enhanced photoelectrochemical sensing performance of

Enhanced Photoelectrochemical Performance of

Enhanced Photoelectrochemical Performance of Hydrogen Treated Hematite Thin Films Decorated with a Thin Akaganite (β‐FeOOH This work offer a simple but advance strategy of improving the performance of visible light active photocatalysts by hydrogen 2

Enhanced photoelectrochemical biosensing performance for Au

Enhanced photoelectrochemical biosensing performance for Au nanoparticle–polyaniline–TiO2 heterojunction composites† Bingdong Yan,a Xiaoru Zhao,a Delun Chen,a Yang Cao,a Chuanzhu Lv,c Jinchun Tu, a Xiaohong Wang *a and Qiang Wu *b A new

Enhanced photoelectrochemical sensing based on novel

The design of a low-cost and highly efficient photoactive heterojunction material for sensing is still a challenging issue. On the basis of the formation of sheet-like Bi2O3 via coating Bi2S3, a novel Bi2O3Bi2S3 heterostructure is controllably synthesized via a facile water bath approach. The prepared Bi2O3Bi2S3 nanosheets show a superior photoelectrochemical (PEC) performance for the

Physical synthesis methodology and enhanced gas

Physical synthesis methodology and enhanced gas sensing and photoelectrochemical performance of 1D serrated zinc oxide–zinc ferrite nanocomposites By Yuan-Chang Liang, Shang-Luen Liu and Hao-Yuan Hsia Get PDF (2 Cite Publisher: Springer Nature

In Situ

In Situ-Generated Nano-Gold Plasmon-Enhanced Photoelectrochemical Aptasensing Based on Carboxylated Perylene-Functionalized Graphene Jing Li,†,‡ Wenwen Tu,† Hongbo Li,*,‡ Min Han,† Yaqian Lan,† Zhihui Dai,*,† and Jianchun Bao† †Jiangsu Key Laboratory of Biofunctional Materials, College of Chemistry and Materials Science, Nanjing Normal University, Nanjing

Enhanced photoelectrochemical and optical

The photoelectrochemical (PEC) sensing characteristics of Cr-doped ZnO layers were investigated. Amongst all photo-anodes with different Cr dopant concentration, the 2 at.% Cr incorporated ZnO films exhibited fast response and higher photoconduction sensitivity.

Enhanced photoelectrochemical and sensing performance of

Enhanced photoelectrochemical and sensing performance of novel TiO2 arrays to H2O2 Sensors and Actuators B: Chemical ( IF 7.100) Pub Date : 2015-01-27, DOI: 10.1016/j.snb.2015.01.060 Lianqing Yu, Yaping Zhang, Qianqian Zhi, Qingqing Wang, Forrest S. Gittleson, Jinyang Li, Andr D. Taylor

Enhanced photoelectrochemical sensing based on novel

The design of a low-cost and highly efficient photoactive heterojunction material for sensing is still a challenging issue. On the basis of the formation of sheet-like Bi2O3 via coating Bi2S3, a novel Bi2O3Bi2S3 heterostructure is controllably synthesized via a facile water bath approach. The prepared Bi2O3Bi2S3 nanosheets show a superior photoelectrochemical (PEC) performance for the

Enhanced photoelectrochemical sensing based on novel

Thus, the integration of the novel heterostructure and the photoelectrochemical technique demonstrates a rapid photocurrent response, showing a great effect on the performance of the sensing system and a new PEC method for highly selective and sensitive

Enhanced photoelectrochemical and sensing performance

2015/5/1Enhanced photoelectrochemical and sensing performance of novel TiO 2 arrays to H 2 O 2 detection Author links open overlay panel Lianqing Yu a Yaping Zhang a Qianqian Zhi a Qingqing Wang a Forrest S. Gittleson b Jinyang Li b Andr D. Taylor b

Simply synthesized nitrogen

3.4 Photoelectrochemical detection of DA on NGQDs-modified electrode Amperometric response was often applied in the quantitative detection of trace component due to its high intuition and sensitivity. As shown in Figure 6A, the photoelectrochemical performance of DA with various concentrations in BR buffer solution (pH 4.0) was carried out on NGQDs/GCE through i-t curve under UV light irradiation.

