Publications by authors named "Po-Chuan Yang"

Single crystal silicon solar cells are still predominant in the market due to the abundance of silicon on earth and their acceptable efficiency. Different solar-cell structures of single crystalline Si have been investigated to boost efficiency; the heterojunction with intrinsic thin layer (HIT) structure is currently the leading technology. The record efficiency values of state-of-the art HIT solar cells have always been based on n-type single-crystalline Si wafers.

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Hierarchical structures combining micropyramids and nanowires with appropriate control of surface carrier recombination represent a class of architectures for radial p-n junction solar cells that synergizes the advantageous features including excellent broad-band, omnidirectional light-harvesting and efficient separation/collection of photoexcited carriers. The heterojunction solar cells fabricated with hierarchical structures exhibit the efficiency of 15.14% using cost-effective as-cut Czochralski n-type Si substrates, which is the highest reported efficiency among all n-type Si nanostructured solar cells.

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Synopsis of recent research by authors named "Po-Chuan Yang"

  • Po-Chuan Yang's research primarily focuses on enhancing the efficiency of solar cells, particularly emphasizing the use of silicon-based materials and innovative structures to improve solar energy conversion.
  • His article on HIT (Heterojunction with Intrinsic Thin layer) solar cells highlights advancements made with p-type silicon wafers, contrasting with the prevalent use of n-type wafers in current technologies, and seeks to boost the overall efficiency of solar panels.
  • Yang's exploration of hierarchical structures in n-type silicon solar cells demonstrates his commitment to fabricating efficient and cost-effective solar technologies, resulting in a notable efficiency of 15.14% in a novel design that promotes better light harvesting and charge carrier collection.