林昌健
主要研究方向:1)现代电化学研究方法,2)金属钝性及表面技术,3)复杂体系的材料腐蚀与防护,4)生物材料及生物表面,5)纳米电化学等。
个性化签名
- 姓名:林昌健
- 目前身份:
- 担任导师情况:
- 学位:
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学术头衔:
博士生导师, 国家杰出青年科学基金获得者
- 职称:-
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学科领域:
物理化学
- 研究兴趣:主要研究方向:1)现代电化学研究方法,2)金属钝性及表面技术,3)复杂体系的材料腐蚀与防护,4)生物材料及生物表面,5)纳米电化学等。
林昌健,博士、教授、博士生导师、国家杰出青年科学基金获得者。1985年7月在厦门大学获博士学位。1987年12月至1990年10月留美博士后。1987年2月晋升为厦门大学副教授,1991年12月提拔为厦门大学教授,2006年聘为厦门大学特聘教授。曾于为美国(1994-1995, 1999,2002)、加拿大(1996)、香港(1998)等地访问教授。现任厦门大学理工科学术委员,国家自然科学基金委评审专家、教育部科技委学部委员,亚太腐蚀控制联盟理事,中国腐蚀与防护学会常务理事,全国腐蚀电化学及研究方法专业委员会副主任委员,厦门腐蚀工程学会理事长,金属腐蚀与防护国家重点实验室学术委员和兼职研究员,海洋腐蚀与防护国防重点实验室学术委员和兼职研究员,《中国腐蚀与防护学报》、《腐蚀科学与防护技术》、《电化学》、《表面技术》等学报编委。历任教育部教学指导委员会委员,厦门大学物理化学研究所副所长,厦门大学材料科学与工程系首任主任,厦门大学化学化工学院副院长,厦门大学科研处处长,第46届国际电化学会议秘书长,首届海峡两岸材料腐蚀与防护研讨会主席,第8、9届国际钝化会议国家代表等。
主要研究方向: 1)现代电化学研究方法,2)金属钝性及表面技术,3)复杂体系的材料腐蚀与防护,4)生物材料及生物表面,5)纳米电化学等。
主要科研成果:已主持国家自然科学基金、国家863、国家973预研及福建省重大项目等科研课题40余项。在微区电化学研究、腐蚀测试方法、不锈钢表面技术及生物材料电化学研究方面取得重要进展。已获得国家教委科技进步奖一等奖(1987)、国家教委科技进步二等奖(1988)、厦门市政府科技进步奖一等奖(1995)、装备部军队科技进步奖二等奖(2002)、教育部提名国家奖技术发明二等奖(2003)、福建省政府科技进步奖二等奖(2004)等科技奖项。已发表学术论文300余篇,申请国家发明专利28项,合作编著5本。培养博士和硕士研究生60余人。获国家教委,国务院学位委员会授予“作出突出贡献的中国博士学位获得者”荣誉称号。
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主页访问
1765
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关注数
0
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成果阅读
458
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成果数
7
林昌健, H.B. Hu a, C.J. Lin a, *, R. Hua, Y. Leng b
Materials Science and Engineering C 20(2002)209-214,-0001,():
-1年11月30日
A novel electrochemical co-deposition approach was developed to prepare hybrid bioceramic coating of hydroxyapatite (HA)/poly(vinyl acetate) on the surface of Ti-6Al-4V alloy. The aim is to improve the adhesion between the HA coating and the metal substrate. Surface characterization showed that the composition of inorganic phase in the composite bioceramic coatings was mainly HA and the content of organic phase was more than 4% (W/W). Significant surface morphology changes were observed. The shear-testing experiments indicated that the bonding strength of the hybrid coating to metal substrate was increased by as much as 3MPa.
Hybrid bioceramic, HA/, poly(, vinyl acetate), , Ti-6Al-4V, Electrochemical deposition
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【期刊论文】A study on the deformation of porous nickel oxide cathode materials in MCFC
林昌健, Li-Jiang Chen a, Chang-Jian Lin a, *, Xuan Cheng a, Zu-De Feng b
Solid State Ionics 148(2002)539-544,-0001,():
-1年11月30日
A home-made LVDT displacement-measuring system was developed and applied to study the process of deformation on NiO during early stage of molten carbonate fuel cell (MCFC) operation. A series of in situ deformation tests was performed at a normal temperature (923K) with porous Ni and NiO plaques under the atmospheres and load conditions in the presence of carbonate electrolyte. The results indicated that the most significant deformation took place when Ni plaque underwent both in situ oxidized and lithiated processes under a load condition, in particular, the deformation of Ni plaque occurred more severely at the beginning of processes.