Enhanced photoelectrochemical sensing based on novel

Enhanced photoelectrochemical sensing based on novel synthesized Bi2S3Bi2O3 nanosheet heterostructure for ultrasensitive determination of l-cysteine Analytical and Bioanalytical Feng Xia Wang,Cui Ye,Shi Mo,Hong Qun Luo,Jing Rong Chen,Yan Shi,Nian Bing Li

BiOBr nanosheets with oxygen vacancies and lattice strain

Defect and lattice strain are key to photoelectrochemical (PEC) sensing performance of semiconductors. In this work, BiOBr nanosheets were annealed at different temperatures to form oxygen vacancies (OVs) and relax lattice strain simultaneously. A BiOBr sample annealed at 200 C exhibited the best photoelectric response because of a synergistic effect between the OV concentration and lattice

Decreased Surface Photovoltage of ZnO Photoanode Films

The minimum SPV annealed at 450 C indicated low surface defect density, eventually resulting in an enhanced photoelectrochemical performance. The applied bias photo-to-current efficiency of ZnO films annealed at 450C reached 0.237%, about 7.4 times that of unannealed ZnO photoanode.

Enhanced photoelectrochemical sensing performance of

2020/1/15Enhanced photoelectrochemical sensing performance of graphitic carbon nitride by nitrogen vacancies engineering Author links open overlay panel Pengcheng Yan a Jintao Dong a Zhao Mo a Li Xu a Junchao Qian b Jiexiang Xia a Jianming Zhang a Henan Li a

Physical synthesis methodology and enhanced gas

Physical synthesis methodology and enhanced gas sensing and photoelectrochemical performance of 1D serrated zinc oxide–zinc ferrite nanocomposites By Yuan-Chang Liang, Shang-Luen Liu and Hao-Yuan Hsia Get PDF (2 Cite Publisher: Springer Nature

Enhanced Photoelectrochemical Performance of

Enhanced Photoelectrochemical Performance of WO 3 ‐Based Composite Photoanode Coupled with Carbon Quantum Dots and NiFe Layered Double Hydroxide Xiaohu Cao State Key Laboratory of Applied Organic Chemistry, Key Laboratory of Nonferrous Metals Chemistry and Resources Utilization of Gansu Province, College of Chemistry and Chemical Engineering, Lanzhou University, Lanzhou, Gansu,

Enhanced Photoelectrochemical Performance of Cuprous Oxide

Enhanced Photoelectrochemical Performance of Cuprous Oxide/ Graphene Nanohybrids Egon Kecsenovity,†,‡ Balazs Endr di,†,‡ Peter S. T th, Yuqin Zou, Robert A. W. Dryfe, Krishnan Rajeshwar,∥ and Csaba Janak *,†,‡ †MTA-SZTE "Lendlet " Photoelectrochemistry Research Group, Rerrich Square 1, Szeged H-6720, Hungary

Defect repair of tin selenide photocathode via in situ

Selenide with a narrow band gap can be used as a promising photoelectrode in photoelectrochemical (PEC) water splitting. However, the applications of selenides in high-performance PEC devices are greatly hindered via inducing oxygen into the lattice and generating high-density defects, which result in their environmental instability and high recombination of charge carriers.

Enhanced Photoelectrochemical Performance of the

Bismuth vanadate is a promising semiconductor for photoelectrochemical (PEC) water oxidation under visible light. Yet its PEC performance is limited by its poor electron‐transfer mobility. In this study we modified the BiVO 4 surface with Zn to address this problem. surface with Zn to address this problem.

Enhanced photoelectrochemical and sensing

2015/5/1Enhanced photoelectrochemical and sensing performance of novel TiO 2 arrays to H 2 O 2 detection Author links open overlay panel Lianqing Yu a Yaping Zhang a Qianqian Zhi a Qingqing Wang a Forrest S. Gittleson b Jinyang Li b Andr D. Taylor b

ZnO and carbon nanocomposites for enhanced

The sensing characteristics of ZnO:C nanocomposite films were also investigated, and a major improvement in the photoelectrochemical (PEC) efficiency was obtained when the C content was 39 wt.%. This is a preview of subscription content, log in to check access.

Enhanced photoelectrochemical and optical

The photoelectrochemical (PEC) sensing characteristics of Cr-doped ZnO layers were investigated. Amongst all photo-anodes with Massoudi, I. et al. Enhanced photoelectrochemical and optical performance of ZnO films tuned by Cr doping. 123, Received: :

Enhanced photoelectrochemical performance of Si

Si photoelectrodes with two different morphology, including the porous Si (PSi) and Si nanowires (SiNWs), have been prepared via a facile wet-chemical etching method. The SiNW displays acceptable stability and photocurrent density (J) of 1.1 mA∙cmSUP-2/SUP at 1.23 V versus (vs.) reversible hydrogen electrode (RHE) under solar irradiation, which are superior to the PSi and attributed to

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