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| 1 | Influence of oxygen gas content on the structural and optical properties of ZnO thin films deposited by RF magnetron sputtering at room temperature显示文摘Zinc oxide (ZnO) thin films were deposited on sapphire (0001) substrates at room temperature by radiofrequency (RF) magnetron sputtering at oxygen gas contents of 0%,25%,50% and 75%,respectively.The influence of oxygen gas content on the structural and optical properties of ZnO thin films was studied by a surface profile measuring system,X-ray diffraction analysis,atomic force microscopy,and UV spectrophotometry.It is found that the size of ZnO crystalline grains increases first and then decreases with the increase of oxygen gas content,and the maximum grain size locates at the 25% oxygen gas content.The crystalline quality and average optical transmittance (>90%) in the visible-light region of the ZnO film prepared at an oxygen gas content of 25% are better than those of ZnO films at the other contents.The obtained results can be attributed to the resputtering by energetic oxygen anions in the growing process. | LIU Baoting ZHOU Yang ZHENG Hongfang LI Mana GUO Zhe HAO Qingxun PENG Yingcai | 2011 | Rare Metals2011,30,2: | 6 |
| 2 | Stalk cutting mechanism of no-tillage planter for wide/narrow row farming mode显示文摘A no-tillage planter of narrow row spacing was designed according to the agronomic requirements of wide/narrow row farming mode in the black soil region of Northeast China.Due to the narrow spacing of the seeder unit,a gear-tooth stalk cutting mechanism was designed in order to prevent residues from blocking the planter.The basic parameters,number and edge curve of the stalk cutting blade were designed and optimized.Three-factor and three-level combined orthogonal experiments were conducted using the factors of working speed(1.12 m/s,1.57 m/s and 2.02 m/s),tillage depth(75 mm,90 mm and 105 mm)and cutter spacing(15 mm,30 mm and 45 mm),which significantly affected stalk cutting rate and soil disturbance rate.The optimal combination is the working speed of 1.62 m/s,tillage depth of 92 mm and cutter spacing of 35 mm.Under this condition,the stalk cutting rate is more than 90%and soil disturbance rate is 7.5%-12.0%.The performance of the new no-tillage planter was tested by using the above parameters.The results showed that the no-tillage planter of narrow row spacing came up to the relevant national standards in China. | Jia Honglei Jiang Xinming Yuan Hongfang Zhuang Jian Zhao Jiale Guo Mingzhuo | 2017 | International Journal of Agricultural and Biological Engineering2017,10,2: | 5 |
| 3 | Prognostic markers for idiopathic pulmonary arterial hypertension显示文摘 | Guo Xiaomin Jin Hongfang Du Junbao | 2014 | Chinese Medical Journal2014,,21: | 4 |
| 4 | Delay-Differentiated Scheduling in Optical Packet Switches for Cloud Data Centers显示文摘We consider differentiated timecritical task scheduling in a N×N input queued optical packet s w itch to ens ure 100% throughput and meet different delay requirements among various modules of data center. Existing schemes either consider slot-by-slot scheduling with queue depth serving as the delay metric or assume that each input-output connection has the same delay bound in the batch scheduling mode. The former scheme neglects the effect of reconfiguration overhead, which may result in crippled system performance, while the latter cannot satisfy users' differentiated Quality of Service(Qo S) requirements. To make up these deficiencies, we propose a new batch scheduling scheme to meet the various portto-port delay requirements in a best-effort manner. Moreover, a speedup is considered to compensate for both the reconfiguration overhead and the unavoidable slots wastage in the switch fabric. With traffic matrix and delay constraint matrix given, this paper proposes two heuristic algorithms Stringent Delay First(SDF) and m-order SDF(m-SDF) to realize the 100% packet switching, while maximizing the delay constraints satisfaction ratio. The performance of our scheme is verified by extensive numerical simulations. | LI Yaofang XIAO Jie WU Bin WEN Hong YU Hongfang YANG Shu XIN Shanshan GUO Jianing | 2015 | China Communications2015,12,8: | 2 |
