| 基 本 信 息 | ||
![]() | 姓名:吴松竹 Shochiku KURE 性别:女 党派:无 职称:教授/博导、硕导 地址:材料楼A楼340 电子邮箱:101014025@seu.edu.cn | 研究方向: 1.汽车零部件与电气零部件的功能性表面处理 2. 导电/传热用的石墨烯制作和石墨烯系列薄膜材料制作 3. 各种电池(锂电池,燃料电池,制氢储氢,光催化)材料 4. 基于各种表面纳米加工技术制备功能性纳米结构体 |
| 个 人 简 介 | ||
简 介 国家特聘专家、东南大学首席教授、博士生导师。1988年获中国东北工学院(现东北大学)化学系硕士学位,2000年获日本北海道大学博士学位,曾先后任职于关西新技术研究所(KRI)、日本国立材料研究所(NIMS)、电力中央研究所、三菱伸铜株式会社、岩手大学等单位,长期从事材料研发与应用研究工作。回国前担任名古屋工业大学物理工学系教授,并担任日本表面技术协会理事,为日本金属学会、铜合金学会、轻金属学会、电化学学会会员。入选国家高层次人才计划后,回国任东南大学首席教授。长期致力于纳米功能材料及表面功能化技术的研究,在材料表面改性及纳米结构构筑方面积累了深厚的学术与实践经验。研究覆盖多种材料体系,包括铜、铝、钛、镁、铁合金、锆、钽,以及玻璃、陶瓷、碳纤维、碳纳米管和石墨烯等,致力于推动功能化表面处理技术在汽车零部件、电力电子器件、航空航天构件、锂离子电池、燃料电池、环境净化与绿色能源等领域的应用。迄今以第一作者或通讯作者身份在知名国际期刊发表SCI论文120篇,获授权发明专利22项。曾多次获得日本各类学术团体及研究基金会颁发的科研奖项。 承担科研项目 1. 高性能锂离子电池负极用纳米多孔Ti/Sn, Mo系复合膜的混合电镀制备研究 2. 镍含量(铁)合金表面处理性能影响因素解析 3. 基于石墨烯的导电性表面处理研究 4. 钛合金基超耐热・超硬质镀膜(Ni-W-Mo/TiO₂-TiN)的制备与性能评价 5. 银镀层接触电阻控制的相关研发 6. 高树脂密着性表面处理评价研究(Ni镀、Ag-石墨烯镀) 7. 新一代汽车端子与连接器用高导电・耐磨损银-石墨烯复合镀层的制备 8. 润滑处理银镀接点的摩擦磨损与导电性能研究 9. 汽车发动机部件用Al-Si铸造合金表面高功能化(隔热性、润滑性、耐磨损性) 10. 碳纳米管基材料(纤维、纱线)的表面改性用于智能能量采集 11. 通过混合电镀在Cu与Al板上一步成型大容量锂离子电池电极材料 12. 面向新一代高性能汽车端子与大电流快速充电连接器的Cu合金基高耐磨损Ag/Ag₃Sn@Nano-C系多层镀层开发 13. 高安全性锂离子电池负极用纳米多孔TiO₂-TiN复合阳极氧化膜与LiTiPO₄固体电解质的纳米叠层构建 14. 轻金属(Al、Ti、Mg)环境协调型表面处理技术的新开发 15. 通过纳米碳表面改性制备高性能能量收集材料 16. 通过电解蚀刻/阳极氧化/水热法在Al箔上制备纳米材料及其作为无粘结剂锂离子电池正极材料的性能评价 17. 汽车发动机部件用Al-Si合金的高隔热性・高强度多孔氧化铝超厚膜制备技术开发 18. 提高银镀层耐磨损性及磨损机理解析的相关研究 19. 面向新一代高容量锂离子电池负极的Cu表面大比表面积纳米多孔型Sn-TiO₂混合电镀制备 20. 面向新一代高耐久性LED反射材料及大电流快速充电连接器的Cu合金基纳米… 21. Al-Si系合金阳极氧化膜厚膜化与多孔化相关研究 22. 机械表面改性法与电化学方法相结合实现金属表面改性 23. 在铝基板上制备Pd系合金纳米管・纳米多孔结构体以实现高效氢… 24. 通过智能阳极氧化与纳米电镀相结合制备新型功能性纳米结构体 25. 用于表面贴装高亮度・高功率LED反射材料的高耐久性纳米复合层状Sn/Ag₃Sn多层镀层开发 26. 在铝基板上制备Pd系合金纳米多孔结构体用于高效DEFC电极催化剂・氢催化剂材料开发 27. 高安全性锂离子电池负极用Ti板基纳米多孔TiO₂-TiN阳极氧化复合膜的制备 28. Al-Si系合金阳极氧化膜厚膜化与多孔化相关研究 29. 利用低纯度Al及Al合金制备三维多孔氧化铝纳米结构体 30. 汽车端子与连接器用新一代高可靠性超耐热Sn/Ag多层镀层的制备
欢迎加盟 欢迎材料科学与工程、应用物理、化工、材料模拟等专业背景的同学,以及有志于材料研究与开发的基础学科(如物理、化学等)背景的学生报考硕士生、博士生。 经过几年的学术训练与熏陶,研究生将具有独立承担科研课题的能力,具备用英语交流与写作的能力,成为具有国际化视野的人才。毕业后择业面广,包括高等院校教师(博士),科研院所研究人员(博士为主),制造业、能源与环境关联行业等。并有机会能够去往日本、美国以及欧洲等著名研究机构或大学进行访问学习。 欢迎以上专业的博士毕业生以博士后的身份加盟课题组。 欢迎海内外年轻学者加盟,申报各种人才项目。 主要学术论文 1. Liu J, Katsuta S, Matsubara T, Wang P, Lin E, Hihara T, Kure-Chu SZ. Al-Si-Cu-Ni-Mg鋳造合金上への自動車エンジン部品用自己潤滑性複合皮膜の作製及び熱処理因子の影響. 表面技術. 2024 Dec;75(12):1-7. 2. Xia H, Zhang W, Miao C, Chen H, Yi C, Shang Y, Shui T, Cao X, Liu J, Kure-Chu SZ, Liang F, Moloto N, Xiong Y, Hihara T, Lu W, Sun Z. Ultra-thin amphiphilic hydrogel electrolyte for flexible zinc-ion paper batteries. Energy Environ Sci. 2024 Sep;17(18):6507-6520. 3. Cao M, Pan L, Wang Y, Sui X, Liu XX, Feng S, Yuan P, Gao M, Liu J, Kure-Chu SZ, Hihara T, Sun Z. Mechanical-durable and humidity-resistant dry-processed halide solid-state electrolyte films for all-solid-state battery. Chin Chem Lett. 2024 Aug. 4. Hirayama G, Fujimura M, Kamiya T, Liu J, Kure-Chu SZ. 電気接続部品用のAg-Graphene系複合めっきの形成及び諸特性に及ぼすAg+添加と銅基材の影響. 銅と銅合金. 2024 Aug;(1). 