Hagfeldt A, Grätzel M
Department of Physical Chemistry, Angström Solar Center, University of Uppsala, S75121 Uppsala, Sweden.
Acc Chem Res. 2000 May;33(5):269-77. doi: 10.1021/ar980112j.
The dye-sensitized nanocrystalline injection solar cell employs transition metal complexes for spectral sensitization of mesoporous TiO(2) films together with suitable redox electrolytes or amorphous organic hole conductors. Light harvesting occurs efficiently over the whole visible and near-IR range due to the very large internal surface area of the films. Judicious molecular engineering allows the photoinduced charge separation to occur quantitatively within a few femtoseconds. The certified overall power conversion efficiency of the new solar cell for AM 1.5 solar radiation stands presently at 10.4%.
染料敏化纳米晶注入式太阳能电池采用过渡金属配合物对介孔TiO₂薄膜进行光谱敏化,并结合合适的氧化还原电解质或非晶有机空穴导体。由于薄膜具有非常大的内表面积,在整个可见光和近红外范围内都能高效地进行光捕获。合理的分子工程使得光生电荷分离能在几飞秒内定量发生。目前,这种新型太阳能电池在AM 1.5太阳辐射下的认证总功率转换效率为10.4%。