Celis-Salazar Paula J, Epley Charity C, Ahrenholtz Spencer R, Maza William A, Usov Pavel M, Morris Amanda J
Department of Chemistry, Virginia Tech , Blacksburg, Virginia 24061, United States.
Inorg Chem. 2017 Nov 20;56(22):13741-13747. doi: 10.1021/acs.inorgchem.7b01656. Epub 2017 Nov 2.
The ditopic ligands 2,6-dicarboxy-9,10-anthraquinone and 1,4-dicarboxy-9,10-anthraquinone were used to synthesize two new UiO-type metal-organic frameworks (MOFs; namely, 2,6-Zr-AQ-MOF and 1,4-Zr-AQ-MOF, respectively). The Pourbaix diagrams (E vs pH) of the MOFs and their ligands were constructed using cyclic voltammetry in aqueous buffered media. The MOFs exhibit chemical stability and undergo diverse electrochemical processes, where the number of electrons and protons transferred was tailored in a Nernstian manner by the pH of the media. Both the 2,6-Zr-AQ-MOF and its ligand reveal a similar electrochemical pK value (7.56 and 7.35, respectively) for the transition between a two-electron, two-proton transfer (at pH < pK) and a two-electron, one-proton transfer (at pH > pK). In contrast, the position of the quinone moiety with respect to the zirconium node, the effect of hydrogen bonding, and the amount of defects in 1,4-Zr-AQ-MOF lead to the transition from a two-electron, three-proton transfer to a two-electron, one-proton transfer. The pK of this framework (5.18) is analogous to one of the three electrochemical pK values displayed by its ligand (3.91, 5.46, and 8.80), which also showed intramolecular hydrogen bonding. The ability of the MOFs to tailor discrete numbers of protons and electrons suggests their application as charge carriers in electronic devices.
使用双齿配体2,6 - 二羧基 - 9,10 - 蒽醌和1,4 - 二羧基 - 9,10 - 蒽醌合成了两种新型的UiO型金属有机框架材料(MOF;分别为2,6 - Zr - AQ - MOF和1,4 - Zr - AQ - MOF)。在水性缓冲介质中通过循环伏安法构建了MOF及其配体的Pourbaix图(E对pH)。这些MOF表现出化学稳定性并经历多种电化学过程,其中转移的电子数和质子数通过介质的pH以能斯特方式进行调整。2,6 - Zr - AQ - MOF及其配体在两电子、两质子转移(在pH < pK时)和两电子、单质子转移(在pH > pK时)之间的转变显示出相似的电化学pK值(分别为7.56和7.35)。相比之下,1,4 - Zr - AQ - MOF中醌部分相对于锆节点的位置、氢键的影响以及缺陷量导致从两电子、三质子转移转变为两电子、单质子转移。该框架的pK(5.18)与其配体显示的三个电化学pK值之一(3.91、5.46和8.80)相似,其配体也显示出分子内氢键。MOF调整离散数量的质子和电子的能力表明它们可作为电子器件中的电荷载体。