5. Li X, Lin E, Wang K, Ke R, Kure-Chu SZ, Xiao X. Fabrication and Characterization of Hydroxyapatite Coatings on Anodized Magnesium Alloys by Electrochemical and Chemical Methods Intended for Biodegradable Implants. Ceram Int. 2024 Jul. 6. Liu J, Kure-Chu SZ, Katsuta S, Zhang M, Fang S, Matsubara T, Sakurai Y, Hihara T, Baughman RH, Yashiro H, Pan L, Zhang W, Sun Z. Tenfold Enhancement of Wear Resistance by Electrosynthesis of a Nanostructured Self-Lubricating Al2O3/Sn(S)─MoS2 Composite Film on Al─Si─Cu Casting Alloys. Small Struct. 2024 Jul;240172. 7. Wang Y, Yuan P, Liu XX, Feng S, Cao M, Ding J, Liu J, Kure-Chu SZ, Hihara T, Pan L, Sun Z. Sacrificial NH4HCO3 inhibits fluoropolymer/garnet interfacial reactions towards 1mS cm−1 and 5V-level composite solid electrolyte. Adv Funct Mater. 2024 Jun;2405060. 8. Chen X, Kure-Chu SZ, Liu J, Matsubara T, Sakurai Y, Hihara T, Lee SH, Osada M, Okido M. Tuning the structures and conductivity of nanoporous TiO2–TiO films through anodizing electrolytes as LIB anodes with ultra-high capacity and excellent cycling performance. J Energy Storage. 2023 Oct;73:109231. 9. Liu J, Kure-Chu SZ, Sakurai Y, Chen X, Osada M. Understanding the fast formation mechanism of hard nanoporous alumina films on aluminum in acidic solutions containing nitric acid. Mater Chem Phys. 2023 Aug;128271. 10. Wu SZ, Takei Y, Hirayama G, Liu J, Tominaga S, Asai M. 電気接続部品向け高導電性Ag–Graphene複合めっきの実用技術および特性評価. 銅と銅合金. 2023 Aug;(1). 11. Kamiya T, Takei Y, Liu J, Kure-Chu SZ. 車載端子用の銅合金上への高導電性Sn–Graphene(Ag)複合めっきの創製と特性評価. 銅と銅合金. 2023 Aug;(1). 12. Lin E, Li X, Kure-Chu SZ, Li X, Xiao X. Effect of Electrical Parameters on the Microstructure and Corrosion Resistance of Anodized Film of Mg-1Zn-1Gd Alloy Based on Orthogonal Experiment Method. J Mater Eng Perform. 2023 Apr. 13. Chen X, Qin S, Denisov N, Kure-Chu SZ, Schmuki P. Pt-single atom decorated TiO2: Tuning anodic TiO2 nanotube structure and geometry toward a high-performance photocatalytic H2 production. Electrochim Acta. 2023 Feb;466:142081. 14. Wang S, Li X, Kure-Chu SZ, Deng B, Li X, Xiao X. Enhanced rollability of Mg alloys by directly activated {1012} twinning during asymmetric rolling: Experiments and finite element analysis. Mater Charact. 2022 Dec. 15. Sato H, Takei Y, Kamiya T, Kure-Chu SZ. 次世代車載端子向けの銅合金上への高導電性Sn-Graphene複合めっき膜の創製及び電気接触抵抗安定性. 銅と銅合金. 2022 Aug;(1). 16. Takei Y, Hirayama G, Sato H, Kure-Chu SZ. 次世代自動車端子向けの高導電性・耐摩耗性Ag-Graphene複合めっき膜の創製. 銅と銅合金. 2022 Aug;(1). 17. Chen X, Kure-Chu SZ, Matsubara T, Hihara T, Yashiro H, Okido M. Fabrication and Electrochemical Performance of TiO2–TiN/Sn–SnO2 Composite Films on Ti for LIB Anodes with High Capacity and Excellent Conductivity. Adv Mater Interfaces. 2022 Jul;9(19):2200956. 18. Kure-Chu SZ, Chen X, Kaai H, Ye Y, Matsubara T, Moriguchi Y, Hihara T, Yashiro H. Direct fabrication of SnO2- and MoO3-modified nanoporous TiO2–TiO–TiN composite films by hybrid anodization for high-safety lithium-ion battery anodes. Electrochim Acta. 2021 May;387:138549. 