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| 1 | Morphological control of SnTe nanostructures by tuning catalyst composition显示文摘A method of controlling the morphology of SnTe nanostructures produced by a simple chemical vapor deposition is presented, in which Au-containing catalysts with different Au concentrations are used to induce specific growth behavior. Triangular SnTe nanoplates with a {100} dominated surface and {100}, {111} and {120} side facets were induced by AuSn catalysts, whereas 〈010〉 SnTe nanowires with four nonpolar {100} side-facets were produced using AusSn catalysts. Through detailed structural and chemical characterization, coupled with surface energy calculations, it is found that nanowire growth is thermodynamically controlled via a vapor-solid-solid growth mechanism, whereas nanoplate growth is kinetically controlled via a vapor-liquid-solid growth mechanism. Therefore, this study provides a fundamental understanding of the catalyst's role in the growth of IV-VI compound nanostructures. | Yichao Zou Zhigang Chen Jing Lin Xiaohao Zhou Wei Lu John Drennan Jin Zou | 2015 | Nano Research2015,8,9: | 4 |
| 2 | Wafer-scale arrayed p-n junctions based on few-layer epitaxial GaTe显示文摘二维(2D ) 材料吸引了实质的注意在电子并且有灵活、透明、高度悦耳的优异优点的 optoelectronic 应用。当时,无差距的 graphene 展出极端宽带、快的 photoresponse 半导体的瞬间 2 和门高展出的 2D 敏感和悦耳的 responsivity 到可见的光。然而,设备收益和重覆性打电话让进一步的改进完成大规模一致性。这里,我们与 28.4 厘米 2/(V0 的高洞活动性报导晶片规模门的 layer-by-layer | Xiang Yuan Lei Tang Peng Wang Zhigang Chen Yichao Zou Xiaofeng Su Cheng Zhang Yanwen Liu Weiyi Wang Cong Liu Fansheng Chen Jin Zou Peng Zhou Weida Hu Faxian Xiu | 2015 | Nano Research2015,8,10: | 4 |
| 3 | A facile one-pot synthesis of yolk-shell ZnO microsphere-graphene composite induced by graphene oxide显示文摘 | Gong Yichao Meng Xiaopeng Zou Changwu | 2013 | Materials Letters2013,106,9: | 1 |
| 4 | Global energy transition revolution and the connotation and pathway of the green and intelligent energy system显示文摘The essence of energy system transition is the'energy revolution':The development of the'resource-dominated'energy system with fossil energy as the mainstay has promoted human progress,but it has also triggered energy crisis and ecological environment crisis,which is not compatible with the new demands of the new round of scientific and technological revolution,industrial transformation,and sustainable human development.It is in urgent need to research and develop a new-type energy system in the context of carbon neutrality.In the framework of'technique-dominated'new green and intelligent energy system with'three new'of new energy,new power and new energy storage as the mainstay,the'super energy basin'concepts with the Ordos Basin,Nw China as a representative will reshape the concept and model of future energy exploration and development.In view of the'six inequalities'in global energy and the resource conditions of'abundant coal,insufficient oil and gas and infinite new energy'in China,it is suggested to deeply boost'China energy revolution',sticking to the six principles of independent energy production,green energy supply,secure energy reserve,efficient energy consumption,intelligent energy management,economical energy cost;enhance'energy scientific and technological innovation'by implementing technique-dominated'four major science and technology innovation projects',namely,clean coal project,oil production stabilization and gas production increasing project,new energy acceleration project,and green-intelligent energy project;implement'energy transition'by accelerating the green-dominated'four-modernization development',namely,fossil energy cleaning,large-scale new energy,coordinated centralized energy distribution,intelligent multi-energy management,so as to promote the exchange of two 80%s'in China's energy structure and construct the new green and intelligent energy system. | ZOU Caineng MA Feng PAN Songqi ZHAO Qun FU Guoyou ZHANG Guosheng YANG Yichao YU Hao LIANG Yingbo LIN Minjie WANG Ying XIONG Bo LIU Hanlin | 2023 | Petroleum Exploration and Development2023,50,3: | 0 |
| 5 | Review of laser powder bed fusion(LPBF)fabricated Ti-6Al-4V:process,post-process treatment,microstructure,and property显示文摘Laser powder bed fusion(LPBF)is a timely important additive manufacturing technique that offers many opportunities for fabricating three-dimensional complex shaped components at a high resolution with short lead times.This technique has been extensively employed in manufacturing Ti-6Al-4V parts for aerospace and biomedical applications.However,many challenges,including poor surface quality,porosity,anisotropy in microstructure and property,and difficulty in tailoring microstructure,still exist.In this paper,we review the recent progress in post-process treatment and its influence on the microstructure evolution and material performance,including tensile,fatigue,fracture toughness,creep,and corrosion properties.The contradictions in simultaneously achieving high strength/ductility and strength/fracture toughness/creep resistance have been identified.Furthermore,research gaps in understanding the effects of the emerging bi-modal microstructure on fatigue properties and fracture toughness require further investigation. | Sheng Cao Yichao Zou Chao Voon Samuel Lim Xinhua Wu | 2021 | Light(Advanced Manufacturing)2021,2,3: | 0 |