Natural photosynthetic systems contain several dyes such as carotenoids or chlorophylls which are adequately arranged to produce efficient photoinduced charge separation and electron transfer. Several research groups have attempted integrating these natural dyes and photosynthetic systems into functional organic solar cells (OSCs) producing power conversion efficiencies (PCEs) up to 0.99%. The studies presented in this short review emphasize that functionalization of natural dyes can considerably improve their PCEs. For instance, chlorophyll derivatives can yield PCEs up to 2.1%, and copolymers produced with isoindigo as an electron-deficient unit generate high PCEs up to 8%, respectively, when combined with fullerene C70 based electron acc...
The production costs and energy conversion efficiency of dye-sensitized solar cells (DSSC) is strong...
The main goal of this thesis is to investigate and develop the physics of dye-based photovoltaic phy...
This dissertation investigates the chemical ingenuity into the development of various photoactive su...
Development of green and low-cost interfacial materials is an important issue to promote the commerc...
Abstract Dye-sensitized solar cells (DSSCs) which are also called Graetzel cells are a novel type of...
As the population increases exponentially so does the need for a greater demand of energy. Even thou...
Solar-to-chemical energy conversion, so-called artificial photosynthesis, is one of the key technolo...
In this work, we demonstrate utilization of natural carotenoids (Cars), namely, fucoxanthin, β-carot...
Accomplishing sustainability in optoelectronics, in general, and photovoltaics (PV), in particular, ...
peer reviewedIn sustainable development, one of the key factors is the usage of non-toxic and biodeg...
This research article published by Research Journal of Applied Sciences, Engineering and Technology,...
Attempts have been made to develop dye-sensitized solar cells based on the principles and materials ...
A series of natural photoactive dyes, named as D1–D6 were successfully extracted from six kind...
This dissertation focuses on the design, synthesis, and characterization of a variety of organic dye...
The desired attributes of organic photovoltaics (OPV) as a low cost and sustainable energy harvestin...
The production costs and energy conversion efficiency of dye-sensitized solar cells (DSSC) is strong...
The main goal of this thesis is to investigate and develop the physics of dye-based photovoltaic phy...
This dissertation investigates the chemical ingenuity into the development of various photoactive su...
Development of green and low-cost interfacial materials is an important issue to promote the commerc...
Abstract Dye-sensitized solar cells (DSSCs) which are also called Graetzel cells are a novel type of...
As the population increases exponentially so does the need for a greater demand of energy. Even thou...
Solar-to-chemical energy conversion, so-called artificial photosynthesis, is one of the key technolo...
In this work, we demonstrate utilization of natural carotenoids (Cars), namely, fucoxanthin, β-carot...
Accomplishing sustainability in optoelectronics, in general, and photovoltaics (PV), in particular, ...
peer reviewedIn sustainable development, one of the key factors is the usage of non-toxic and biodeg...
This research article published by Research Journal of Applied Sciences, Engineering and Technology,...
Attempts have been made to develop dye-sensitized solar cells based on the principles and materials ...
A series of natural photoactive dyes, named as D1–D6 were successfully extracted from six kind...
This dissertation focuses on the design, synthesis, and characterization of a variety of organic dye...
The desired attributes of organic photovoltaics (OPV) as a low cost and sustainable energy harvestin...
The production costs and energy conversion efficiency of dye-sensitized solar cells (DSSC) is strong...
The main goal of this thesis is to investigate and develop the physics of dye-based photovoltaic phy...
This dissertation investigates the chemical ingenuity into the development of various photoactive su...