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Facile Assembly of Cost-Effective and Locally Applicable or Injectable Nanohemostats for Hemorrhage Control Journal article
ACS Nano, 2016,Volume: 10,Issue: 11,Page: 9957-9973
Authors:  Cheng J.;  Feng S.;  Han S.;  Zhang X.;  Chen Y.;  Zhou X.;  Wang R.;  Li X.;  Hu H.;  Zhang J.
Favorite  |  View/Download:6/0  |  Submit date:2018/11/06
Cholic Acid  Hemostasis  Nanohemostat  Nanoparticle  Polyethylenimine  Self-assembly  
Draft genome of the living fossil Ginkgo biloba Journal article
GigaScience, 2016,Volume: 5,Issue: 1
Authors:  Guan R.;  Zhao Y.;  Zhang H.;  Fan G.;  Liu X.;  Zhou W.;  Shi C.;  Wang J.;  Liu W.;  Liang X.;  Fu Y.;  Ma K.;  Zhao L.;  Zhang F.;  Lu Z.;  Lee S.M.-Y.;  Xu X.;  Wang J.;  Yang H.;  Fu C.;  Ge S.;  Chen W.
Favorite  |  View/Download:3/0  |  Submit date:2018/11/06
Evolution of LTR-RTs  Ginkgo genome  Gymnosperm evolution  Plant defense mechanism  Tandem gene duplication  Whole genome duplication  
A superoxide dismutase/catalase mimetic nanomedicine for targeted therapy of inflammatory bowel disease Journal article
Biomaterials, 2016,Volume: 105,Page: 206-221
Authors:  Zhang Q.;  Tao H.;  Lin Y.;  Hu Y.;  An H.;  Zhang D.;  Feng S.;  Hu H.;  Wang R.;  Li X.;  Zhang J.
Favorite  |  View/Download:4/0  |  Submit date:2018/11/06
Colitis  Cyclodextrin  Drug Delivery  Reactive Oxygen Species  Responsive Nanoparticles  Targeted Therapy  
Exploring the Limiting Open-Circuit Voltage and the Voltage Loss Mechanism in Planar CH 3 NH 3 PbBr 3 Perovskite Solar Cells Journal article
Advanced Energy Materials, 2016,Volume: 6,Issue: 18
Authors:  Chen S.;  Hou Y.;  Chen H.;  Richter M.;  Guo F.;  Kahmann S.;  Tang X.;  Stubhan T.;  Zhang H.;  Li N.;  Gasparini N.;  Quiroz C.O.R.;  Khanzada L.S.;  Matt G.J.;  Osvet A.;  Brabec C.J.
Favorite  |  View/Download:3/0  |  Submit date:2019/04/08
CH 3 NH 3 PbBr 3 solar cells  interface materials based losses  nonradiative recombination losses  open-circuit voltage  
Sustained delivery by a cyclodextrin material-based nanocarrier potentiates antiatherosclerotic activity of rapamycin via selectively inhibiting mTORC1 in mice Journal article
Journal of Controlled Release, 2016,Volume: 235,Page: 48-62
Authors:  Dou Y.;  Guo J.;  Chen Y.;  Han S.;  Xu X.;  Shi Q.;  Jia Y.;  Liu Y.;  Deng Y.;  Wang R.;  Li X.;  Zhang J.
Favorite  |  View/Download:6/0  |  Submit date:2018/11/06
Atherosclerosis  Cyclodextrin  Mtor  Nanomedicine  Rapamycin  Sustained Delivery  
High-Efficiency Light-Emitting Diodes of Organometal Halide Perovskite Amorphous Nanoparticles Journal article
ACS Nano, 2016,Volume: 10,Issue: 7,Page: 6623-6630
Authors:  Xing J.;  Yan F.;  Zhao Y.;  Chen S.;  Yu H.;  Zhang Q.;  Zeng R.;  Demir H.V.;  Sun X.;  Huan A.;  Xiong Q.
Favorite  |  View/Download:1/0  |  Submit date:2019/04/08
electroluminescence  light-emitting diodes  nanoparticles  organometal halide perovskite  photoluminescence  
Efficiency Improvement of Organic Solar Cells via Introducing Combined Anode Buffer Layer to Facilitate Hole Extraction Journal article
Journal of Physical Chemistry C, 2016,Volume: 120,Issue: 26,Page: 13954-13962
Authors:  Zhang X.;  Li Z.;  Zhang Z.;  Li S.;  Liu C.;  Guo W.;  Shen L.;  Wen S.;  Qu S.;  Ruan S.
Favorite  |  View/Download:7/0  |  Submit date:2019/04/08
Characterization and hypoglycemic activity of a β-pyran polysaccharides from bamboo shoot (Leleba oldhami Nakal) shells Journal article
Carbohydrate Polymers, 2016,Volume: 144,Page: 438-446
Authors:  Zheng Y.;  Zhang S.;  Wang Q.;  Lu X.;  Lin L.;  Tian Y.;  Xiao J.;  Zheng B.
Favorite  |  View/Download:4/0  |  Submit date:2019/01/15
Bamboo shoot shells  Hypoglycemic activity  Polysaccharides  Structural characterization  
Elucidating the cellular uptake mechanism of aptamer-functionalized graphene-isolated-Au-nanocrystals with dual-modal imaging Journal article
Analyst, 2016,Volume: 141,Issue: 11,Page: 3337-3342
Authors:  Wang S.;  Liu Z.;  Zou Y.;  Lai X.;  Ding D.;  Chen L.;  Zhang L.;  Wu Y.;  Chen Z.;  Tan W.
Favorite  |  View/Download:6/0  |  Submit date:2019/02/13
Preparation and employment of carbon nanodots to improve electron extraction capacity of polyethylenimine interfacial layer for polymer solar cells Journal article
Organic Electronics: physics, materials, applications, 2016,Volume: 33,Page: 62-70
Authors:  Zhang X.;  Li Z.;  Zhang Z.;  Liu C.;  Li J.;  Guo W.;  Shen L.;  Qu S.
Favorite  |  View/Download:1/0  |  Submit date:2019/04/08
Carbon nanodots  Charge mobility  Electron extraction capacity  Polymer solar cells