High efficiency n-Si/p-Cu2O core-shell nanowires photodiode prepared by atomic layer deposition of Cu2O on well-ordered Si nanowires array

2016 ◽  
Vol 12 (3) ◽  
pp. 404-410 ◽  
Author(s):  
Hangil Kim ◽  
Soo-Hyun Kim ◽  
Kyung Yong Ko ◽  
Hyungjun Kim ◽  
Jaehoon Kim ◽  
...  
2019 ◽  
Author(s):  
Jiajia Tao ◽  
Hong-Ping Ma ◽  
Kaiping Yuan ◽  
Yang Gu ◽  
Jianwei Lian ◽  
...  

<div>As a promising oxygen evolution reaction semiconductor, TiO2 has been extensively investigated for solar photoelectrochemical water splitting. Here, a highly efficient and stable strategy for rationally preparing GaON cocatalysts on TiO2 by atomic layer deposition is demonstrated, which we show significantly enhances the</div><div>photoelectrochemical performance compared to TiO2-based photoanodes. For TiO2@20 nm-GaON core-shell nanowires a photocurrent density up to 1.10 mA cm-2 (1.23 V vs RHE) under AM 1.5 G irradiation (100 mW cm-2) has been achieved, which is 14 times higher than that of TiO2 NWs. Furthermore, the oxygen vacancy formation on GaON as well as the band gap matching with TiO2 not only provides more active sites for water oxidation but also enhances light absorption to promote interfacial charge separation and migration. Density functional theory studies of model systems of GaON-modified TiO2 confirm the band gap reduction, high reducibility and ability to activate water. The highly efficient and stable systems of TiO2@GaON core-shell nanowires provide a deeper understanding and universal strategy for enhancing photoelectrochemical performance of photoanodes now available. </div>


Nanoscale ◽  
2020 ◽  
Vol 12 (13) ◽  
pp. 7159-7173 ◽  
Author(s):  
Jia-Jia Tao ◽  
Hong-Ping Ma ◽  
Kai-Ping Yuan ◽  
Yang Gu ◽  
Jian-Wei Lian ◽  
...  

The excellent PEC activity of TiO2 nanowires with GaOxNy results from the enhanced light absorption, favourable band alignment, and high reducibility.


ChemPhysChem ◽  
2010 ◽  
pp. n/a-n/a ◽  
Author(s):  
Vladimir A. Sivakov ◽  
Katja Höflich ◽  
Michael Becker ◽  
Andreas Berger ◽  
Thomas Stelzner ◽  
...  

2019 ◽  
Vol 25 (4) ◽  
pp. 157-161
Author(s):  
Han-Bo-Ram Lee ◽  
Kwang Heo ◽  
Seunghun Hong ◽  
Hyungjun Kim

2013 ◽  
Vol 69 (10) ◽  
pp. 744-747 ◽  
Author(s):  
Francesca Rossi ◽  
Filippo Fabbri ◽  
Massimo Tallarida ◽  
Dieter Schmeisser ◽  
Mircea Modreanu ◽  
...  

2019 ◽  
Author(s):  
Jiajia Tao ◽  
Hong-Ping Ma ◽  
Kaiping Yuan ◽  
Yang Gu ◽  
Jianwei Lian ◽  
...  

<div>As a promising oxygen evolution reaction semiconductor, TiO2 has been extensively investigated for solar photoelectrochemical water splitting. Here, a highly efficient and stable strategy for rationally preparing GaON cocatalysts on TiO2 by atomic layer deposition is demonstrated, which we show significantly enhances the</div><div>photoelectrochemical performance compared to TiO2-based photoanodes. For TiO2@20 nm-GaON core-shell nanowires a photocurrent density up to 1.10 mA cm-2 (1.23 V vs RHE) under AM 1.5 G irradiation (100 mW cm-2) has been achieved, which is 14 times higher than that of TiO2 NWs. Furthermore, the oxygen vacancy formation on GaON as well as the band gap matching with TiO2 not only provides more active sites for water oxidation but also enhances light absorption to promote interfacial charge separation and migration. Density functional theory studies of model systems of GaON-modified TiO2 confirm the band gap reduction, high reducibility and ability to activate water. The highly efficient and stable systems of TiO2@GaON core-shell nanowires provide a deeper understanding and universal strategy for enhancing photoelectrochemical performance of photoanodes now available. </div>


2017 ◽  
Vol 164 (14) ◽  
pp. A3493-A3498 ◽  
Author(s):  
Yan-Qiang Cao ◽  
Xu Qian ◽  
Wei Zhang ◽  
Shan-Shan Wang ◽  
Min Li ◽  
...  

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