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Dive into the research topics where Yuena Meng is active.

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Featured researches published by Yuena Meng.


Journal of Materials Chemistry | 2015

Solution-deposited pure selenide CIGSe solar cells from elemental Cu, In, Ga, and Se

Dandan Zhao; Qingwen Tian; Zheng-Ji Zhou; Gang Wang; Yuena Meng; Dong-Xing Kou; Wen-Hui Zhou; Daocheng Pan; Si-Xin Wu

A novel, robust and low-toxicity solution route to deposit CIGSe thin films for solar cell applications is proposed. The solvent mixture of 1,2-ethanedithiol and 1,2-ethylenediamine is employed for the first time to simultaneously dissolve elemental Cu, In, Ga, and Se, forming the CIGSe precursor solution. With this solution-processed CIGSe thin film solar cell, a power conversion efficiency of 9.5% has been achieved.


Energy and Environmental Science | 2017

Engineering of interface band bending and defects elimination via a Ag-graded active layer for efficient (Cu,Ag)2ZnSn(S,Se)4 solar cells

Yafang Qi; Dong-Xing Kou; Wen-Hui Zhou; Zheng-Ji Zhou; Qingwen Tian; Yuena Meng; Xin-Sheng Liu; Zuliang Du; Si-Xin Wu

Although the substitution of Cu by Ag to suppress CuZn defects offers several advantages in overcoming the large open-circuit voltage (Voc) deficit for Cu2ZnSn(S,Se)4 (CZTSSe) solar cells, an excellent performance has not been achieved to date primarily due to the Fermi level pinning at the CdS/absorber interface and large recombination at the absorber/Mo interface. Herein, we developed a composition grading strategy to achieve a V-shaped Ag-graded structure with a higher Ag content on both the back and front surfaces of the (Cu,Ag)2ZnSn(S,Se)4 (CAZTSSe) layer. The key advantages of this Ag-graded structure are as follows: the higher content towards the CdS/absorber interface can create weak n-type donor defects and retard Fermi level pinning, whereas the lower content at the interlayer maintains the conductivity and light absorption; moreover, the other higher content towards Mo back contact can effectively suppress the recombination and improve the utilization of long-wave incident light. By appropriately adjusting the Ag gradient, we demonstrated a significant increase in Voc, and an unexpected conversion efficiency of 11.2% was achieved. This is the highest efficiency achieved to date for Ag-substituted CZTSSe solar cells, and the result supports a new aspect that synthesis of a composition-graded CAZTSSe absorber has great potential for future research.


Talanta | 2018

ZnO nanotubes supported molecularly imprinted polymers arrays as sensing materials for electrochemical detection of dopamine

Hai-Hui Wang; Xuan-Jie Chen; Wei-Tian Li; Wen-Hui Zhou; Xiu-Chun Guo; Wen-Yi Kang; Dong-Xing Kou; Zheng-Ji Zhou; Yuena Meng; Qingwen Tian; Si-Xin Wu

In this study, ZnO nanotubes (ZNTs) were prepared onto fluorine-doped tin oxide (FTO) glass and used as supports for MIPs arrays fabrication. Due to the imprinted cavities are always located at both inner and outer surface of ZNTs, these ZNTs supported MIPs arrays have good accessibility towards template and can be used as sensing materials for chemical sensors with high sensitivity, excellent selectivity and fast response. Using K3[Fe(CN)6] as electron probe, the fabricated electrochemical sensor shows two linear dynamic ranges (0.02-5μM and 10-800μM) towards dopamine. This proposed electrochemical sensor has been applied for dopamine determination with satisfied recoveries and precision. More complex human urine samples also confirmed that the proposed method has good accuracy for dopamine determination in real biological samples. These results suggest potential applicability of the proposed method and sensor in important molecule analysis.


