Scientists have found evidence that altering the chemistry of an electrode surface (surface engineering) can help microbial communities to connect to the electrode to produce more electricity (electron-exchange) more rapidly compared to unmodified electrodes. Electron exchange is at the heart of all redox reactions occurring in the natural world, as well as in bioengineered systems: so called ‘biolectrochemical systems’. Practical applications of these systems include current generation, wastewater treatment, and biochemical and biofuel production.