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Dive into the research topics where Lihua Bai is active.

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Featured researches published by Lihua Bai.


Nanotechnology | 2017

Performance optimization of dye-sensitized solar cells by multilayer gradient scattering architecture of TiO2 microspheres

M. Li; Meiya Li; Xiaolian Liu; Lihua Bai; Mengdai Luoshan; Wen Lei; Zhen Wang; Yongdan Zhu; Xingzhong Zhao

TiO2 microspheres (TMSs) with unique hierarchical structure and unusual high specific surface area are synthesized and incorporated into a photoanode in various TMS multilayer gradient architectures to form novel photoanodes and dye-sensitized solar cells (DSSCs). Significant influences of these architectures on the photoelectric properties of DSSCs are obtained. The DSSC with the optimal TMS gradient-ascent architecture of M036 has the largest amounts of dye absorption, strongest light absorption, longest electron lifetime and lowest electron recombination, and thus exhibits the maximum short circuit current density (Jsc) of 16.49 mA cm-2 and photoelectric conversion efficiency (η) of 7.01%, notably higher than those of conventional DSSCs by 21% and 22%, respectively. These notable improvements in the properties of DSSCs can be attributed to the TMS gradient-ascent architecture of M036 which can most effectively increase dye absorption and localize incident light within the photoanode by the light scattering of TMSs, and thus utilize the incident light thoroughly. This study provides an optimized and universal configuration for the scattering microspheres incorporated in the hybrid photoanode, which can significantly improve the performance of DSSCs.


Nanotechnology | 2016

Plasmonic-resonance-based ternary composite complementary enhancement of the performance of dye-sensitized solar cells.

Lihua Bai; Meiya Li; Xiaolian Liu; Mengdai Luoshan; Feng Zhang; Kaimo Guo; Yongdan Zhu; Beilei Sun; Xingzhong Zhao

Graphene (G), TiO2 fusiform nanorods (TiO2NRs) adsorbed with Au nanoparticles (AuNPs) are prepared and blended as multifunctional materials into TiO2 nanocrystalline film to form a novel ternary (G-TiO2NRs-Au) composite photoanode in dye-sensitized solar cells (DSSCs). The effects of G-TiO2NRs-Au on the properties of the photoanode and DSSC are investigated. Results show that, by blending G-TiO2NRs-Au, the light absorption and scattering of the photoanode are obviously improved, and the charge transfer resistance R2 and electron recombination are decreased, resulting in a significant enhancement in the short-circuit current density (J sc) and the photoelectric conversion efficiency (PCE) of the DSSCs. The maximum J sc of 17.66 mA cm(-2) and PCE of 8.56% are obtained in the optimal G-TiO2NRs-Au-based DSSC, about 33.6% and 35.0% higher than that obtained in the conventional TiO2-based DSSC. This significant improvement in the performance of the DSSC can be attributed to the ternary composite complementary effects of multi-functions from the surface plasmon resonance of AuNPs, light scattering of TiO2NRs, and the improved dye loading and fast electron transmission channel from graphene. This study provides an effective way of ternary composite complementary enhancement of the J sc and PCE of the DSSCs.


Journal of Power Sources | 2014

Improved properties of dye-sensitized solar cells by multifunctional scattering layer of yolk-shell-like TiO2 microspheres

Kaimo Guo; Meiya Li; Xiaoli Fang; Lihua Bai; Mengdai Luoshan; Fuping Zhang; Xingzhong Zhao


Electrochimica Acta | 2014

Graphene quantum dots optimization of dye-sensitized solar cells

Xiaoli Fang; Meiya Li; Kaimo Guo; Jun Li; Muchen Pan; Lihua Bai; Mengdai Luoshan; Xingzhong Zhao


Journal of Power Sources | 2016

Surface plasmon resonance enhanced multi-shell-modified upconversion NaYF4:Yb3+, Er3+@SiO2@Au@TiO2 crystallites for dye-sensitized solar cells

Mengdai Luoshan; Lihua Bai; Chenghao Bu; Xiaolian Liu; Yongdan Zhu; Kaimo Guo; Renhui Jiang; Meiya Li; Xingzhong Zhao


Journal of Power Sources | 2014

Plasmonic enhancement of the performance of dye-sensitized solar cell by core–shell AuNRs@SiO2 in composite photoanode

Lihua Bai; Meiya Li; Kaimo Guo; Mengdai Luoshan; Hadja Fatima Mehnane; Ling Pei; Muchen Pan; Lei Liao; Xingzhong Zhao


Journal of Power Sources | 2014

Performance enhancement in dye-sensitized solar cells by utilization of a bifunctional layer consisting of core–shell β-NaYF4:Er3+/Yb3+@SiO2 submicron hexagonal prisms

Kaimo Guo; Meiya Li; Xiaoli Fang; Mengdai Luoshan; Lihua Bai; Xingzhong Zhao


Electrochimica Acta | 2016

Plasmonic Enhancement of the Performance of Dye-sensitized Solar Cells by Incorporating Hierarchical TiO2 Spheres Decorated with Au Nanoparticles

Lihua Bai; Xiaolian Liu; Meiya Li; Kaimo Guo; Mengdai Luoshan; Yongdan Zhu; Renhui Jiang; Lei Liao; Xingzhong Zhao


Journal of Power Sources | 2015

Performance optimization in dye-sensitized solar cells with β-NaYF4:Er3+/Yb3+ and graphene multi-functional layer hybrid composite photoanodes

Mengdai Luoshan; Meiya Li; Xiaolian Liu; Kaimo Guo; Lihua Bai; Yongdan Zhu; Beilei Sun; Xingzhong Zhao


Journal of Alloys and Compounds | 2017

Plasmonic enhancement of the performance of dye-sensitized solar cells by incorporating TiO2 nanotubes decorated with Au nanoparticles

Zhen Wang; Yiwen Tang; Meiya Li; Yongdan Zhu; M. Li; Lihua Bai; Mengdai Luoshan; Wen Lei; Xingzhong Zhao

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Yiwen Tang

Central China Normal University

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