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1 bility that is not possible via conventional potentiometry.
2 nsistent with those determined previously by potentiometry.
3 ic resonance (EPR) spectroscopies coupled to potentiometry.
4 emical open-circuit potential method, namely potentiometry.
5 ctively, using voltammetry, amperometry, and potentiometry.
6 est aspects of thin-layer cells and standard potentiometry.
7  ([3Fe-4S](+/0)) clusters were determined by potentiometry.
8 other iron-sulfur centers by selective redox potentiometry.
9 low and steady-state kinetic methods, and by potentiometry.
10 een -100 and -280 mV, as determined by redox potentiometry.
11 d aqueous Fe2+ concentrations using mediated potentiometry.
12  mV, respectively) were measured using redox potentiometry.
13                                              Potentiometry allows one to assess the ionized form of p
14  (PANI/PAA)(2) films was examined using both potentiometry and ATR spectroscopy.
15                               Mediated redox potentiometry and characterization by UV-visible, magnet
16 e sample speciation compared to zero-current potentiometry and detect the sum of labile carbonate spe
17 asicities of the compounds were evaluated by potentiometry and fluorescence spectroscopy.
18 ectrolytes is certainly possible with direct potentiometry and is done routinely in clinical analyzer
19  with classic calcium (Ca(2+)) ion-selective potentiometry and isotherms of Ca(2+) binding to a mixtu
20                                      In situ potentiometry and null ellipsometry was combined and use
21 eference hydricity is determined using redox potentiometry and spectrophotometric titration for a par
22 ruginosa ATCC 9027 has been determined using potentiometry and two spectroscopic approaches at concen
23 brane is shown to detect pH (by zero current potentiometry) and acidity and alkalinity (by chronopote
24 loride (TDDA) were read out at zero current (potentiometry) and with applied current techniques (chro
25 scaffold, GGG, we have employed fluorimetry, potentiometry, and calorimetry to determine the thermody
26 scopy, analytical ultracentrifugation, redox potentiometry, and EPR demonstrate that PRIME binds the
27 es are normally interrogated by zero current potentiometry, and their selectivity is understood to be
28                    Future applications of NC potentiometry are briefly discussed.
29 d membrane against traditional ion-selective potentiometry are demonstrated in terms of a detection l
30                                   Therefore, potentiometry as a single technique is by itself not suf
31 base behavior of the compound was studied by potentiometry at 298.2 K in aqueous solution and at ioni
32 nd fumarate (fum(2-)) anions were studied by potentiometry at 298.2 K in aqueous solution and at ioni
33                            Here we show that potentiometry can be used to study the surface of colloi
34                                      In situ potentiometry can provide real-time feedback during synt
35                                              Potentiometry confirmed the strong stabilization of the
36                                        Redox potentiometry coupled with optical spectroscopy allowed
37 dology compares well to that of open circuit potentiometry, despite giving complementary information
38 se voltammetry, square wave voltammetry, and potentiometry), each with different uses.
39                                  Using redox potentiometry, electronic absorption, circular dichroism
40 -art thick film, laser printing, solid-state potentiometry, fluidics and wireless technologies.
41 of each heme A and heme B to [H10H24](2) and potentiometry indicated the pair of hemes B resided in t
42                                              Potentiometry indicates that the substitutions do not si
43 es dynamic electrochemistry and zero current potentiometry into a single protocol.
44                                              Potentiometry is also reported for colloidal CdSe NCs, w
45                                              Potentiometry is known to be sensitive to so-called free
46 roach called "concentration-related response potentiometry" is used to study molecular interaction fo
47 gnal readout was achieved using open circuit potentiometry (OCP).
48 educed CdSe NCs to ZnO NCs in solution, with potentiometry providing a measure of the inter-NC electr
49                                              Potentiometry reveals major pK shifts from 4.2 to 7.0 an
50 lectivity of the membrane compared to direct potentiometry, since the level of interference will incr
51 roscope is used to demonstrate low-cost zeta potentiometry that allows measurement of both particle a
52  advantages of ion-transfer voltammetry over potentiometry to quantitatively and mechanistically asse
53 rrently the stainless steel response (CV and potentiometry) toward two different species; l-dopa, whi
54                            Temperature pulse potentiometry (TPP) gives convenient peak-shaped analyti
55                Such measurements are done by potentiometry using polyaniline (PAni)-based working ele
56  3 mm DBS punches were measured via indirect potentiometry, using the Roche Cobas 8000 routine chemis
57 troduce graphene, electroanalytical methods (potentiometry, voltammetry, amperometry and electrochemi
58 ometric sensing, termed backside calibration potentiometry, was recently introduced.
59  can be favorably compared to that in direct potentiometry where no sample depletion occurs.
60  the same Nernstian responses as typical for potentiometry, which is demonstrated with Cl(-) ISE meas
61 e traditionally interrogated by zero current potentiometry, which, ideally, gives information on the
62                                              Potentiometry with resonance Raman and FTIR spectroscopy

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