|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | Electrodeposition of pyrrole and 3-(4- tert- butylphenyl)thiophene copolymer for supercapacitor applications显示文摘 | Binbin Yue Caiyun Wang Pawel Wagner Yang Yang Xin Ding David L. Officer Gordon G. Wallace | 2012 | Synthetic Metals2012,,24: | 1 |
| 2 | The interpolation algorithm of feed rate control based on trigonometric accelerationdeceleration and machine dynamics conditions显示文摘 | Jiang Lei Ding Guofu Xie Binbin | 2011 | Advanced Materials Research2011,201,: | 1 |
| 3 | Efficient 3D Hilbert Curve Encoding and Decoding Algorithms显示文摘Hilbert curve describes a one-to-one mapping between multidimensional space and 1 D space.Most traditional 3D Hilbert encoding and decoding algorithms work on order-wise manner and are not aware of the difference between different input data and spend equivalent computing costs on them,thus resulting in a low efficiency.To solve this problem,in this paper we design efficient 3D state views for fast encoding and decoding.Based on the state views designed,a new encoding algorithm(JFK-3HE)and a new decoding algorithm(JFK-3HD)are proposed.JFK-3HE and JFK-3HD can avoid executing iteratively encoding or decoding each order by skipping the first 0 s in input data,thus decreasing the complexity and improving the efficiency.Experimental results show that JFK-3HE and JFK-3HD outperform the state-of-the-arts algorithms for both uniform and skew-distributed data. | JIA Lianyin LIANG Binbin LI Mengjuan LIU Yong CHEN Yinong DING Jiaman | 2022 | Chinese Journal of Electronics2022,31,2: | 1 |
| 4 | Modeling and Analysis on Production Yield and Energy Consumption of Pelleting Process显示文摘The existing studies on the pelleting process were reviewed, and then the forming process of pelleting was introduced. Furthermore, the models describing the production yield and energy consumption of pelleting were presented. Based on the models, the influence of the pelleting structure parameters, die speed on the production yield and energy consumption were discussed. The results showed that larger pellet mill was preferred and the proper speed of the die should be selected to increase the production yield and reduce the energy consumption. | WU Kai SHI Shuijuan PENG Binbin DING Wuxue SUN Yu | 2010 | Journal of Northeast Agricultural University(English Edition)2010,17,1: | 1 |
| 5 | Structure elucidation,immunomodulatory activity,antitumor activity and its molecular mechanism of a novel polysaccharide from Boletus reticulatus Schaeff显示文摘A new water-soluble heteropolysaccharide with a molecular weight of 15 k Da was isolated from the fruiting bodies of Boletus reticulatus Schaeff.Structural characterization results revealed that B.reticulatus Schaeff polysaccharide(BRS-X)had a backbone of 1,6-linkedα-D-galactose and 1,2,6-linkedα-D-galactose which branches were mainly composed of a terminal 4-linkedβ-D-glucose and the ratio of D-galactose and D-glucose was 5:1.Bioactivity assays indicated that BRS-X displayed a strong proliferative activity in T cells and B cells and promoted the secretion of immunoglobulin G(Ig G),Ig E,Ig D and Ig M.In addition,BRS-X could facilitate the proliferation and phagocytosis of RAW264.7 cells and could significantly inhibit the growth of tumors in S180-bearing mice.The results of transcriptome sequencing analysis illustrated that total 46 genes enriched in MAPK and total 34 genes enriched in PI3 K/Akt signaling pathways in BRS-X group.The protein VEGF and VEGFR expression were significantly reduced under the treatment with BRS-X.These findings provide a scientific basis for the edible and medicinal value of BRS-X. | Siyuan Su Xiang Ding Yiling Hou Binbin Liu Zhouhe Du Junfeng Liu | 2023 | Food Science and Human Wellness2023,12,2: | 1 |
| 6 | Surface promotion of copper nanoparticles with alumina clusters derived from layered double hydroxide accelerates CO_(2)reduction to ethylene in membrane electrode assemblies显示文摘Electrochemical CO_(2)reduction has the vast potential to neutralize CO_(2)emission and valorizes this greenhouse gas into chemicals and fuels under mild conditions.Its commercial realization hinges on catalyst innovation as well as device engineering for enabling reactions at industrially relevant conditions.Copper has been widely examined for the selective production of multicarbon chemicals particularly ethylene,while there is still a substantial gap between the expected and the attainable.In this work,we report that the surface promotion of copper with alumina clusters is a viable strategy to enhance its electrocatalytic performance.AlOx-promoted Cu catalyst is derived from Cu-Al layered double hydroxide nanosheets after alkali etching and cathodic conversion.It can catalyze CO_(2)to ethylene and multicarbon products with great selectivity and stability far superior to pristine copper in both an H-cell and a zero-gap membrane electrode assembly(MEA)electrolyzer.The surface promotion effect is understood via computational simulations showing that alumina clusters can stabilize key reaction intermediates(*COOH and*OCCOH)along the reaction pathway. | Jie Zhang Xinnan Mao Binbin Pan Jie Xu Xue Ding Na Han Lu Wang Yuhang Wang Yanguang Li | 2023 | Nano Research2023,16,4: | 1 |
