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Wideband optical antennae for use in energy harvesting applications - GreEnergy

Descripción del proyecto

Una tecnología innovadora mejora drásticamente la recolección de energía solar

La generación de energía solar constituye una alternativa renovable a la energía procedente de combustibles fósiles, sin emisiones al aire o al agua, sin contaminación que provoque el calentamiento del planeta, ni riesgos de aumento del precio de la electricidad y amenazas para la salud pública. Con todo, y a pesar de su inmenso potencial, su utilización actual es mínima según el Centro de Tecnologías Climáticas y Energéticas. Para abordar este problema, el proyecto GreEnergy, financiado con fondos europeos, introducirá una tecnología solar electromagnética que mejoraría radicalmente la recolección de energía solar y tendría un efecto positivo en los consumidores, la sociedad, el crecimiento económico y el medio ambiente. El equipo de GreEnergy desarrollará un conjunto de antenas ópticas de banda ancha con una eficiencia muy alta.

Objetivo

Energy is a vital need of humanity and a primary indicator a of nations’ growth. However, most energy sources we use have low efficiency, rely on non-renewable resources and cause severe damage to the environment. The cleanest resource, and the one which offers virtually unlimited energy is the sun. However, according to the Center for Climate and Energy Solutions, current solar photovoltaics (PV) produce little more than 2% of the world’s electricity. This low output is primarily resulting from two factors: current commercial solar PV cells have approximately 15-20% efficiency, and the price of a 1m2 is around €400. GreEnergy aims to develop a wideband optical antenna array with very high efficiency. The GreEnergy device will integrate the energy-harvesting component in a self-powering nano-system. A prototype of the integrated components will be developed incorporating nano-optical antennas with nano-rectifiers (rectennas) and a micro-energy storage component. Fabrication of all components will be developed with the aim of integration on a single microchip in a single fabrication process. To ensure success of the rectennas development, we will use a risk mitigation plan by dual research teams using both graphene and metal-insulator-metal based solutions to achieve rectenna prototypes (TRL4). Simulations will provide full system level circuitry, act as a benchmark of the proof of concept design (TRL3) and culminate in road mapping for future full-scale development and commercialization. Within GreEnergy, the targeted efficiency of the overall system is 20-40%, while the theoretical efficiency is over 90%, at an estimated system cost below €100 per 1m2. Such a technology would fundamentally change solar energy harvesting and have dramatic effects on consumers, society, economic growth and the environment. Further, demonstration of the system provides a proof-of-concept backbone for numerous future micro/nano-systems such as IoT and nano-sensor applications.

Convocatoria de propuestas

H2020-LC-SC3-2018-2019-2020

Consulte otros proyectos de esta convocatoria

Convocatoria de subcontratación

H2020-LC-SC3-2020-RES-RIA

Régimen de financiación

RIA - Research and Innovation action

Coordinador

CHALMERS TEKNISKA HOGSKOLA AB
Aportación neta de la UEn
€ 637 500,00
Dirección
-
412 96 GOTEBORG
Suecia

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Región
Södra Sverige Västsverige Västra Götalands län
Tipo de actividad
Higher or Secondary Education Establishments
Enlaces
Coste total
€ 637 500,00

Participantes (7)