科研成果
科研成果
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  • Yi Zhang, Hongyang Zhao and Yaping Du,Symmetric full cells assembled by using self-supporting Na3V2(PO4)3bipolar electrodes for superior sodium energy storage,J. Mater. Chem. A, 2016, 4, 7155–7159
  • Boshi Tian, Shaohua Liu, Wei Lu, Lin Jin, Qingfeng Li, Yurong Shi, Chunyang Li, Zhenling Wang, Yaping Du,Construction of pH-responsive and up-conversion luminescent NaYF4:Yb3+/Er3+@SiO2@PMAA nanocomposite for colon targeted drug delivery,Scientific Reports 6:21335
  • Xinyu Zhang and Yaping Du,Gelatin assisted wet chemistry synthesis of high quality b-FeOOH nanorods anchored on graphene nanosheets with superior lithium-ion battery application,RSC Adv., 2016, 6, 17504–17509
  • Xinyu Zhang, Yongwei Wang, Fenghua Cheng, Zhiping Zheng, Yaping Du,Ultrathin lanthanide oxides nanomaterials: synthesis, properties and applications,Sci. Bull. (2016) 61(18):1422–1434
  • Na Li, Hongyang Zhao, Yi Zhang, Zhengqing Liu, Xueyun Gong and Yaping Du. Core–shell structured CeO2@MoS2nanocomposites for high performance symmetric supercapacitors,CrystEngComm,2016,18, 4158-4164.
  • Zhengqing Liu, Na Li, Hongyang Zhao, Yi Zhang, Yunhui Huang, Zongyou Yin, Yaping Du*, Regulating the active species of Ni(OH)2using CeO2: 3D CeO2/Ni(OH)2/carbon foam as an efficient electrode for the oxygen evolution reaction,Chemical Science,2017,8, 3211-3217.
  • Zhengqing Liu, Yi Zhang, Hongyang Zhao, Na Li, Yaping Du*, Constructing monodispersed MoSe2 anchored on graphene: a superior nanomaterial for sodium storage,Science China Materials,2017,60, 167-177.
  • Y. Yang, W. Que*, X. Zhang, X. Yin, Y. Xing, M. Que, H. Zhao, Y. Du*, High-quality Cu2ZnSnS4and Cu2ZnSnSe4nanocrystals hybrid with ZnO and NaYF4:Yb,Tm as efficient photocatalytic sensitizers, Appl. Catal. B: Environ., 2017, 200, 402-411
  • X. Zhang#, Y. Yang#, S. Ding, W. Que, Z. Zheng, Y. Du*, Construction of SnO2@MoS2heterostructures for photoelectrochemical applications, Inorg. Chem., 2017, 56, 3386-3393.
  • H. Zhao, J. Wang, Y. Zheng, J. Li, X. Han, G. He, Y. Du,Organic Thiocarboxylate Electrodes for a Room‐Temperature Sodium‐Ion Battery Delivering an Ultrahigh Capacity. Angew. Chem. Int. Ed. 2017, 56, 15334

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