19. Geng Z, Li X, Zhang Y, Lin E, Kure-Chu S, Li X, Xiao X. Corrosion resistance and degradation behavior of anodized Mg-Gd alloys: A comparative study. Surf Coat Tech. 2021 Apr;412:127042. 20. Lee SH, Yashiro H, Kure-Chu S. Effect of Silane Coupling Treatment on the Joining and Sealing Performance between Polymer and Anodized Aluminum Alloy. Korean J Mater Res. 2021 Mar;31(3):122-131. 21. Lee SH, Yashiro H, Kure-Chu S. Improvement of joining strength between aluminum alloy and polymer by two–step anodization. Korean J Mater Res. 2020 Aug;53(4):144-150. 22. Sakaida S, Kure-Chu S*, Sato N, Hihara T, Yashiro H. 自動車端子用の銅合金上へのAg@Nano-Cハイブリッドめっきの諸特性に及ぼす影響因子. 銅と銅合金. 2020 Aug;59(1):270-275. 23. Lee SH, Yashiro H, Aoki K, Nanao H, Kure-Chu S*. Physical Properties of Oxide Films on Mg Alloy Formed by Plasma Anodization. Korean J Mater Res. 2019 Nov;29(11):657-663. 24. Ye Y, Kure-Chu S, Sun Z, Matsubara T, Li Q, Hihara T. Controlled Fabrication of Nanoporous Anodic Titania Films on Ti-6Al-4V Alloy for Enhanced Self-Lubricating Properties by Combining Spark Anodization and Electropulse-Assisted Ultrasonic Rolling. J Mater Eng Perform. 2019 Aug;26(1):1-11. 25. Sakaida S, Kure-Chu S*, Ishihara H, Hihara T, Yashiro H. 自動車端子向けの銅合金へのAg@Nano-C複合めっきの創製および特性評価. 銅と銅合金. 2019 Aug;58(1):171-176. 26. Lee SH, Yashiro H, Kure-Chu S*. Electrolyte Temperature Dependence on the Properties of Plasma Anodized Oxide Films Formed on AZ91D Magnesium Alloy. Korean J Mater Res. 2019 May;29(5):288-296. 27. Lee SH, Yashiro H, Kure-Chu S*. Comparative Evaluation of Surface Treatment Effect of AD91D Alloy Material. Int J Adv Sci Res Eng. 2019 May;5(5):1-7. 28. Li X, Li X, Ye Y, Zhang R, Kure-Chu S, Tang G. Deformation mechanisms and recrystallization behavior of Mg-3Al-1Zn and Mg-1Gd alloys deformed by electroplastic-asymmetric rolling. Mater Sci Eng A. 2019 Jan;742:722-733. 29. Lee SH, Yashiro H, Kure-Chu S. Effect of Power Mode of Plasma Anodization on the Properties of formed Oxide Films on AZ91D Magnesium Alloy. Korean J Mater Res. 2018 Oct;28(10):544-550. 30. Ye Y, Kure-Chu S*, Sun Z, Matsubara T, Tang G, Hihara T, Okido M, Yashiro H. Self-lubricated nanoporous TiO2-TiN films fabricated on nanocrystalline layer of titanium with enhanced tribological properties. Surf Coat Tech. 2018 Aug;351:162-170. 31. Kure-Chu S*, Kawakami N, Ye Y, Yashiro H, Furukawa K, Saito Y. 銅合金板上銀めっき膜の高荷重環境下での摩耗・摩擦挙動およびメカニズム解明. 銅と銅合金. 2018 Aug;57(1):334-339. 32. Li X, Kure-Chu S*, Ogasawara T, Yashiro H, Wang H, Xu Z, Li X, Song G, Tang G. Fabrication of a Gradient Nano-/Micro-structured Surface Layer on an Al–Si Casting Alloy by Means of Ultrasonic–Electropulsing Coupling Rolling Process. Acta Metall Sin. 2018 Apr;31(12):1258-1264. 33. Ye Y, Kure-Chu S*, Sun Z, Li X, Wang H, Tang G. Nanocrystallization and enhanced surface mechanical properties of commercial pure titanium by electropulsing-assisted ultrasonic surface rolling. Mater Design. 2018 Apr;149:214-227. 