Engineering and TechnologyNature Communications
Spontaneous solar water splitting with decoupling of light absorption and electrocatalysis using silicon back-buried junction
H. Fu, P. Varadhan, et al.
Discover the innovative back-buried junction (BBJ) photoelectrochemical (PEC) cell design, achieving over 95% light harvesting, developed by Hui-Chun Fu, Purushothaman Varadhan, Chun-Ho Lin, and Jr-Hau He. This groundbreaking research enables highly efficient solar water splitting with impressive hydrogen generation rates.
Related Publications
Explore these studies to deepen your understanding
Adjacent work that informs or extends this paper's methodology and findings.
Chemistry
Direct growth of uniform carbon nitride layers with extended optical absorption towards efficient water-splitting photoanodes
J. Qin, J. Barrio, et al.
Chemistry
Integrated halide perovskite photoelectrochemical cells with solar-driven water-splitting efficiency of 20.8%
A. M. K. Fehr, A. Agrawal, et al.
Engineering and Technology
Highly durable and sustainable heterogeneous fabric using in-and-out fluorinated urethane coating for elimination of bacteria and oil-water separation
M. Choi, S. Park, et al.
Psychology
Brain decoding of spontaneous thought: Predictive modeling of self-relevance and valence using personal narratives
H. J. Kim, B. K. Lux, et al.

