2012
DOI: 10.1016/j.solmat.2011.10.021
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Enhanced photocurrent and stability of inverted polymer/ZnO-nanorod solar cells by 3-hydroxyflavone additive

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Cited by 17 publications
(11 citation statements)
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“…It mainly inhibits specific enzymes in animals, thus stimulating the release of certain hormones and neurotransmitters and scavenging free radicals. It also possesses anti‐neoplastic, anti‐hypertensive, anti‐viral, and anti‐inflammatory properties (Chaudhuri et al, ; Pineda et al, ; Sung et al, ). Recently, 3‐hydroxyflavone was shown to improve the in vitro developmental competence of SCNT porcine embryos through the inhibition of ROS production induced by ultraviolet irradiation of oocyte and/or serum starvation of donor cells (Uhm et al, ,), although the cellular and molecular mechanisms underlying these effects are still unclear.…”
Section: Introductionmentioning
confidence: 99%
“…It mainly inhibits specific enzymes in animals, thus stimulating the release of certain hormones and neurotransmitters and scavenging free radicals. It also possesses anti‐neoplastic, anti‐hypertensive, anti‐viral, and anti‐inflammatory properties (Chaudhuri et al, ; Pineda et al, ; Sung et al, ). Recently, 3‐hydroxyflavone was shown to improve the in vitro developmental competence of SCNT porcine embryos through the inhibition of ROS production induced by ultraviolet irradiation of oocyte and/or serum starvation of donor cells (Uhm et al, ,), although the cellular and molecular mechanisms underlying these effects are still unclear.…”
Section: Introductionmentioning
confidence: 99%
“…Mangiferin bioactivities have been correlated with radical scavenging as well as inhibition of oxidative stress and complex formation with Fe [8,9]. Some natural polyphenolic compounds, such as 3-hydroxyflavone and quercetin, have been used as an additive in solar cell devices [10][11][12] due to its low cost, easy attainability, and no environmental threat. Mangiferin have become a viable alternative to expensive and rare organic materials.…”
Section: Introductionmentioning
confidence: 99%
“…Many researchers have carried out fabrications and electrical/optical characterizations of photovoltaics using natural products thus replacing organic semiconductors due to its low cost, abundant supply of raw materials, feasibility and eco-friendly nature [10][11][12]. Among above mentioned, quercetin and 3-hydroxyflavone were considered potent applicants for organic semiconductor devices fabrication [10,11]. However, there is little report on mangiferin another important class of polyphenolic compounds, as electronic materials upto now.…”
Section: Introductionmentioning
confidence: 99%
“…Flavonoid bioactivities have been related with radical scavenging. It is worth mentioning that recently some natural polyphenolic compounds, such as quercetin and 3-hydroxyflavone have been used as an additive in solar cell devices for its low cost, easy attainability, abundance in supply of raw materials and no environment threat, which have become a viable alternative to expensive and rare organic materials [10,11]. The quercetin/p-InP heterojunction solar cell exhibits a strong photovoltaic behaviour with a maximum open circuit voltage of 0.36 V, which was found by Gullu and Turut [10].…”
Section: Introductionmentioning
confidence: 99%