| 7 | Tumor microenvironment-responsive MnSiO_(3)-Pt@BSA-Ce6 nanoplatform for synergistic catalysis-enhanced sonodynamic and chemodynamic cancer therapy显示文摘Compared with traditional photodynamic therapy(PDT),ultrasound(US)triggered sonodynamic therapy(SDT)has a wide application prospect in tumor therapy because of its deeper penetration depth.Herein,a novel MnSiO_(3)-Pt(MP)nanocomposite composed of Mn Si O_(3)nanosphere and noble metallic Pt was successfully constructed.After modification with bovine serum albumin(BSA)and chlorine e6(Ce6),the multifunctional nanoplatform Mn SiO_(3)-Pt@BSA-Ce6(MPBC)realized the magnetic resonance imaging(MRI)-guided synergetic SDT/chemodynamic therapy(CDT).In this nanoplatform,sonosensitizer Ce6 can generate singlet oxygen(^(1)O_(2))to kill cancer cells under US irradiation.Meanwhile,the loaded Pt has the ability to catalyze the decomposition of overexpressed hydrogen peroxide(H_(2)O_(2))in tumor microenvironment(TME)to produce oxygen(O_(2)),which can conquer tumor hypoxia and promote the SDT-induced^(1)O_(2)production.In addition,MP can degrade in mildly acidic and reductive TME,causing the release of Mn^(2+).The released Mn^(2+) not only can be used for MRI,but also can generate hydroxyl radical(^·OH)for CDT by Fenton-like reaction.The multifunctional nanoplatform MPBC has high biological safety and good anticancer effect,which displays the great latent capacity in biological application. | Fan Jiang Chunzheng Yang Binbin Ding Shuang Liang Yajie Zhao Ziyong Cheng Min Liu Bengang Xing Ping’an Ma Jun Lin | 2022 | Chinese Chemical Letters2022,33,6: | 1 |
| 8 | Optimization of Chinese solar greenhouse building parameters based on CFD simulation and entropy weight method显示文摘The building parameters of Chinese solar greenhouse(CSG)directly affect the front roof lighting and indoor thermal environment.In order to obtain the optimal parameter combination,a building parameter optimization method based on computational fluid dynamics(CFD)simulation and entropy weight method was proposed.Firstly,a three-dimensional thermal and humidity environment model of CSG was constructed considering the coupling effect of soil,crop,and back wall based on CFD.The reliability of the model was validated through experiments in a CSG of Yongqing County,Hebei Province of China.Then,the indoor air temperature rise rate,air temperature and humidity uneven coefficient,and average air temperature and humidity were selected as the evaluation indicators of CSG thermal and humidity environment.The ridge height,back wall height and the horizontal projection of back roof of CSG were selected as the three factors of the orthogonal test plan,and a three-factor and four-level plan was designed,resulting in 16 different parameter combinations.By use of CFD simulation,the thermal and humidity environment evaluation indicators under different parameter combinations were calculated.The entropy weight method was used to assign weights to the evaluation indicators,and the comprehensive evaluation indicators of CSG thermal and humidity environment were obtained based on the linear weighting principle.By comparing comprehensive evaluation indicators,the optimal combination of building parameters was obtained with a ridge height of 5.72 m,a back wall height of 3.2 m,and a horizontal projection of 2.1 m on the back roof.The research results can provide a practical and feasible method for optimizing the building parameters of CSG,and provided theoretical guidance for the structural design and optimization of CSG. | Fen He Changqing Si Xiaoming Ding Zhenjun Gao Binbin Gong Fei Qi Yilei Yin Qian Feng | 2023 | International Journal of Agricultural and Biological Engineering2023,16,6: | 0 |
| 9 | Some Reflections on Research into the History of Contemporary Chinese Literature显示文摘In order to have a genuine grasp of the basic features and historical relevance of contemporary Chinese literature, some scholarly | Dong Jian Ding Fan Wang Binbin Chen Yongyi(译) Zhang Zhiping(译) | 2007 | Social Sciences in China2007,28,3: | 0 |