MCFC, NiO cathode, Carbonates, Loading, Deformation
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【期刊论文】In-situ Raman spectroscopic studies on the oxide species in molten Li/K2CO3
林昌健, Li-Jiang Chen a, Xuan Cheng a, Chang-Jian Lin a, *, , Chao-Ming Huang b
Electrochimica Acta 47(2002)1475-1480,-0001,():
-1年11月30日
Many concerns have been raised about the mechanism of cathode reaction in molten carbonate fuel cell (MCFC). The chemical behavior of oxide species at cathode in molten carbonate is a key for understanding the process of cathode reactions. In this paper, the variety and role of the oxide species in both bulk and thin-film of basic molten carbonates were investigated by using a novel in-situ Raman spectroscopy. The results indicated that the dominant oxide species under basic conditions was peroxide ion, and it was possible to transform into the oxygen of crystalline lattice during the lithium-doped process. It was demonstrated that in-situ Raman spectroscopic technique was a promising tool to elucidate the mechanism of electrode reaction in molecular level in the MCFC condition.
MCFC, In-situ Raman, Li/, K carbonate, NiO cathode, Oxide species
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林昌健, Fei Chen, Zhou-Cheng Wang, Chang-Jian Lin*
Materials Letters 57(2002)858-861,-0001,():
-1年11月30日
Natural bone is actually an inorganic/organic composite mainly made up of nano-structure hydroxyapatite (Ca10(PO4)6(OH)2, HAp) and collagen fibers. It is of most importance to synthesize nano-composites of inorganic/organic in order to have good biocompatibility, high bioactivity and great bonding properties. In this work, HAp nano-particle and HAp/chitosan (CTS) nanocomposite with a homogeneous microstructure were prepared and characterized. It is proposed that the nano-structure of hydroxyapatite/chitosan composite will have the best biomedical properties in the biomaterials applications.
Hydroxyapatite, Chitosan, Nano-sized, Particles, Fibers, Composite
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林昌健, Minhua Shao, Yan Fu, Ronggang Hu, Changjian Lin*
Materials Science and Engineering A344(2003)323-327,-0001,():
-1年11月30日
Micropitting corrosion of aluminum alloy 2024-T3 was investigated by using scanning microreference electrode technique combined with scanning electron microscopy and X-ray energy dispersive spectroscopy. It was found that the micropitting initiated immediately after the exposure of Al 2024/T3 to NaCl solution at open-circuit potential. Some corrosion active nuclei developed with time while others disappeared. Most of the micropits were found to be associated with the second phase particles, specially the S phase particles (Al2CuMg). Three types of corrosion behavior of Al2CuMg were discussed.
Al 2024 alloy, Localized corrosion, Mechanism, Scanning microreference electrode technique
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【期刊论文】Study on a hydrophobic nano-TiO2 coating and its properties for corrosion protection of metals
林昌健, G.X. Shen a, Y.C. Chena, L. Lina, C.J. Lin a, ∗, D. Scantlebury b
Electrochimica Acta 50(2005)5083-5089,-0001,():
-1年11月30日
A uniform TiO2 nanoparticle film has been coated on the surface of 316L stainless steel by using solgel and dip-coating technology. A hydrothermal post-treatment method has been developed to eliminate the crack defects in the coatings, and to improve the structure and property for the coating. A self-assembly of fluoroalkylsiane (FAS-13) has been conducted to enhance the surface hydrophobic property of the nano-TiO2 coatings. The distribution of particle sizes of TiO2 sol has been analyzed by ζ-potential analysis, and the surface morphology and structure have been characterized by contract angle, XRD, and SEM measurements. The results indicate that the surface of coatings is uniform and dense, with approximately 375nm thickness. The diameter of particles of TiO2 anatase is in the range of 15-18nm. The contact angle of the super-hydrophobic surface is 150±1°. It shows, from the electrochemical tests, that the super-hydrophobic coatings on 316L stainless steel exhibit an excellent corrosion resistance in chloride containing solution at the room temperature.
Hydrophobic coatings nano-TiO2, 316L stainless steel, Corrosion resistance
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【期刊论文】Optical and electrical characterization of TiO2 nanotube arrays on titanium substrate
林昌健, Y.K. Lai a, L. Sun a, C. Chen b, C.G. Nie a, J. Zuo a, C.J. Lin a, *
Applied Surface Science 252(2005)1101-1106,-0001,():
-1年11月30日
nonlinear, asymmetric I-V characterization, which can be explained that there exists an n-type semiconductor/metal Schottky barrier diode between TN arrays and titanium substrate interface. The absorption edges shift towards shorter wavelengths with the decrease of the anodizing voltages, which is attributed to the quantum size effects. At room temperature, a novel wide PL band consisting of four overlapped peaks was observed in the photoluminescence (PL) measurements of the TN arrays. Such peaks were proposed to be resulted from the direct transition X1→X2/X1, indirect transition G1→X2/X1, self-trapped excitons and oxygen vacancies, respectively.
TiO2 nanotube arrays, Schottky barrier diode, Photoluminescence, Optical and electrical characterization
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