34. Kure-Chu S*, Sakuyama H, Suzuki E, Yashiro H, Sasaki K, Segawa H, Hihara T. Tailoring of Morphology and Crystalline Structure of Nanoporous TiO2–TiO–TiN Composite Films for Enhanced Capacity as Anode Materials of Lithium-Ion Batteries. J Electrochem Soc. 2018 Feb;165(3):A477-A486. 35. Kure-Chu S*, Kawakami N, Ye Y, Yashiro H, Furukawa K, Saito Y, Sakata T. 銅合金板上銀めっき膜の微摺動摩耗挙動に対する荷重の影響. IEICE Tech Rep. 2018 Feb;54:7-12. 36. Lee SH, Yashiro H, Kure-Chu S. Fabrication of Plasma Electrolytic Oxidation Coatings. J Korean Inst Surf Eng. 2017 Dec;50(6):1-7. 37. Li X, Li X, Kure-Chu S, Tang G. A Comparative Study on the Static Recrystallization Behavior of Cold-Rolled Mg-3Al-1Zn Alloy Stimulated by Electropulse Treatment and Conventional Heat Treatment. Metall Mater Trans A. 2017 Dec;50(2):1-15. 38. Sawada S, Kure-Chu S, Nakagawa R, Ogasawara T, Yashiro H, Saitoh Y. Effect of Hardness on Wear and Abrasion Resistance of Silver Plating on Copper Alloy. IEICE T Electron. 2017 Sep;E100-V(9):695-701. 39. Kure-Chu S, Ogasawara T, Nakagawa R, Oda N, Yashiro H, Sawada S, Saitoh Y, Furukawa K. 銅合金板上への銀めっき膜の耐摩耗性に及ぼす硬さの影響およびそのメカニズム解明. 銅と銅合金. 2017 Sep;56(1):247-252. 40. Sawada S, Kure-Chu S, Nakagawa R, Ogasawara T, Yashiro H, Saitoh Y. 銅合金上銀めっきの摩耗・摩擦に対する硬度の影響 (機構デバイス). IEICE Tech Rep. 2017 Feb;116(459):19-24. 41. Yousefi E, Dolati A, Imanieh I, Yashiro H, Kure-Chu SZ. Kinetic study and growth behavior of template-based electrodeposited platinum nanotubes controlled by overpotential. Mater Chem Phys. 2017 Feb;187:141-148. 42. Segawa H, Naka T, Wada K, Kure-Chu SZ. Synthesis of laminated composites of alumina and nickel oxides by AC anodization and electrodeposition. Surf Coat Tech. 2017 Jan;310:93-97. 43. Kure-Chu S*, Nakagawa R, Ogasawara T, Yashiro H, Sawada S, Saitoh Y. Effect of Hardness on Wear and Abrasion Resistance of Silver Plating on Copper Alloy. IEICE Tech Rep EMD2016-57. 2016 Nov:41-46. 44. Kure-Chu SZ, Nakagawa R, Ogasawara T, Yashiro H, Sawada S, Shimizu A, Saitoh Y. Sliding Friction, Wear and Tribofilm Formation of Silver Films Electro-plated on Copper Alloy Sheets. Proc 62nd IEEE Holm Conf Electr Contacts. 2016 Oct:135-140. 45. Kure-Chu SZ, Sakuyama H, Saito S, Miura S, Yashiro H, Hirahara H, Segawa H, Wada K, Inoue S. Controllable Fabrication of Multi-tiered Nanoporous Anodic TiO2-TiN Composite Films as High-Performance Anode Materials for Lithium-Ion Batteries. Electrochim Acta. 2016 Sep;212:481-491. 46. Kure-Chu SZ, Ogasawara T, Ye R, Yashiro H, Sasaki K. Thermal Stability and Sulfidizing Resistance of High Reflective Multilayered Sn/Ag3Sn and Sn/Ag Films Electrodeposited on Cu Alloy Sheets. Electrochim Acta. 2016 Sep;212:380-389. 47. Kure-Chu S, Ogasawara T, Nakagawa R, Yashiro H. Cu板上へのナノ積層型Sn/Ag₃Sn(/Ag)多層めっきの微細構造およびその特性評価. 銅と銅合金. 2016 Aug;55(1):69-73. 48. Kure-Chu S, Miura S, Yashiro H. 大容量Li二次電池負極に向けたCu板上への鱗片状Sn-SnO₂-TiO₂/Cu₆Sn₅ハイブリッドめっきの創製. 銅と銅合金. 2016 Aug;55(1):64-68. 