UM

Browse/Search Results:  1-10 of 14 Help

Selected(0)Clear Items/Page:    Sort:
Enhanced anticancer effect of lysozyme-functionalized metformin-loaded shellac nanoparticles on a 3D cell model: role of the nanoparticle and payload concentrations Journal article
Wang, Anheng, Madden, Leigh A., Paunov, Vesselin N.. Enhanced anticancer effect of lysozyme-functionalized metformin-loaded shellac nanoparticles on a 3D cell model: role of the nanoparticle and payload concentrations[J]. Biomaterials Science, 2024.
Authors:  Wang, Anheng;  Madden, Leigh A.;  Paunov, Vesselin N.
Favorite | TC[WOS]:0 TC[Scopus]:0  IF:5.8/6.2 | Submit date:2024/09/03
Zinc-oxide Nanoparticles  Nanogel Carriers  Delivery  Drug  Therapy  
An electron/ion pathway reconstruction strategy enabling fast aqueous Zn2+ storage Journal article
Wang, Yuanhang, Yang, Hang, Cai, Dong, Tan, Yicheng, Li, Li, Zhang, Yiming, He, Xiaoxi, Shu, Xin, Han, Wei, Chen, Duo, Shen, Laifa. An electron/ion pathway reconstruction strategy enabling fast aqueous Zn2+ storage[J]. Materials Today Energy, 2024, 39, 101474.
Authors:  Wang, Yuanhang;  Yang, Hang;  Cai, Dong;  Tan, Yicheng;  Li, Li; et al.
Favorite | TC[WOS]:6 TC[Scopus]:6  IF:9.0/8.4 | Submit date:2024/02/22
Ion diffusIon  Reduced Graphene Oxide  Superlattice  Vanadium Oxides  Zinc-ion Battery  
Advanced Zinc–Iodine Batteries with Ultrahigh Capacity and Superior Rate Performance Based on Reduced Graphene Oxide and Water-in-Salt Electrolyte Journal article
Ji, Yu, Xie, Junpeng, Shen, Zhaoxi, Liu, Yu, Wen, Zhaorui, Luo, Lei, Hong, Guo. Advanced Zinc–Iodine Batteries with Ultrahigh Capacity and Superior Rate Performance Based on Reduced Graphene Oxide and Water-in-Salt Electrolyte[J]. Advanced Functional Materials, 2023, 33(10), 2210043.
Authors:  Ji, Yu;  Xie, Junpeng;  Shen, Zhaoxi;  Liu, Yu;  Wen, Zhaorui; et al.
Favorite | TC[WOS]:54 TC[Scopus]:51  IF:18.5/19.6 | Submit date:2023/04/03
Reduced Graphene Oxide  Water In Salt Electrolytes  Zinc–iodine Batteries  
Co/N dual hybrid strategy for superior capacity and long cyclic stability Li+/K+ storage of ZnO/N-doped carbon nanosheet framework Journal article
Li, Jianding, Shao, Huaiyu, Zheng, Yun. Co/N dual hybrid strategy for superior capacity and long cyclic stability Li+/K+ storage of ZnO/N-doped carbon nanosheet framework[J]. Journal of Alloys and Compounds, 2021, 879, 160438.
Authors:  Li, Jianding;  Shao, Huaiyu;  Zheng, Yun
Favorite | TC[WOS]:12 TC[Scopus]:12  IF:5.8/5.3 | Submit date:2021/09/17
Cobalt  Cyclic Stability  li+/k+ Battery  N-doped Carbon Nanosheet Framework  Zinc Oxide  
Sputtered Indium-Zinc Oxide for Buffer Layer Free Semitransparent Perovskite Photovoltaic Devices in Perovskite/Silicon 4T-Tandem Solar Cells Journal article
Zhiqin Ying, Yudong Zhu, Xiyuan Feng, Jingwei Xiu, Rui Zhang, Xuhang Ma, Yunsheng Deng, Hui Pan, Zhubing He. Sputtered Indium-Zinc Oxide for Buffer Layer Free Semitransparent Perovskite Photovoltaic Devices in Perovskite/Silicon 4T-Tandem Solar Cells[J]. Advanced Materials Interfaces, 2020, 8(6), 2001604.
