>100 publications with total citations of ~14797 and an H-index of 55 based on ISI Web of Sciences.

[Researcher ID] Thomson Reuters: http://www.researcherid.com/rid/B-2287-2010

[Google Scholar]: http://scholar.google.com/citations?user=tDuPo6MAAAAJ&hl=en

2022

152. Huang, Z. Y.; Xu, Y. A.; Hao, Y. G.; Liu, J. R.; Zhang, Z. H.; Ding, B. F.; Cai, W.; Liu, B. L.*. Advances in magneto-optical birefringence effect of 2D materials with extremely large aspect ratio. Appl. Physics Lett., 2022, 121, 220505

151. Liu, B. L.*; Liu G.*; Tang Y. B.*; Cheng H. M*. Advanced materials and energy technologies towards carbon neutrality. Sci. China Mater., 2022, 65(12), 3187-3189

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150. Liu, H. M.+; Xie, R. K.+; Luo, Y. T.; Cui, Z. C.; Yu, Q. M.; Gao, Z. Q.; Zhang, Z. Y.; Yang, F. N.; Kang, X.;Ge, S. Y.; Li, S. H.; Gao, X. F.; Chai, G. L.; Liu, L.; Liu, B. L.*,.Dual interfacial engineering of a Chevrel phase electrode material for stable hydrogen evolution at 2500 mA cm−2. Nature Communications, 2022, 13, 1-10

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149. Kimei A;...Liu, B. L.*, et al. The 2022 magneto-optics roadmap. Journal of Physics D: Applied Physics, 2022, 55, 464003

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148. Chen, W. J.; Zhang, R. J.; Sun, Y. J.; Wang, J. W.; Yun, F. Liu, B. L.* Preparation, properties, and electronic applications of 2D Bi2O2Se. Adv. Power. Mater., 2022, 2, 10080

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147. Liu, H. M.; Kang, X.; Zhao, T. F.; Zhang, Z. Y.; Ge, S. Y.; Hu, S. Q.; Luo, Y. T.; Yang, F. N.; Li, S. H.; Sun, C. H.; Yu, Q. M.*; Cheng, H. M.; Liu, B. L.* Engineering membrane electrode assembly for advanced polymer electrolyte water electrolyzer. Sci. China. Mater., 2022, doi.org/10.1007/s40843-022-2128-4

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146. Xu, H.; Ding, B. F.*; Xu, Y. A.; Huang, Z. Y.; Wei, D. H.; Chen, S. H.; Lan, T. S.; Pan, Y. K.; Cheng, H. M.; Liu, B. L.*Magnetically tunable and stable deep-ultraviolet birefringent optics using two-dimensional hexagonal boron nitride. Nature Nanotechnology, 2022, doi.org/10.1038/s41565-022-01186-1

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145. Tang, L.+; Teng, C. J.+; Xu, R. Z.; Zhang, Z. H.; Usman, K.; Zhang, R.; Luo, Y. T.; Nong, H. Y.; Liu, B. L.*; Cheng, H. M.* Controlled growth of wafer-scale transition metal dichalcogenides with a vertical composition gradient for artificial synapses with high linearity . ACS Nano, 2022, 18, 2201051.

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144. Wu, Q. K.; Luo, Y. T.; Xie, R. K.; Nong, H. Y.; Cai, Z. Y.; Tang, L.; Tan, J. Y.; Feng, S. M.; Zhao, S. L.; Yu, Q. M.; Lin, J. H.; Chai, G. L.*; Liu, B. L.*. Space‐confined one‐step growth of 2D MoO2/MoS2 vertical heterostructures for superior hydrogen evolution in alkaline electrolytes. Small, 2022, 18, 2201051.

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143. Lv, Q.; Tan, J. Y.; Wang, Z. J.; Yu, L. X.; Liu, B. L.. Lin, J. H.; Li, G.; Huang, Z. H.; Kang, F. Y.; Lv, R. T*. Femtomolar-Level Molecular Sensing of Monolayer Tungsten Diselenide Induced by Heteroatom Doping with Long-Term Stability. Adv. Funct. Mater., 2022, 32, 2200273.

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142. Guo,Z. L.; Wang, L.; Han, M. J. ;Zhao, E. D.; Zhu, L.; Guo, W. T.; Tan, J. Y.; Liu, B. L.*. Chen, X. Q.*; Lin, J. H.*. One-Step Growth of Bilayer 2H–1T' MoTe2 van der Waals Heterostructures with Interlayer-Coupled Resonant Phonon Vibration. ACS Nano, 2022, 16, 11268-11277.

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141. Teng,C. J.+; Yu, Q. M.+; Sun, Y. J.; Ding, B. F.; Chen, W. J.; Zhang, Z. H.; Liu, B. L.*. Cheng, H. M.*. Homologous gradient heterostructure‐based artificial synapses for neuromorphic computation. InfoMat, 2022, doi.org/10.1002/inf2.12351.

