AbstractTo pursue high power conversion efficiency (PCE) of polymer solar cells (PSCs), many new semiconducting polymers with low band gaps have been developed in the past several years. In this perspective paper, we focused on super low band gap photovoltaic polymers with photocurrent response extending over 1000nm. This kind of micrometer-response polymers (μmR-polymer) could increase the short circuit current (JSC) due to better match of absorption spectra of the polymers with the solar irradiation and show tremendous potential for application in tandem solar cells and transparent solar cells. The necessary conditions for the design of this kind of μmR-polymers are discussed. Furthermore, the remaining problems and challenges, and the ke...
One of the key challenges of organic solar cells is their relatively low power conversion efficiency...
We report the synthesis, characterization, and solar cell properties of new donor–acceptor-type low ...
Two side-chain substituted poly(di-2-thienylthienopyrazine)s (PBEHTT and PTBEHT) are used as electro...
AbstractTo pursue high power conversion efficiency (PCE) of polymer solar cells (PSCs), many new sem...
Today, fossil fuels like coal, oil, and natural gas are used for more than 60% of the world\u27s ele...
A conjugated polymer (PBTTQ) that consists of alternating electron-rich bithiophene and electron-def...
During the last decade the field of polymer photovoltaics has seen a tremendous improvement in both ...
Solar cells based on organic molecules or conjugated polymers attract great attention due to their u...
During the last decade the field of polymer photovoltaics has seen a tremendous improvement in both ...
We report on a new series of small band gap conjugated polymers utilizing donor-acceptor-donor subst...
Lowering the optical bandgap of conjugated polymers while maintaining a high efficiency for photoind...
We report the synthesis, characterization, and solar cell 15 properties of new donor-acceptor-type l...
Currently, BHJ solar cells fabricated by simple blending of regioregular poly(3-hexylthiophene) (P3H...
One of the key challenges of organic solar cells is their relatively low power conversion efficiency...
We report the synthesis, characterization, and solar cell properties of new donor–acceptor-type low ...
Two side-chain substituted poly(di-2-thienylthienopyrazine)s (PBEHTT and PTBEHT) are used as electro...
AbstractTo pursue high power conversion efficiency (PCE) of polymer solar cells (PSCs), many new sem...
Today, fossil fuels like coal, oil, and natural gas are used for more than 60% of the world\u27s ele...
A conjugated polymer (PBTTQ) that consists of alternating electron-rich bithiophene and electron-def...
During the last decade the field of polymer photovoltaics has seen a tremendous improvement in both ...
Solar cells based on organic molecules or conjugated polymers attract great attention due to their u...
During the last decade the field of polymer photovoltaics has seen a tremendous improvement in both ...
We report on a new series of small band gap conjugated polymers utilizing donor-acceptor-donor subst...
Lowering the optical bandgap of conjugated polymers while maintaining a high efficiency for photoind...
We report the synthesis, characterization, and solar cell 15 properties of new donor-acceptor-type l...
Currently, BHJ solar cells fabricated by simple blending of regioregular poly(3-hexylthiophene) (P3H...
One of the key challenges of organic solar cells is their relatively low power conversion efficiency...
We report the synthesis, characterization, and solar cell properties of new donor–acceptor-type low ...
Two side-chain substituted poly(di-2-thienylthienopyrazine)s (PBEHTT and PTBEHT) are used as electro...