CO2/methanol solvent
85 e liquid chromatography (HPLC) column and an isocratic mobile phase consisting of acetonitrile/methyl
86 0 x 4.6-mm C18 reversed-phase column with an isocratic mobile system consisting of 17.5 mM potassium
87 chromatographic analysis allowed the use of isocratic mobile-phase conditions to achieve effective a
92 an organic two-phase system and analyzed by isocratic normal-phase HPLC after dissolving the dried s
95 er mixtures at a constant flow rate using an isocratic or gradient mode, and the analytical benefits
97 d by comparing peak capacities in CEC on an, isocratic platform with peak capacities obtained with is
100 using a chromatography system equipped with isocratic pumps and an electrolytic eluent generator (EG
102 ilevel model is proposed to characterize the isocratic retention time data collected for 1026 heterog
103 irectly resolved from the reaction medium by isocratic reversed-phase elution on a silica-coated alum
104 ushrooms were separated and quantified by an isocratic reversed-phase high performance liquid chromat
108 out at mobile phase velocities close to (for isocratic runs) or somewhat above (for gradient runs) th
110 on, and ion-pairing principles for the rapid isocratic separation of anions in low explosives residue
111 The LC system was demonstrated by performing isocratic separation of phenolic compounds using a monol
114 nd 74% increase in the peak capacity for the isocratic separations of the small molecules and the gra
115 d use almost exclusively in sample abundant, isocratic separations when interfaced with high-performa
116 achieved on a phenyl column with a ternary, isocratic solvent system of acetonitrile, methanol and w
118 are separated chromatographically during the isocratic stage of the gradient profile from a 150-mm C3
120 n demonstrated that the combination of multi-isocratic steps and very short steep gradient segments a
121 zing plate count with a given analysis time (isocratic), the effect of volume overload (isocratic), a
122 us C(18) bonded particles are evaluated with isocratic ultrahigh-pressure liquid chromatography (UHPL