49. Zhang B, Wang H, Zhang S, Song G, Kure-Chu SZ, Wang X, Kuang J, Tang G. Effect of electropulsing-ultrasonic surface treatment on the surface properties and the corrosion behavior of 45 steel. J Mater Res. 2016 Jul;31(14):2114-2124. 50. Ye Y, Kuang J, Kure-Chu SZ, Song G, Sun Z, Tang G. Improvement of microstructure and surface behaviors of welded S50C steel components under electropulsing assisted ultrasonic surface modification. J Mater Res. 2016 Jul;31(14):2125-2135. 51. Kure-Chu SZ, Osaka K, Yashiro H, Wada K, Segawa H, Inoue S. Facile Fabrication of Ordered Multi-Tiered Hierarchical Porous Alumina Nanostructures with Multiple and Fractional Ratios of Pore Interval toward Multifunctional Nanomaterials. ECS J Solid State Sci Technol. 2016 May;5(5):P285-P292. 52. Kure-Chu SZ*, Satoh A, Miura S, Mizuhashi M, Yashiro H. Controllable Fabrication of Nanostructured Sn-TiO2 Composite Films on Cu Sheets as Anode Materials for Lithium-Ion Battery. ECS Trans. 2015 Sep;64(29):68-80. 53. Kure-Chu SZ*, Satoh A, Miura S, Mizuhashi M, Yashiro H. Nanoporous Sn-SnO2-TiO2 Composite Films Electrodeposited on Cu Sheets as Anode Materials for Lithium-Ion Batteries. J Electrochem Soc. 2015 Jul;162(7):D305-D311. 54. Kure-Chu SZ*, Osaka K, Yashiro H, Segawa H, Wada K, Inoue S. Controllable Fabrication of Networked Three-Dimensional Nanoporous Anodic Alumina Films on Low-Purity Al Materials. J Electrochem Soc. 2015 Jan;162(1):C24-C34. 55. Kure-Chu SZ, Ogasawara T, Yashiro H, Ye R, Hhosokai T, Uchidate M, Suziki E, Naito T. Multilayered Sn/Ag3Sn Electroplating on Cu Alloys for High Reliable Electronic/Electric Materials. 2014 Int Conf Electron Packag (ICEP). 2014 Dec:168-172. 56. Kure-Chu S, Satoh A, Yashiro H. 銅板上へのSn-TiO₂ハイブリッドめっきの作製およびその構造特性. 銅と銅合金. 2014 Aug;53(1):261-265. 57. Kure-Chu SZ*, Yashiro H. Corrosion Resistance of Multilayered Sn/Ag3Sn Films Electroplated on Cu Alloys for Highly Reliable Automotive Connectors. J Electrochem Soc. 2014 Jul;161(10):C441-C449. 58. Kure-Chu SZ. スマートアノード酸化とナノめっきによる多様な機能性ナノ構造体の創製. 軽金属. 2014 Jun;64(6):249-258. 59. Kure-Chu SZ, Ogasawara T, Yashiro H, Ye R, Hosokai T, Uchidate M, Suziki E, Naito T. Multilayered Sn/Ag3Sn Electroplating on Cu Alloys for High Reliable Electronic/Electric Materials. Proceedings of International Conference on Electronics Packaging (ICEP-2014). 2014 Apr: 3-4. 60. Chu SZ, Osaka K, Yashiro H, Segawa H, Wada K, Inoue S. Three-Dimensional Networked Nanoporous Anodic Alumina Films with Vertical and Transverse Pores Fabricated on Al with Different Purity. CORROSION POSTERS (GENERAL) - 224TH ECS MEETING. 2014 Jan; 58(38): 61-70. 61. Chu-Kure SZ, Yashiro H. Evaluation of Corrosion Resistance of Multilayered Sn/Ag3Sn Electroplating on Cu Alloys. ECS Transactions. 2013 Mar; 58(41): 103-113. 62. Yashiro H, Yokozawa Y, Kure-Chu SZ, Kumagai M, Myung S, Katada Y. 硝酸塩溶液中でカソード処理されたステンレス鋼の表面特性とPEFCセパレータへの適用 (Surface Characteristics of Stainless Steel Cathodically Treated in Nitrate Solution and Its Application to PEFC Separators). Zairyo-to-Kankyo. 2013; 62(11): 439-442. 