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140. Tan,J. Y.; Zhang, Z. T.; Zeng, S. F.; Li, S.N.; Wang, J. W.; Zheng, R. X.; Hou, F. C.; Wei, Y. P.; Sun, Y. J.; Zhang, R. J.; Zhao, S. L.; Nong, H. Y.; Chen, W. J.; Gan, L.; Zou, X. L.; Zhao, Y.*; Lin, J. H.*; Liu, B. L.*. Cheng, H. M.* Dual-metal precursors for the universal growth of non-layered 2D transition metal chalcogenides with ordered cation vacancies. Science Bulletin, 2022, 67, 1649-1658.

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139. Yu,Q. M.; Zhang, Z. Y.; Liu, H. M.;Kang, X. ; Ge, S. Y.; Li, S. H.; Gan, L.; Liu, B. L.*. Why do platinum catalysts show diverse electrocatalytic performance? Fundamental Research., 2022, doi.org/10.1016/j.fmre.2022.03.017.

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138. Yu,X. H.; Zhang, Y. C.; Yang, X.; Huang, Z. Y.; Zhang, T. F.; Yang, L. S.; Meng, W. J.; Liu, X. T.; Gong, P.; Alessandra, F; Zheng, Z.*; Liu, B. L., Zhang, P. F.; Cai, L. T.; Tang, B. Z.*. Bionsai-inspired AIE nanohybrid photosensitizer based on vermiculite nanosheets for ferroptosis-assisted oxygen self-sufficient photodynamic cancer therapy. Nano Today., 2022, 44, 1010477.

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137. Sun,L.; Yao, Y. Q.; Dai, L. X.; Jiao, M. L.; Ding, B. F.; Yu, Q. M.; Tang, J.*; Liu, B. L. Sustainable and high-performance Zn dual-ion batteries with a hydrogel-based water-in-salt electrolyte. Energy Stor. Mater., 2022, 47, 187-194.

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136. Fan,X. L..; Liu, Y. Q.; Tan, J. Y.; Yang, S.; Zhang, X. Y..; Liu, B. L.; .Cheng, H. M.; Sun, Z. H.*; Li, F.* An ultrathin and highly efficient interlayer for lithium–sulfur batteries with high sulfur loading and lean electrolyte. J. Mater. Chem. A, 2022, 10, 7653-7659.

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135. Hu,S. Q..; Ge, S. Y.; Liu, H. M.; Kang, X.; Yu, Q. M.*.; Liu, B. L.*. Low-dimensional electrocatalysts for acidic oxygen evolution : intrinsic activity , high current density operation, and long-term stability. Adv. Funct. Mater. , 2022, doi.org/10.1002/adfm.202201726.

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134. Zhang,R. J..; Lai, Y. J.; Chen, W. J.; Teng, C. J.; Sun, Y. J.; Yang, L. S.; Wang, J. Y.; Liu, B. L.*; Cheng, H. M.*. Carrier trapping in wrinkled 2D monolayer MoS2 for ultrathin memory. ACS Nano. , 2022, 16, 6309-6316.

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133. Chen,B.#.; Wang, D. S.#; Tan, J. Y.;Liu, Y. Q.; Jiao, M. L.; Liu, B. L.; Zhao, N. Q.; Zou X. L.*; Zhou, G. M.*; Cheng, H. M.*. Designing electrophilic and nucleophilic dual centers in the ReS2 plane toward efficient bifunctional catalysts for Li-CO2 battery. J. Am. Chem. Soc. , 2022, 144, 3106-3116.

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132. Nong, H. Y.; Wu, Q. K.; Tan, J. Y.;Sun, Y. J.; Zheng, R. X.; Zhang, R. J.; Zhao, S. L.; Liu, B. L.*. Layer-dependent Raman spectroscopy and electronic applications of wide-bandgap 2D semiconductor β-ZrNCl. Small, 2022, 18, 2107490.

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131. Huang, Z. Y.; Lan, T. S.; Dai, L. X.; Zhao, X. T.; Wang, Z. Y.; Zhang, Z. H.; Li, B.; Li, J. L.; Liu, J. G.; D, B. F.*; Geim, A. K.; Cheng, H. M.; Liu, B. L.* 2D functional minerals as sustainable materials for magneto-optics. Advanced Materials, 2022, 34, 2270124.

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130. Wu, M.; Yang L. S., Zhou. Y. L.; Jiang, J.; Zhang L.; Liu, B. L.; Liao W. G. BaTiO3-assisted exfoliation of boron nitride nanosheets for high-temperature energy storage dielectrics and thermal management. Chemical Engineering Journal, 2022, 427, 131860.

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