| 10 | Temperature‐dependent adaptive conductivity coating for surface charge release and electric field control under electro‐thermal coupling field显示文摘Surface charge accumulation is the potential criminal for surface insulation failure on spacers under direct current(DC)voltages.The existence of thermal gradient posing the difficulty of surface charge regulation.This study proposes a temperature‐dependent adaptive conductivity coating technique for surppressing surface charge accumulation under electro‐thermal coupling field.A two‐dimensional axis‐symmetrical simulation model regrading surface charge computation is established.The effects of thermal gradients and coating conductivity on surface charge and electric field distribution are investigated.The results show that the thermal gradient increases the bulk conductive current,therefore aggravating surface charge accumulation.The effects of the coating condcutivity on surface charge and electric field contains three stages.The lower coating conductivity leads to aggravated homo‐polarity charge accumulation.By increasing the coating conductivity,the surface charge and electric field are significantly suppressed at the obtained optimal conductivity,where the bulk and surface conductive current reach a balance stage.Continuously increasing the coating conductivity results in aggravated hetero‐polarity charges.Besides,the increase of thermal gradient to an appropriate extent contributes to the further suppression of surface charge on coated spacers.It is hoped that this study could provide some references for designing highly reliable DC GIL under electro‐thermal coupling field. | Jianyi Xue Zhu Zhang Binbin Li Yushun Zhao Lijian Ding | 2023 | High Voltage2023,8,5: | 0 |
| 11 | Superconductivity in potassium and ammonia co-intercalated FeSe_(1-x)Te_x显示文摘The origin of the ~40 and ~30 K superconducting phases in the metal-intercalated FeSe superconductors is still unclear. We report the synthesis of K_(0.3)(NH_3)_y(FeSe_(1-x)Te_x)_2 and K_(0.6)(NH_3)_y(FeSe_(1-x)Te_x)_2 with x=0-0.6 by using the liquid ammonia method at room temperature. The superconducting transition temperature Tcof the former remains about 43 K for all the nominal Te content less than 0.3, while that of the latter is about 30 K and obviously decreases with Te doping. Superconductivity disappears for x ≥0.4 in both systems. Except for the different chemical pressure induced by substitution of Te for Se in both systems, we also observed distinct external pressure effect on superconductivity for both systems, with much more efficiency of suppressing Tcby external pressure in the former system. These dramatic differences of both chemical and external pressure effects on Tc between the ~30 and ~40 K superconducting phases revealed that the existence of the two superconducting phases can be ascribed to the moderate and negligible coupling between FeSe layers, respectively. | BinBin Xiao NaiZhou Wang Chao Shang FanBao Meng JianWen Ding Bin Lei XiGang Luo | 2019 | Science China(Physics,Mechanics & Astronomy)2019,62,4: | 0 |
| 12 | Electron-Beam Irradiation Induced Regulation of Surface Defects in Lead Halide Perovskite Thin Films显示文摘Organic-inorganic hybrid perovskites(OIHPs)have been intensively studied due to their fascinating optoelectronic performance.Electron microscopy and related characterization techniques are powerful to figure out their structure-property relationships at the nanoscale.However,electron beam irradiation usually causes damage to these beam-sensitive materials and thus deteriorates the associated devices.Taking a widely used CH_(3)NH_(3)PbI_(3)film as an example,here,we carry out a comprehensive study on how electron beam irradiation affects its properties.Interestingly,our results reveal that photoluminescence(PL)intensity of the film can be significantly improved along with blue-shift of emission peak at a specific electron beam dose interval.This improvement stems from the reduction of trap density at the CH_(3)NH_(3)PbI_(3)surface.The knock-on effect helps expose a fresh surface assisted by the surface defect-induced lowering of displacement threshold energy.Meanwhile,the radiolysis process consistently degrades the crystal structure and weaken the PL emission with the increase of electron beam dose.Consequently,the final PL emission comes from a balance between knock-on and radiolysis effects.Taking advantage of the defect regulation,we successfully demonstrate a patterned CH_(3)NH_(3)PbI_(3)film with controllable PL emission and a photodetector with enhanced photocurrent.This work will trigger the application of electron beam irradiation as a powerful tool for perovskite materials processing in micro-LEDs and other optoelectronic applications. | Binbin Jin Ding Zhao Fei Liang Lufang Liu Dongli Liu Pan Wang Min Qiu | 2021 | Research2021,,1: | 0 |