63. Segawa H, Kure-Chu SZ, Inoue S. 陽極酸化法によるナノ構造の制御と機能化 (Control and Functionalization of Nanostructures by Anodic Oxidation). マテリアルインテグレーション. 2012 Oct; 25(10): 32-37. 64. Chu SZ, Kumagai J, Tamagawa T, Aida M, Okita T. Cu合金へのSn/Ag多層めっきとAgめっきの耐熱性 (Heat Resistance of Sn/Ag Multilayered Plating and Ag Plating on Cu Alloys). 銅と銅合金. 2012 Sep; 51(1): 201-206. 65. Inoue S, Chu SZ, Wada K. An Approach to Nanoglasses through Anodic Oxidation of Sputtered Aluminum on Glass Surface. MRS Online Proceeding Library. 2011 Dec; 749: 749-757. 66. Chu SZ, Kumagai J, Okita T, Tamagawa T, Okada K, Nakaya K, Kato N. 銅合金へのSn/Ag多層めっきによる高温時接触抵抗安定化およびそのメカニズム (Stabilization of Contact Resistance at High Temperatures by Sn/Ag Multilayered Plating on Cu Alloys and Its Mechanism). 表面技術. 2011 Sep; 62(11): 27-35. 67. Chu SZ, Wada K, Inoue S, Segawa H. Direct Growth of Highly Ordered Crystalline Zirconia Nanowire Arrays with High Aspect Ratios on Glass by a Tailored Anodization. Journal of The Electrochemical Society. 2011; 158(5): C148-C157. 68. Chu SZ, Okita T, Sakurai K, Kumagai J. Sn/Ag多層めっきの耐微摺動摩耗性及びそのメカニズムについて (Micro-Oscillating Wear Resistance of Sn/Ag Multilayered Plating and Its Mechanism). 銅と銅合金. 2009 Aug; 48(1): 219-224. 69. Chu SZ, Kumagai J. 電気部品用Sn/Ag多層めっきの諸特性 (Properties of Sn/Ag Multilayered Plating for Electronic Components). 銅と銅合金. 2008 Aug; 47(1): 112-116. 70. Chu SZ, Kawamura H, Mori M. Ordered Integrated Arrays of Pd and Pt nanotubules on Al with Controllable Dimensions and Tailored Morphologies. Journal of The Electrochemical Society. 2008; 155(5): D414-D418. 71. Chu SZ, Kawamura H, Mori M. Fabrication and Characteristics of Pd Nanoparticles/Nanofilms on Ceramics toward Catalytic Electrodes. Electrochimica Acta. 2007 Nov; 53(1): 92-99. 72. Chu SZ, Wada K, Inoue S, Isogai M, Katsuta Y, Yasumori A. Large-Scale Fabrication of Ordered Nanoporous Alumina Films with Arbitrary Pore Intervals by Critical-Potential Anodization. Journal of The Electrochemical Society. 2006 Sep; 153(9): B384-B391. 73. Kawamura H, Chu SZ, Mori M, Hashimoto S, Uotani M. Electrochemical Study of Pd-coated Perovskite Anodes in Sulfur-based Hybrid Cycle. Proceedings of The 16th World Hydrogen Energy Conference 2006 (WHEC 2006). 2006 Sep: 2354-2361. 74. Inoue S, Todoroki S, Suehara S, Konishi T, Chu SZ, Wada K, Kikkojin T, Isogai M, Katsuta Y, Sakamoto T, Yasumori A. Advanced Approaches to Functional Glasses. Journal of Non-Crystalline Solids. 2006 Aug; 352(6-7): 632-645. 75. Kawamura H, Mori M, Chu SZ, Uotani M. Electrical Conductive Perovskite Anodes in Sulfur-based Hybrid Cycle. Proceedings of The 3rd Information Exchange Meeting on the Nuclear Production of Hydrogen (3rd HTTR Workshop). 2006 Aug: 365-397. 76. Chu SZ, Inoue S, Wada K, Hishita S. Fabrication of Self-Organized Titania Nanostructures on Glass by Combinational Anodizing Technology. ECS Transactions. 2006 Mar; 1: 79-90. 