Authors:  Zhiqin Ying;  Yudong Zhu;  Xiyuan Feng;  Jingwei Xiu;  Rui Zhang; et al.
Favorite | TC[WOS]:27 TC[Scopus]:27  IF:4.3/5.2 | Submit date:2021/03/09
Buffer Layers  Four Terminal Tandem Solar Cells  Indium-zinc Oxide  Perovskite Solar Cells  Semitransparent Solar Cells  
ZnO nanoparticles filled tetrapod-shaped carbon shell for lithium-sulfur batteries Journal article
Rongliang Yang, Huiwei Du, Zhiqiang Lin, Leilei Yang, Hai Zhu, Hao Zhang, Zikang Tang, Xuchun Gui. ZnO nanoparticles filled tetrapod-shaped carbon shell for lithium-sulfur batteries[J]. CARBON, 2019, 141, 258-265.
Authors:  ; et al.
Favorite | TC[WOS]:57 TC[Scopus]:61  IF:10.5/9.2 | Submit date:2019/01/17
Lithium-sulfur Battery  Graphene  Zinc Oxide  Core-shell Structure  
Well-controlled wet etching of ZnO films using hydrogen peroxide solution Journal article
Wang Y., Wu T., Chen M., Su L., Zhang Q., Yuan L., Zhu Y., Tang Z.. Well-controlled wet etching of ZnO films using hydrogen peroxide solution[J]. Applied Surface Science, 2014, 292, 34-38.
Authors:  Wang Y.;  Wu T.;  Chen M.;  Su L.;  Zhang Q.; et al.
Favorite | TC[WOS]:16 TC[Scopus]:17 | Submit date:2019/04/08
Hydrogen Peroxide  Ultraviolet Luminescence  Wet Etching  Zinc Oxide  
On the origin of intrinsic donors in ZnO Journal article
Sun F., Shan C.X., Wang S.P., Li B.H., Zhang J.Y., Zhang Z.Z., Zhao D.X., Yao B., Shen D.Z., Fan X.W.. On the origin of intrinsic donors in ZnO[J]. APPLIED SURFACE SCIENCE, 2010, 256(11), 3390-3393.
Authors:  Sun F.;  Shan C.X.;  Wang S.P.;  Li B.H.;  Zhang J.Y.; et al.
Favorite | TC[WOS]:22 TC[Scopus]:21  IF:6.3/5.9 | Submit date:2019/04/08
Carrier Concentration  Hall Measurement  Intrinsic Donors  Zinc Oxide  
Electrical and optical properties of ZnO films grown by molecular beam epitaxy Journal article
Wang S.P., Shan C.X., Yao B., Li B.H., Zhang J.Y., Zhao D.X., Shen D.Z., Fan X.W.. Electrical and optical properties of ZnO films grown by molecular beam epitaxy[J]. APPLIED SURFACE SCIENCE, 2009, 255(9), 4913-4915.
Authors:  Wang S.P.;  Shan C.X.;  Yao B.;  Li B.H.;  Zhang J.Y.; et al.
Favorite | TC[WOS]:24 TC[Scopus]:27  IF:6.3/5.9 | Submit date:2019/04/08
Grain Boundary  Hall Mobility  Molecular Beam Epitaxy  Zinc Oxide  
Angular dependent magneto-photoluminescence spectra of ZnO single crystal thin film Conference paper
Ding L., Yang C.L., He H.T., Tang Z.K., Wang J.N., Ge W.K.. Angular dependent magneto-photoluminescence spectra of ZnO single crystal thin film[C], 2007, 285-286.
Authors:  Ding L.;  Yang C.L.;  He H.T.;  Tang Z.K.;  Wang J.N.; et al.
Favorite | TC[WOS]:0 TC[Scopus]:0 | Submit date:2019/04/08
A-free Exciton  Magnetoexciton  Magnetooptical Effects  Valence Band Symmetry  Zinc Oxide