ACS Applied Materials & Interfaces | 2017

Elemental Precursor Solution Processed (Cu1–xAgx)2ZnSn(S,Se)4 Photovoltaic Devices with over 10% Efficiency

Yafang Qi; Qingwen Tian; Yuena Meng; Dong-Xing Kou; Zheng-Ji Zhou; Wen-Hui Zhou; Si-Xin Wu

The partial substitution of Cu+ with Ag+ into the host lattice of Cu2ZnSn(S,Se)4 thin films can reduce the open-circuit voltage deficit (Voc,deficit) of Cu2ZnSn(S,Se)4 (CZTSSe) solar cells. In this paper, elemental Cu, Ag, Zn, Sn, S, and Se powders were dissolved in solvent mixture of 1,2-ethanedithiol (edtH2) and 1,2-ethylenediamine (en) and used for the formation of (Cu1-xAgx)2ZnSn(S,Se)4 (CAZTSSe) thin films with different Ag/(Ag + Cu) ratios. The key feature of this approach is that the impurity atoms can be absolutely excluded. Further results indicate that the variations of grain size, band gap, and depletion width of the CAZTSSe layer are generally determined by Ag substitution content. Benefiting from the Voc enhancement (∼50 mV), the power conversion efficiency is successfully increased from 7.39% (x = 0) to 10.36% (x = 3%), which is the highest efficiency of Ag substituted devices so far.


Journal of Materials Chemistry | 2016

Eliminating fine-grained layers in Cu(In,Ga)(S,Se)2 thin films for solution-processed high efficiency solar cells

Dandan Zhao; Qingmiao Fan; Qingwen Tian; Zheng-Ji Zhou; Yuena Meng; Dong-Xing Kou; Wen-Hui Zhou; Si-Xin Wu

A non-hydrazine solution process has been considered as a promising way for the deposition of Cu(In,Ga)(S,Se)2(CIGSSe) thin films. However, from our previous work, the presence of a fine-grained layer in the absorber layer was shown to be an obstacle to further improve the solar cell efficiency. Here, an improved fabrication route is proposed to solve this problem. A mixture of Cu2S, In2Se3, Ga and Se was simultaneously dissolved in 1,2-ethanedithiol and 1,2-ethylenediamine, forming a homogeneous precursor solution to deposit CIGSSe nanocrystal films. By optimizing the selenization method by using rapid thermal processing (RTP) combined with an improved graphite box, large grains throughout the whole absorber layer were successfully obtained. Based on such a high-quality CIGSSe absorber layer, an encouraging power conversion efficiency of 11.8% has been achieved with a Jsc of 28.25 mA cm−2, a Voc of 596 mV and a FF of 69.79% and without an antireflection coating.


Catalysis Science & Technology | 2017

Cu2ZnSnS4–CdS heterostructured nanocrystals for enhanced photocatalytic hydrogen production

Meng Yuan; Ji-Lei Wang; Wen-Hui Zhou; Zhixian Chang; Dong-Xing Kou; Zheng-Ji Zhou; Qingwen Tian; Yuena Meng; Yan-Mei Zhou; Si-Xin Wu

The CZTS–CdS heterostructured nanocrystals were designed and synthesized via a wet chemistry approach for the first time. The p–n heterojunction between CZTS core and CdS layer facilitates a effective charge separation and a rapid charge transfer. As expected, these CZTS–CdS-heterostructured nanocrystals show enhanced photocatalytic activities for hydrogen evolution when compared with CZTS and CdS.


Chemistry of Materials | 2016

Improving the Performance of Solution-Processed Cu2ZnSn(S,Se)4 Photovoltaic Materials by Cd2+ Substitution

Jie Fu; Qingwen Tian; Zheng-Ji Zhou; Dong-Xing Kou; Yuena Meng; Wen-Hui Zhou; Si-Xin Wu


Journal of Power Sources | 2016

Quaternary Cu2ZnSnS4 quantum dot-sensitized solar cells: Synthesis, passivation and ligand exchange

Bing Bai; Dong-Xing Kou; Wen-Hui Zhou; Zheng-Ji Zhou; Qingwen Tian; Yuena Meng; Si-Xin Wu


International Journal of Hydrogen Energy | 2015

High temperature recrystallization of kersterite Cu2ZnSnS4 towards enhanced photocatalytic H2 evolution

Zhixian Chang; Ruifeng Chong; Yuena Meng; Wen-Hui Zhou; Dong-Xing Kou; Zheng-Ji Zhou; Si-Xin Wu


Solar Energy Materials and Solar Cells | 2016

High efficiency CZTSSe thin film solar cells from pure element solution: A study of additional Sn complement

Jing Guo; Wen-Hui Zhou; Yingli Pei; Qingwen Tian; Dong-Xing Kou; Zheng-Ji Zhou; Yuena Meng; Si-Xin Wu

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