Lewis Nathan S
Beckman Institute and Kavli Nanoscience Institute, 210 Noyes Laboratory, 127-72, California Institute of Technology, Pasadena, CA 91125, USA.
Science. 2007 Feb 9;315(5813):798-801. doi: 10.1126/science.1137014.
At present, solar energy conversion technologies face cost and scalability hurdles in the technologies required for a complete energy system. To provide a truly widespread primary energy source, solar energy must be captured, converted, and stored in a cost-effective fashion. New developments in nanotechnology, biotechnology, and the materials and physical sciences may enable step-change approaches to cost-effective, globally scalable systems for solar energy use.
目前,太阳能转换技术在完整能源系统所需的技术方面面临成本和可扩展性障碍。为了提供一种真正广泛应用的一次能源,太阳能必须以具有成本效益的方式进行捕获、转换和存储。纳米技术、生物技术以及材料科学和物理科学的新发展可能会带来变革性方法,以实现具有成本效益、全球可扩展的太阳能利用系统。