77. Chu SZ, Wada K, Inoue S, Isogai M, Yasumori A. Fabrication of Ideally Ordered Alumina Nanoporous Films and Integrated Alumina Nanotubule Arrays by High-Field Anodization. Advanced Materials. 2005 Sep; 17(17): 2115-2119. 78. Chu SZ, Wada K, Inoue S, Suzuki J. Fabrication and Photocatalytic Characteristics of Ordered Nanoporous X-doped (X = N, C, S, Ru, Te, Si) TiO2/Al2O3 Films on ITO/Glass. Langmuir. 2005 Sep; 21(17): 8035-8041. 79. Chu SZ, Inoue S, Wada K, Hishida S, Kurashima K. Self-Organized Nanoporous Anodic Titania Films and Ordered Quantum Titania Nanodots/Nanorods on Glass. Advanced Functional Materials. 2005 Aug; 15(8): 1343-1349. 80. Chu SZ, Inoue S, Wada K, Kurashima K. Fabrication of Integrated Arrays of Ultrahigh Density Magnetic Nanowires (Fe-Pt, Co-Pt, Ni-Pt alloys) on Glass by Anodization and Electrodeposition. Electrochimica Acta. 2005 May; 51(5): 820-826. 81. Chu SZ, Inoue S, Wada K, Hishida S, Kurashima K. A New Electrochemical Lithography- Fabrication of Versatile Self-Organized Titania Nanostructures on Glass by Combinatorial Anodization. Journal of The Electrochemical Society. 2005 Mar; 152(3): B116-B124. 82. Chu SZ, Inoue S, Wada K, Kanke Y, Kurashima K. Fabrication and Characterizations of Integrated Ultrahigh Density Fe-Pt Alloy Nanowire Arrays on Glass. Journal of The Electrochemical Society. 2005 Jan; 152(1): C42-C47. 83. Chu SZ, Inoue S, Wada K, Kurashima K. Fabrication and Structural Characteristics of Nano-crystalline Fe-Pt Thin Films and Fe-Pt Nanowire Arrays Embedded in Alumina Films on ITO/Glass. Journal of Physical Chemistry B. 2004 Sep; 108(18): 5582-5587. 84. Chu SZ, Inoue S, Wada K, Hishida S. Fabrication of TiO2-Ru(O2)/Al2O3 Composite Nanostructures on Glass by Al Anodization and Electrodeposition. Journal of The Electrochemical Society. 2004 Jan; 151(1): C38-C44. 85. Inoue S, Chu SZ, Wada K. An Approach to Nanoglasses through Anodic Oxidation of Sputtered Aluminum on Glass Surface. MRS Symposium-Proceedings. 2003 Dec: 397-403. 86. Inoue S, Chu SZ, Wada K, Kanke Y. Preparation of Fe-Pt Nanowires through Anodic Oxidation of Sputtered Aluminum on Glass Surface. Materials Research Society Symposium- Proceedings. 2003 Dec: 147-151. 87. Sakairi M, Kato Z, Chu SZ, Takahashi H, Abe Y, Katayama N. Local Removal of Thick Anodic Oxide Film on Aluminum with a Photon Rupture Technique and Local Metal Deposition. Electrochemistry. 2003 Nov; 71(11): 920-926. 88. Chu SZ, Wada K, Inoue S, Todoroki S. Fabrication and Characteristics of Nanostructures on Glass by Al Anodization and Electrodeposition. Electrochimica Acta. 2003 Oct; 48(20-22): 3147-3153. 89. Chu SZ, Wada K, Inoue S, Hishita S, Kurashima K. Fabrication and Structural Characteristics of Ordered TiO2-Ru(-RuO2) Nanorods in Porous Anodic Alumina Films on ITO/Glass Substrate. Journal of Physical Chemistry B. 2003 Aug; 107(37): 10180-10184. 90. Chu SZ, Wada K, Inoue S, Todoroki S. Fabrication of oxide nanostructures on glass by aluminum anodization and sol–gel process. Surface & Coatings Technology. 