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| 1 | Differences in changes of potential evaporation in the mountainous and oasis regions of the Tarim basin, northwest China显示文摘Data from eleven meteorological stations in the Tianshan mountains and the north slope of west Kunlun mountains, and eighteen meteorological stations in the Kaidu-Kongque river, Akesu river, Kashiger river and Yankant river oases were examined to assess the differences in changes in potential evaporation from 1960 to 2006 in the mountainous and oasis regions of the Tarim basin and the relationships of these changes to meteorological factors. The decreasing trends in potential evaporation were primarily due to the decrease in the aerodynamic terms in both the mountainous and oasis regions, but the trends in the oasis regions were more pronounced. Based on the complementary relationship between potential and actual evaporation, the decreasing trends in potential evaporation appeared to be related to the increasing trends in precipitation in the mountainous regions and the increasing trends in water consumption in the oasis regions, thus reflecting the different impacts of natural changes and anthropogenic influences. | HAN SongJun HU HePing YANG DaWen LIU QunChang | 2009 | Science China(Technological Sciences)2009,52,7: | 9 |
| 2 | Adsorption of BSA onto sulfonated microsphere显示文摘 | HU Jie LI Songjun LIU Bailing | 2005 | Biochem Eng J2005,23,: | 1 |
| 3 | Symmetry-adapted spherical harmonics method for high- resolution 3D single particle reconstructions显示文摘 | Liu Hongrong Cheng Lingpeng Zeng Songjun | 2008 | Journal of Structural Biology2008,161,1: | 1 |
| 4 | Behaviors of enzyme immobi- lization onto functional microspheres显示文摘 | WU Shaogui LIU Bailing LI Songjun | 2005 | International Journal of Bio- logical Macromolecules2005,37,5: | 1 |
| 5 | Design of All-Fused-Ring Electron Acceptors with High Thermal,Chemical,and Photochemical Stability for Organic Photovoltaics显示文摘High-performance donor-acceptor electron acceptors containing 2-(3-oxo-2,3-dihydro-1H-inden-1-ylidene)malononitrile(INCN)-type terminals are labile toward photooxidation and basic conditions,and new molecular designs toward electron acceptors that can achieve both high power conversion efficiencies and high stability are urgently needed.By replacing the central benzene ring in the classical ladder-type n-type semiconductor,2,2′-(indeno[1,2-b]fluorene-6,12-diylidene)dimalononitrile,with the electron-rich 4,4,9,9-tetrahexyl-4,9-dihydro-s-indaceno[1,2-b:5,6-b′]dithiophene,we report herein the design of 2,2′-(7,7,15,15-tetrahexyl-7,15-dihydro-sindaceno[1,2-b:5,6-b′]diindeno[1,2-d]thiophene-2,10(2H)-diylidene)dimalononitrile(ITYM),a new type of all-fused-ring electron acceptor(AFRA).A threestep reaction including a key Pd-catalyzed double C-H activation/intramolecular cyclization is established for the efficient synthesis of such type of electron acceptors.ITYM is confirmed by singlecrystal X-ray analysis,which shows a planar nonacyclic structure with strongπ-πstacking.Compared with the classical carbon-bridged INCN-type acceptors,ITYM exhibits extraordinary stability with very promising performance.The AFRA concept opens a new avenue toward high-efficiency and-stability organic photovoltaics(OPVs). | Xiaozhang Zhu Songjun Liu Qihui Yue Wuyue Liu Shaoming Sun Shengjie Xu | 2021 | CCS Chemistry2021,3,6: | 1 |
| 6 | Thermodynamic and kinetic considerations: Effect of 13-eyclodextrin on methyl methaerylate dispersion polymerization 显示文摘 | Li Songjun Hu Jie Liu Bailing | 2004 | Polymer2004,455,: | 1 |
| 7 | In vivo optical bioimaging by using Nd-doped LaF3 luminescent nanorods in the second near-infrared window显示文摘Fluorescent imaging in the second near-infrared(NIR-Ⅱ,1000-1700 nm)region has attracted enormous research interest due to its advantages of unprecedentedly improved imaging sensitivity and spatial resolution.Herein,high quality NIR-Ⅱemissive LaF3:Nd3+nanorods(NRs)with hexagonal phase structure and controlled size were synthesized by a hydrothermal method.And the Nd^3+doping induced NIRⅡluminescent intensity evolution was studied,In vivo NIR-Ⅱbioimaging and real-time tracking reveal that these LaF3:Nd^3+NRs are mainly accumulated in liver and spleen.Moreover,in vivo toxicity assessment demonstrates that LaF3:Nd^3+NRs feature low biotoxicity and good biocompatibility in living animals.Therefore,the NIR-Ⅱemitting hexagonal phase LaF3 NRs with controlled size are promising probes for optical bioimaging. | Shouyan Cheng Liu Liu Qiuhua Yang Youbin Li Songjun Zeng | 2019 | Journal of Rare Earths2019,37,9: | 0 |
| 8 | Intermolecular coupling enhanced thermopower in single-molecule diketopyrrolopyrrole junctions显示文摘Sorting out organic molecules with high thermopower is essential for understanding molecular thermoelectrics.The intermolecular coupling offers a unique chance to enhance the thermopower by tuning the bandgap structure of molecular devices,but the investigation of intermolecular coupling in bulk materials remains challenging.Herein,we investigated the thermopower of diketopyrrolopyrrole(DPP)cored single-molecule junctions with different coupling strengths by varying the packing density of the self-assembled monolayers(SAM)using a customized scanning tunneling microscope break junction(STM-BJ)technique.We found that the thermopower of DPP molecules could be enhanced up to one order of magnitude with increasing packing density,suggesting that the thermopower increases with larger neighboring intermolecular interactions.The combined density functional theory(DFT)calculations revealed that the closely-packed configuration brings stronger intermolecular coupling and then reduces the highest occupied molecular orbital(HOMO)-lowest unoccupied molecular orbital(LUMO)gap,leading to an enhanced thermopower.Our findings offer a new strategy for developing organic thermoelectric devices with high thermopower. | Chao Fang Renad Almughathawi Qingqing Wu Wenqiang Cao Hang Chen Songjun Hou Yu Gu Hewei Zhang Yi Zhao Jueting Zheng Guopeng Li Jia Shi Junyang Liu Bing-Wei Mao Zitong Liu Colin J.Lambert Wenjing Hong | 2023 | National Science Open2023,2,1: | 0 |