volume 38 issue 12 publication number e3619

On the Replicability of the Thermodynamic Modeling of Spectroscopic Titration Data in the Nickel(II) En System

Fenton C. Lawler 1
Ryan S. Storteboom 1
Plinio D. Rosales-Lopez 1
Madison N. Hoogstra 1
Katherine J. Selvaggio 1
Trevina Chen 1
Krista A. Zogg 1
Dafna L. Heule 1
Noah J. Pehrson 1
Aerin E. Baker 1
Douglas A.Vander Griend 1
Publication typeJournal Article
Publication date2024-10-23
scimago Q3
wos Q1
SJR0.390
CiteScore3.3
Impact factor2.1
ISSN08869383, 1099128X
Abstract
ABSTRACT

Characterizing complicated solution phase systems in situ requires advanced modeling techniques to capture the intricate balances between the many chemical species. Due to the error inherent in any scientific measurement, a spectrophotometric titration experiment with nickel(II) and ethylenediamine (en) was repeated six times using an autotitrator to test the replicability of the data and the consistency of the resulting thermodynamic model. All six datasets could be modeled very tightly ( R 2  > 99.9999%) with the following eight complexes: [Ni] 2+ , [Ni 2 en] 4+ , [Nien] 2+ , [Ni 2 en 3 ] 4+ , [Nien 2 ] 2+ , [Ni 2 en 5 ] 4+ , [Nien 3 ] 2+ , and [Nien 6 ] 2+ . The logK values for the stepwise associative reactions agree with existing literature values for the majority species ([Nien n = 1–3 ] 2+ ) and matched expectations for the minority species; 95% confidence intervals for each logK value were determined via bootstrapping, which quantifies the variability in the binding constant value that is supported by a given dataset. The repeated experiments, which could not be successfully concatenated together, demonstrate that replication is crucial to capturing all the variability in the logK values. Conversely, bootstrapped confidence intervals across multiple experiments can be readily combined to generate an appropriate range for an experimentally determined binding constant.

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Lawler F. C. et al. On the Replicability of the Thermodynamic Modeling of Spectroscopic Titration Data in the Nickel(II) En System // Journal of Chemometrics. 2024. Vol. 38. No. 12. e3619
GOST all authors (up to 50) Copy
Lawler F. C., Storteboom R. S., Rosales-Lopez P. D., Hoogstra M. N., Selvaggio K. J., Chen T., Zogg K. A., Heule D. L., Pehrson N., Baker A., Griend D. A. On the Replicability of the Thermodynamic Modeling of Spectroscopic Titration Data in the Nickel(II) En System // Journal of Chemometrics. 2024. Vol. 38. No. 12. e3619
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TY - JOUR
DO - 10.1002/cem.3619
UR - https://analyticalsciencejournals.onlinelibrary.wiley.com/doi/10.1002/cem.3619
TI - On the Replicability of the Thermodynamic Modeling of Spectroscopic Titration Data in the Nickel(II) En System
T2 - Journal of Chemometrics
AU - Lawler, Fenton C.
AU - Storteboom, Ryan S.
AU - Rosales-Lopez, Plinio D.
AU - Hoogstra, Madison N.
AU - Selvaggio, Katherine J.
AU - Chen, Trevina
AU - Zogg, Krista A.
AU - Heule, Dafna L.
AU - Pehrson, Noah J.
AU - Baker, Aerin E.
AU - Griend, Douglas A.Vander
PY - 2024
DA - 2024/10/23
PB - Wiley
IS - 12
VL - 38
SN - 0886-9383
SN - 1099-128X
ER -
BibTex
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@article{2024_Lawler,
author = {Fenton C. Lawler and Ryan S. Storteboom and Plinio D. Rosales-Lopez and Madison N. Hoogstra and Katherine J. Selvaggio and Trevina Chen and Krista A. Zogg and Dafna L. Heule and Noah J. Pehrson and Aerin E. Baker and Douglas A.Vander Griend},
title = {On the Replicability of the Thermodynamic Modeling of Spectroscopic Titration Data in the Nickel(II) En System},
journal = {Journal of Chemometrics},
year = {2024},
volume = {38},
publisher = {Wiley},
month = {oct},
url = {https://analyticalsciencejournals.onlinelibrary.wiley.com/doi/10.1002/cem.3619},
number = {12},
pages = {e3619},
doi = {10.1002/cem.3619}
}