Novel green bismuth oxybromide (BiOBr-G) nanoflowers were successfully synthesized via facile hydrolysis route using an Azadirachta indica (Neem plant) leaf extract and concurrently, without the leaf extract (BiOBr-C). The Azadirachta indica leaf extract was employed as a sensitizer and stabilizer for BiOBr-G, which significantly expanded the optical window and boosted the formation of photogenerated charge carriers and transfer over the BiOBr-G surface. The photocatalytic performance of both samples was investigated for the degradation of methyl orange (MO) and phenol (Ph) under the irradiation of visible light. The leaf extract mediated BiOBr-G photocatalyst displayed significantly higher photocatalytic activity when compared to BiOBr-C f...
The photocatalysis technique has been proven to be a promising method to solve environmental polluti...
Flower like bismuth oxy chloride (BiOCl) was successfully synthesized by a simple hydrolytic method ...
BiOCl, BiOBr, and BiOI have been synthesized by wet chemical route using bismuth nitrate (Bi(NO3)3.5...
Novel green bismuth oxybromide (BiOBr-G) nanoflowers were successfully synthesized via facile hydrol...
In the recent past, there has been a large-scale utilization of plant extracts for the synthesis of ...
The inducement of plant leaf extracts for the synthesis of various nanostructures has intrigued rese...
© 2020 Elsevier B.V. Photocatalysts based on copper-doped bismuth oxybromide (Cu-doped BiOBr) were s...
Bismuth oxybromide (BiOBr) has emerged as a potential visible-light-driven photocatalyst with relati...
In the present work, a non-toxic and economical route was employed for the synthesis of BiOF using A...
Bismuth oxybromide (BiOBr) is a novel visible light photocatalyst and when combined with multiwalled...
Defective BiOBr nanosheets with ultrathin thickness and surface-confined pits have been synthesized ...
AbstractA series of novel visible light driven all-solid-state Z-scheme BiOBr0.3I0.7/Ag/AgI photocat...
Semiconductor photocatalysis using visible-light-driven photocatalysts is gaining more attention, du...
BiOBr nanoplates, marked as α-BiOBr and β-BiOBr, were synthesized via hydrothermal method using cety...
Herein, we report a facile and effective method to enhance the photocatalytic activity of bismuth ox...
The photocatalysis technique has been proven to be a promising method to solve environmental polluti...
Flower like bismuth oxy chloride (BiOCl) was successfully synthesized by a simple hydrolytic method ...
BiOCl, BiOBr, and BiOI have been synthesized by wet chemical route using bismuth nitrate (Bi(NO3)3.5...
Novel green bismuth oxybromide (BiOBr-G) nanoflowers were successfully synthesized via facile hydrol...
In the recent past, there has been a large-scale utilization of plant extracts for the synthesis of ...
The inducement of plant leaf extracts for the synthesis of various nanostructures has intrigued rese...
© 2020 Elsevier B.V. Photocatalysts based on copper-doped bismuth oxybromide (Cu-doped BiOBr) were s...
Bismuth oxybromide (BiOBr) has emerged as a potential visible-light-driven photocatalyst with relati...
In the present work, a non-toxic and economical route was employed for the synthesis of BiOF using A...
Bismuth oxybromide (BiOBr) is a novel visible light photocatalyst and when combined with multiwalled...
Defective BiOBr nanosheets with ultrathin thickness and surface-confined pits have been synthesized ...
AbstractA series of novel visible light driven all-solid-state Z-scheme BiOBr0.3I0.7/Ag/AgI photocat...
Semiconductor photocatalysis using visible-light-driven photocatalysts is gaining more attention, du...
BiOBr nanoplates, marked as α-BiOBr and β-BiOBr, were synthesized via hydrothermal method using cety...
Herein, we report a facile and effective method to enhance the photocatalytic activity of bismuth ox...
The photocatalysis technique has been proven to be a promising method to solve environmental polluti...
Flower like bismuth oxy chloride (BiOCl) was successfully synthesized by a simple hydrolytic method ...
BiOCl, BiOBr, and BiOI have been synthesized by wet chemical route using bismuth nitrate (Bi(NO3)3.5...