Litcius/Paper detail

Harvesting energy from sun, outer space, and soil

Yanpei Tian, Xiaojie Liu, Fangqi Chen, Yi Zheng

2020Scientific Reports54 citationsDOIOpen Access PDF

Abstract

While solar power systems have offered a wide variety of electricity generation approaches including photovoltaics, solar thermal power systems, and solar thermoelectric generators, the ability to generate electricity at both the daytime and nighttime with no necessity of energy storage remains challenging. Here, we propose and verify an environment-friendly, sustainable, and cost-effective strategy of harvesting solar energy by solar heating during the daytime and harnessing the coldness of the outer space through radiative cooling to produce electricity at night using a commercial thermoelectric module. It enables electricity generation for 24 h a day. We experimentally demonstrate a peak power density of 37 mW/m[Formula: see text] at night and a peak value of 723 mW/m[Formula: see text] during the daytime. A theoretical model that accurately predicts the performance of the device is developed and validated. The feature of 24-h electricity generation shows great potential energy applications of off-grid and battery-free lighting and sensing.

Topics & Concepts

PhotovoltaicsElectricity generationEnvironmental scienceElectricityDaytimePhotovoltaic systemSolar energyRenewable energyThermoelectric generatorStand-alone power systemEnergy storageEngineering physicsProcess engineeringThermoelectric effectDistributed generationComputer sciencePower (physics)Electrical engineeringPhysicsAtmospheric sciencesEngineeringThermodynamicsThermal Radiation and Cooling TechnologiesAdvanced Thermoelectric Materials and DevicesAdvanced Thermodynamics and Statistical Mechanics