𝜈 | Molecule 1 : 1 Host | ||
Ka = | 1.33⋅104 | ± 1750.0 | M-1 |
Kd = | |||
logKa = | |||
T | 25.0 °C | ||
Energy | kJ mol-1 | kcal mol-1 | |||
---|---|---|---|---|---|
ΔG | = | -23.54 | ± 0.33 | -5.63 | ± 0.08 |
Detection Method: | Direct | ||
Assay Type: | Direct Binding Assay | ||
Technique: | Nuclear Magnetic Resonance | ||
Nucleus | H-1 |
Solvent System | Buffer System | 10 mM sodium tetraborate buffer pH-9.2 |
Solvents | Deuterium Oxide | |
Additives | Sodium tetrabor... | 10.0 mM |
Source of Concentration | estimated | |
Total concentration | 10.0 mM | |
pH | 9.2 |
Citation: |
C. L. D. Gibb, B. C. Gibb, SupraBank 2024, Binding of cyclic carboxylates to octa-acid deep-cavity cavitand (dataset). https://doi.org/10.34804/supra.20210928372 |
Link: | https://doi.org/10.34804/supra.20210928372 |
Export: | BibTex | RIS | EndNote |
Citation: |
C. L. D. Gibb, B. C. Gibb, J Comput Aided Mol Des 2013, 28, 319–325. |
Link: | https://doi.org/10.1007/s10822-013-9690-2 |
Export: | BibTex | RIS | EndNote | |
The plot depicts the binding isotherm simulation of a 1:1 interaction of CYCLOHEXANECARBOXYLIC ACID (0.0015037593984962407 M) and Octa acid (0 — 0.0030075187969924814 M).