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| 1 | Preparation of porous microstructures on NiTi alloy surface with femtosecond laser pulses显示文摘Porous microstructures on Nickel-Titanium (NiTi) alloy surfaces were prepared by linearly polarized femtosecond lasers with moving focal point at a certain speed. It was found that various novel micro-structures from feather-like ripples to cluster-like porous textures could be formed with increasing laser energy. Particularly, when the laser energy was 400 μJ, a periodic porous metal surface was gen-erated. Measurement of X-ray diffraction showed that the grains on the sample surface were refined through femtosecond laser ablation processes, but the crystal structures still kept their original states. Analysis by X-ray photoelectron spectroscopy revealed that Ni/Ti on the sample surface was changed with an evident oxidization of titanium element under different laser energies. This investigation pro-vides a new approach to improve the biocompatibility of NiTi-based implant devices. | LIANG ChunYong YANG Yang WANG HongShui YANG JianJun YANG XianJin | 2008 | Chinese Science Bulletin2008,53,5: | 11 |
| 2 | 显示文摘 | Wang Hongshui | 2005 | J Materials Chemistry and Physics2005,94,: | 1 |
| 3 | Practice on data warehousing technologies in Baosteel显示文摘 | Ji Xiao Wang Hongshui Bao Yubin el al | 2002 | Computer Sciences Supplement B2002,29,8: | 1 |
| 4 | Preparation of silver nanoparticles by chemical reduction method 显示文摘 | WANG Hongshui QIAO Xueliang CHEN Jianguo DING Shiyuan | 2005 | Colloids and Surfaces A2005,256,: | 1 |
| 5 | Preparation of silver nanoparticles by ehemical reduction method显示文摘 | Hongshui Wang Xueliang Qiao Jianguo Chen | 2005 | Colloids and Surfaces A : Physicochem Eng Aspects2005,256,: | 1 |
| 6 | Mechanisms of PVP in the preparation of silver nanop- articles显示文摘 | Wang Hongshui Qian Xueliang Chen Jianguo | 2005 | Materials Chemistry and Physics2005,94,2: | 1 |
| 7 | Function-oriented design:A novel strategy for advanced biomedical materials显示文摘It has always been a dream to construct tissues and even organs for transplantation to replace those with defects caused by diseases or injuries.Tissue engineering is another milestone in the developmental history of life science after cellular and molecular bioscience.Nevertheless,despite decades of rapid de-velopment,tissue-engineered biomaterials have not been widely used clinically.Biomaterials constructed by physical and chemical methods have lots of difficulty in precisely mimicking the macroscopic and mi-croscopic structures of human tissues.The ultimate way to build organoid tissue for regeneration is to enable the cells to take the initiative and build suitable functions.Based on the thoughts of tissue engi-neering,organoid technology holds great potential as a research tool for a wide range of fields,including developmental biology,disease pathology,cell biology,precision medicine,and drug toxicity and efficacy testing.This technology also holds tremendous potential for regenerative medicine,as organoids present the possibility for autologous and allogeneic cell therapy through the replacement of damaged or dis-eased tissues with organoid-propagated tissue or stem cell populations.In this review work,we briefly outlook the development history of organoid technology,summarize the current bottlenecks and the un-derlying reasons,and propose the unified term“function-oriented design in tissue engineering”,a new topic that may provide a solution to overcome these bottlenecks. | Zhiyu Zhou Wentao Wang Jianmin Wang Hongshui Wang Yi Xia Wei Zhang Yuxiao Lai Xiao Lin Yongcan Huang Xuenong Zou Martin J.Stoddart Zhen Li Wei Tian Shaoyu Liu Xinbao Wu Manman Gao Junhong Li Lei Yang Dafu Chen | 2023 | Journal of Materials Science & Technology2023,,14: | 0 |
| 8 | Effects of femtosecond laser ablation on the surface morphology and microstructure of a bulk TiCuPdZr glass alloy显示文摘The effects of femtosecond laser ablation on the surface characteristics and microstructure of a bulk TiCuPdZr glass alloy were investigated. The heat influence zone of femtosecond laser ablated with a laser energy of 100 μJ exhibits a ripple-like feather, while a porous structure appears on the surface of the specimen ablated by a 200 μJ femtosecond laser. The contents of Ti, Zr, and Pd on the ablated surface decrease and that of Cu increases with increasing laser energy. The crystallization process occurs on the glass alloy specimens during femtosecond laser ablation, and the crystallinity of a 100 μJ femtosecond laser-ablated specimen is greater than that of a 200 μJ femtosecond laser-ablated one. | WANG Hongshui LIANG Chunyong CHEN Xueguang WANG Lei YANG Yang YANG Jianjun ZHU Shengli LI Changyi | 2009 | Rare Metals2009,28,3: | 0 |
| 9 | Brushless Excitation System with Microcomputerbased Regulator for Turbogenerators显示文摘A new brushless excitation system with the modified microcomputer-based regulator developed by NARI was put into operation recently on a 300 MW #4 generator, Hanchuan plant, Hubei province. The hardware and software implementation of the regulator is briefly described in the paper. The onsite smooth operation of the generator with this excitation system proves that the system is quite | Liu,Weiqun Lu,Hongshui Wang,Zhiming Chen,Xianming( Nanjing Automation Research Institute) | 1998 | Electricity1998,,4: | 0 |