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| 1 | A New Technique for Deposition of Titanium Carbonitride Films at Room Temperature by High Energy Density Pulse Plasma显示文摘 | Yan Pengxun Yang Size | 1995 | Nuclear Instrument and Methods in Physics Research B1995,95,: | 1 |
| 2 | Nano-crystalline diamond films prepared by microwave argon plasma vapor deposition on optical glass 显示文摘 | Yang Wubao Kong Xiang Yang Size | 2003 | Vacuum2003,68,: | 1 |
| 3 | Formation of AlN films by Al evaporation with nitrogen ion beam bombardment显示文摘 | HE Xiangjun YANG Size TAO Kun | 1997 | Mater Chem Phy1997,51,: | 1 |
| 4 | A new technique for deposition of titanium carbonitride films at room temperature by high energy density pulse plasma显示文摘 | Yan Pengxun Yang Size Li Bing | 1995 | Nuclear Instruments and Methods in Physics Research1995,95,: | 1 |
| 5 | Nano-crystalline diamond films prepared by microwave argon plasma vapor deposition on optical glass显示文摘 | Yang Wubao Kong Xiang Yang Size etal | 2003 | Vacuum2003,68,: | 1 |
| 6 | Uni molecularly imprinted mi crospheres prepared by a novel surface imprinting tech- nique for ursolic acid 显示文摘 | Liu Hanmao Liu Chunhai formly sized 13-cyclodextrin Yang Xiaojing | 2008 | Analytica Chimica Acta2008,628,: | 1 |
| 7 | Preparation of silicon carbide nitride films on Si substrate by pulsed high-energy density plasma显示文摘Thin films of silicon carbide nitride (SiCN) were prepared on (111) oriented silicon substrates by pulsed high-energy density plasma (PHEDP). The evolution of the chemical bonding states between silicon, nitrogen and carbon was investigated as a function of discharge voltage using X-ray photoelectron spectroscopy. With an increase in discharge voltage both the C 1s and N 1s spectra shift to lower binding energy due to the formation of C-Si and N-Si bonds. The Si-C-N bonds were observed in the deconvolved C 1s and N 1s spectra. The X-ray diffractometer (XRD) results show that there were no crystals in the films. The thickness of the films was approximately 1-2 μm with scanning electron microscopy (SEM). | Xueming Li Size Yang Xingfang Wu | 2006 | Journal of University of Science and Technology Beijing2006,13,3: | 0 |
| 8 | The coral-inspired steam evaporator for efficient solar desalination via porous and thermal insulation bionic design显示文摘The solar-driven interfacial evaporation(SIE)technology shows great prospects in seawater desalination and sewage treatment,but it is unable to obtain highly efficient and high-quality clean nontoxic water at low cost.Here,a novel biodegradable hydrogel-based solar evaporator(BBH-L)with a bionic coral structure taking Chinese ink as the solar absorber was developed.This evaporator consists of chitosan/polyvinyl alcohol hydrogel and a loofah substrate.The average evaporation rate and efficiency of BBH-L reach 4.37 kg/(m^(2)·h)and 98.2%,respectively,under one sun illumination(1 kW/m^(2)),which are attributed to its excellent thermal localization and water transporting abilities.Meanwhile,high salt resistance enables BBH-L to achieve efficient desalination and purification of other unconventional water.Heavy metal ions in seawater can be effectively removed by chelation and forming hydrogen bonds in hydrogels.This study is anticipated to provide new possibilities to enhance evaporation performance and reduce the costs of water treatment systems. | He Zhang Xiaoke Li Size Zheng Jin Wen Jiaying Zhou Rui Yang Wenmei Luo Liu Yang Xiaohu Wu | 2023 | SmartMat2023,4,6: | 0 |
| 9 | Power-to-chemicals:sustainable liquefaction of food waste with plasma-electrolysis显示文摘The increasing amount of food waste from various industrial,agricultural,and household sources is an environmental burden if managed inappropriately.Numerous waste management approaches have been developed for the disposal of food waste,but still suffer from either high cost,production of toxic by-products,or secondary environmental pollutions.Herein,we report a new and sustainable plasma electrolysis biorefinery route for the rapid and efficient liquefaction of food waste.During the plasma electrolysis process,only the solvent is added to liquefy the waste,and anions in the waste can contribute to catalyzing the biowaste conversion.While liquefying the waste,the highly reactive species produced in the plasma electrolysis process can efficiently reduce the content of O,N,and Cl in the liquefied products and oxidize most of the metals into solid residues.Especially,the removal rate of Na and K elements was greater than 81%,which is significantly higher than using the traditional oil bath liquefaction,resulting in a relatively high-quality biocrude oil with a high heating value of 25.86 MJ·kg^(-1).Overall,this proposed strategy may provide a new sustainable and eco-friendly avenue for the power-to-chemicals valorization of food waste under benign conditions. | Wenquan Xie Xianhui Zhang Dengke Xi Rusen Zhou Size Yang Patrick Cullen Renwu Zhou | 2023 | Frontiers of Chemical Science and Engineering2023,17,5: | 0 |
| 10 | Research progress in the inner surface modification of metal tubes by plasma processing显示文摘The recent progress in inner surface hardening of tubes by plasma processing is summerized. Several techniques of inner surface plasma source ion implantation and deposition are introduced, and their advantages and disadvantages are discussed. The basic principles, technical features and new progress of inner surface plasma source ion implantation methods for metal tubes, which were developed in our laboratory, are described in detail. And perspectives of the future technical development for inner surface ion implantation of tubes are presented. | ZHANG Guling WU Xingfang GU Weichao CHEN Guangliang FENG Wenran NIU Erwu LI Li LUE Guohua CHEN Huan FAN Songhua LIU Chizi YANG Size | 2006 | Progress in Natural Science:Materials International2006,16,11: | 0 |
| 11 | Preparation and characterization of carbon nano-sheet powders显示文摘碳 nanosheet 电影被使用血浆在艾尔底层上扔帮助化学蒸汽免职(PACVD ) 技术。并且在被剥离开以后从艾尔底层,碳 nanosheet 粉末(CNSP ) 被获得。在碳电影的拉曼光谱,在大约 1,580 cm1 有一座强壮、拓宽的山峰,显示碳像钻石的电影。原子力量显微镜图象证明像钻石的电影有的碳一种谷物尺寸不到 100 nm,和它的表面粗糙 Ra 是在 5 的一个区域的 17.95 | Yang Wubao Zhao Zhen Fang Songhua Wang Yong Yang Size Lin Li | 2008 | Petroleum Science2008,5,1: | 0 |