| 5 | A new shared-path protection algorithm under shared risk link group constraints for survivable WDM mesh networks显示文摘 | Lei Guo Hongfang Yu Lemin Li | 2004 | Optics Communications2004,,4: | 1 |
| 6 | Wild Plant Species with Extremely Small Populations Require Conservation and Reintroduction in China显示文摘 | Hai Ren Qianmei Zhang Hongfang Lu Hongxiao Liu Qinfeng Guo Jun Wang Shuguang Jian Hai’ou Bao | 2012 | AMBIO2012,,8: | 1 |
| 7 | Path-based protection in WDM mesh networks subject to double-link failures 显示文摘 | GUO Lei YU Hongfang LI Lemin | 2006 | Elsevier Journal2006,60,6: | 1 |
| 8 | Vibration fatigue experiments of SMT solder joint显示文摘 | Hongfang Wang Mei Zhao Qiang Guo | 2004 | Microelectronics reliability2004,,: | 1 |
| 9 | Facile ultrafine copper seed-mediated approach for fabricating quasi-two-dimensional palladium-copper bimetallic trigonal hierarchical nanoframes显示文摘有高度分叉的形态学的各向异性的 Pd nanoparticles 着急地由于他们的新奇结构和唯一的物理化学的性质为 nanoscale 设备,催化剂,和察觉到的材料作为积木被需要。然而,为这些材料认识到尺寸控制和分支操作是很挑战性的。在这研究,我们在水的阶段开发一条灵巧的极其细小的 Cu 调停种子的途径生产新奇 Pd-Cu 三角的层次 nanoframes (THNF ) 。大多数获得的 nanocrystals 的主要分支是像三脚架的,与沿着象有自我类似的框架单位的手臂的先进分支。在这个方法, Pd-Cu THNF 的尺寸能被操作包含 sub-3 nm Cu 种子的成核灵活地控制。这些 Pd-Cu THNF 关于他们的乙醇氧化表演超过 Pd 黑色,举办 9.7 和 6.6 分别地更高预定的一项特定的活动和集体活动。这研究为生产控制尺寸的各向异性的二金属的 nanoframes 提供一条万用的极其细小的调停种子的途径。 | Min Shen Yuanbiao Huang Dongshuang Wu Jian Lv Minna Cao Meimei Liu Yinglong Yang Hongfang Li Binbin Guo Rong Cao | 2017 | Nano Research2017,10,8: | 0 |
| 10 | Carbon nitride with encapsulated nickel for semi-hydrogenation of acetylene: pyridinic nitrogen is responsible for hydrogen dissociative adsorption显示文摘A new mechanism of catalyst has been demonstrated in this article. With the interaction between carbon nitride(CN) and encapsulated nickel, the CN in the catalyst has been endowed with new active sites for the adsorption and activation of hydrogen while nickel itself is physically isolated from the contact with reactive molecules. For the selective hydrogenation of acetylene in large amount of ethylene, the catalyst shows excellent ethylene selectivity than the nickel catalyst itself, which is almost totally unselective. Meanwhile, the CN itself is inactive for the reaction. The results of characterization demonstrate that pyridinic nitrogen doped in the carbon matrix should be the active sites for hydrogen dissociative adsorption. The theoretical calculations further confirm the results and provide with the detail in the electron transfer between nickel and CN in the catalyst. The current results supply a new concept for design of high performance catalyst. | Teng Fu Tao Wang Hongfang Sun Yida Xu Zhen Dong Xiangke Guo Luming Peng Yan Zhu Zhaoxu Chen Weiping Ding | 2018 | Science China Chemistry2018,61,8: | 0 |
| 11 | Recent progress in ternary mixed matrix membranes for CO_(2) separation显示文摘Mixed matrix membranes(MMMs)could combine the advantages of both polymeric membranes and porousfillers,making them an effective alternative to conventional polymer membranes.However,interfacial incompatibility issues,such as the presence of interfacial voids,hardening of polymer chains,and blockage of micropores by polymers between common MMMsfillers and the polymer matrix,currently limit the gas sep-aration performance of MMMs.Ternary phase MMMs(consisting of afiller,an additive,and a matrix)made by adding a third compound,usually functionalized additives,can overcome the structural problems of binary phase MMMs and positively impact membrane separation performance.This review introduces the structure and fabrication processes for ternary MMMs,categorizes various nanofillers and the third component,and summarizes and analyzes in detail the CO_(2) separation performance of newly developed ternary MMMs based on both rubbery and glassy polymers.Based on this separation data,the challenges of ternary MMMs are also discussed.Finally,future directions for ternary MMMs are proposed. | Zikang Qin Yulei Ma Jing Wei Hongfang Guo Bangda Wang Jing Deng Chunhai Yi Nanwen Li Shouliang Yi Yi Deng Wentao Du Jian Shen Wenju Jiang Lu Yao Lin Yang Zhongde Dai | 2024 | Green Energy & Environment2024,9,5: | 0 |