In this study, a series of donor-acceptor-donor (D-A-D) type small molecules based on the fluorene and diphenylethenyl enamine units, which are distinguished by different acceptors, as holetransporting materials (HTMs) for perovskite solar cells is presented. The incorporation of the malononitrile acceptor units is found to be beneficial for not only carrier transportation but also defects passivation via Pb-N interactions. The highest power conversion efficiency of over 22% is achieved on cells based on V1359, which is higher than that of spiro-OMeTAD under identical conditions. This st shows that HTMs prepared via simplified synthetic routes are not only a low-cost alternative to spiro-OMeTAD but also outperform in efficiency and stabilit...
Organic-inorganic halide perovskite solar cells (PSCs) show great potential for energy applications ...
The 4,4'-dimethoxydiphenylamine-substituted 9,9'-bifluorenylidene (KR216) hole transporting material...
The exploration of alternative molecular hole-transporting materials (HTMs) specifically for high pe...
The synthesis, characterization and photovoltaic performance of series of novel molecular hole trans...
A group of small-molecule hole-transporting materials (HTMs) that are based on fluorenylidene fragme...
The molecular structure of the hole transporting material (HTM) play an important role in hole extra...
The molecular structure of the hole transporting material (HTM) play an important role in hole extra...
This study reports two new, simple and cost-effective hole transporting materials for perovskite sol...
This study reports two new, simple and cost-effective hole transporting materials for perovskite sol...
To attain commercial viability, perovskite solar cells (PSCs) have to be reasonably priced, highly e...
To attain commercial viability, perovskite solar cells (PSCs) have to be reasonably priced, highly e...
To attain commercial viability, perovskite solar cells (PSCs) have to be reasonably priced, highly e...
Computational study on relationship between molecular structure and property of small molecule holet...
The simpler the design, the better and more effective it is. Two novel conjugated triarylamine deriv...
Computational study on relationship between molecular structure and property of small molecule holet...
Organic-inorganic halide perovskite solar cells (PSCs) show great potential for energy applications ...
The 4,4'-dimethoxydiphenylamine-substituted 9,9'-bifluorenylidene (KR216) hole transporting material...
The exploration of alternative molecular hole-transporting materials (HTMs) specifically for high pe...
The synthesis, characterization and photovoltaic performance of series of novel molecular hole trans...
A group of small-molecule hole-transporting materials (HTMs) that are based on fluorenylidene fragme...
The molecular structure of the hole transporting material (HTM) play an important role in hole extra...
The molecular structure of the hole transporting material (HTM) play an important role in hole extra...
This study reports two new, simple and cost-effective hole transporting materials for perovskite sol...
This study reports two new, simple and cost-effective hole transporting materials for perovskite sol...
To attain commercial viability, perovskite solar cells (PSCs) have to be reasonably priced, highly e...
To attain commercial viability, perovskite solar cells (PSCs) have to be reasonably priced, highly e...
To attain commercial viability, perovskite solar cells (PSCs) have to be reasonably priced, highly e...
Computational study on relationship between molecular structure and property of small molecule holet...
The simpler the design, the better and more effective it is. Two novel conjugated triarylamine deriv...
Computational study on relationship between molecular structure and property of small molecule holet...
Organic-inorganic halide perovskite solar cells (PSCs) show great potential for energy applications ...
The 4,4'-dimethoxydiphenylamine-substituted 9,9'-bifluorenylidene (KR216) hole transporting material...
The exploration of alternative molecular hole-transporting materials (HTMs) specifically for high pe...