In‐Operando Mapping of pH Distribution in Electrochemical Processes
Angew. Chem. Int. Ed. 2019, 58, 16815–16819. In aqueous electrochemical processes, the pH evolves spatially and temporally, and often dictates the process performance. Herein, a new method for the in‐operando monitoring of pH distribution in an electrochemical cell is demonstrated. A combination of pH‐sensitive fluorescent dyes, encompassing a wide pH range from ≈1.5 to 8.5, and rapid electrochemically coupled laser scanning confocal microscopy is used to observe pH changes i
Roles of Near and Far Fields in Plasmon-Enhanced Singlet Oxygen Production
J. Phys. Chem. Lett. 2019, 10, 3654-3660. In plasmon-enhanced singlet oxygen (1O2) production, irradiation of a hybrid photosensitizer–metal nanoparticle leads to a significant alteration of the photosensitizer’s 1O2 yield. The quest for a more rational design of these nanomaterials calls for a better understanding of the enhancement mechanism that, to this day, remains largely unexplored. Herein, we introduce a new methodology to distinguish the near- and far-field contribut
Synthesis of Tetrathia–Oligothiophene Macrocycles
ACS Omega, 2019, 4 (2), pp 3405–3408. The synthesis of six tetrathia–oligothiophene macrocycles is described with modest ring-closing yields between 21 and 55%. Single-crystal X-ray studies of four of the macrocycles indicated that encapsulated solvent or guest molecules were possible. A variety of guest molecules were explored for inclusion complexes via NMR, absorption, emission, and X-ray techniques. The solution-phase inclusion complexes were uninformative; yet the solid-