2003 Aug; 169-170: 190-194. 91. Inoue S, Chu SZ, Wada K, Li D, Haneda H. New roots to formation of nanostructures on glass surface through anodic oxidation of sputtered aluminum. Science and Technology of Advanced Materials. 2003 Jul; 4(4): 269-276. 92. Chu SZ, Inoue S, Wada K, Li D, Haneda H. Highly Porous (TiO2–SiO2–TeO2)/Al2O3/TiO2 Composite Nanostructures on Glass with Enhanced Photocatalysis Fabricated by Anodization and Sol-Gel Process. Journal of Physical Chemistry B. 2003 Jun; 107(27): 6586-6589. 93. Chu SZ, Inoue S, Wada K, Li D, Haneda H. Highly Porous TiO2/Al2O3 Composite Nanostructures on Glass by Anodization and Sol-Gel Process: Fabrication and Photocatalytic Characteristics. Journal of Materials Chemistry. 2003 Apr; 13(4): 866-870. 94. Chu SZ, Inoue S, Wada K. An Integrated Array of TiO2-SiO2-TeO2 Nanotubules on Glass: Fabrication and Structural Characteristics. Advanced Materials. 2002 Nov; 14(23): 1752-1756. 95. Chu SZ, Inoue KS, Wada K, Todoroki S, Takahashi YK, Hono K. Fabrication and Characteristics of Ordered Ni Nanostructures on Glass by Anodization and Direct Current Electrodeposition. Chemistry of Materials. 2002 Nov; 14(11): 4595-4602. 96. Chu SZ, Wada K, Inoue S, Todoroki S. Formation and Microstructures of Anodic Alumina Films from Aluminum Sputtered on Glass Substrate. Journal of The Electrochemical Society. 2002 Jul; 149(7): B321-B327. 97. Chu SZ, Wada K, Inoue S, Todoroki S. Synthesis and Characterization of Titania Nanostructures on Glass by Al Anodization and Sol-gel Process. Chemistry of Materials. 2002 Jan; 14(1): 266-272. 98. Kikuchi T, Chu SZ, Jonishi S, Sakairi M, Takahashi H. Local Surface Modification of Aluminum by Laser Irradiation. Electrochimica Acta. 2001 Mar; 47(1-2): 225-232. 99. Takahashi H, Sakairi M, Kure-Chu SZ, Watanabe K, Kikuchi T, Miwa K, Kato Y, Uenishi S. アノード酸化を基礎とする新規なアルミニウム表面改質・加工技術 -機能性表面の創成を目指して- (Novel Surface Modification and Processing Technologies for Aluminum Based on Anodizing -Towards the Creation of Functional Surfaces-). Keikinzoku (Journal of Japan Institute of Light Metals). 2000 Nov; 50(11): 544-551. 100. Sun SP, Li J, Yin Y, Chu SZ, Qiu ZX. The Investigation of Al-Mn Coatings Electrodeposited from Molten Salt on Steel. Corrosion Science and Protection Technology (CHN). 2000 Aug; 12(5): 287-294. 101. Chu SZ, Sakairi M, Takahashi H, Simamura K, Abe Y. Laser-assisted Electroless Ni-P Deposition at Selected Areas on Al (-Mg, Si, Cu) Alloys. Journal of The Electrochemical Society. 2000 Jun; 147(6): 2181-2189. 102. Chu SZ, Sakairi M, Takahashi H, Shimamura K, Abe Y. Local Metal Deposition on Aluminum with Laser Irradiation and Electroless-plating. Proceedings of Surface Finishing of Aluminum. 2000 May: 21-25. 103. Chu SZ, Sakairi M, Takahashi H. Electroless Copper Deposition at Selected Area on Aluminum with Pulsed YAG Laser. Journal of The Electrochemical Society. 2000 Apr; 147(4): 1423-1431. 104. Chu SZ. Local Deposition of Ni-P and Copper on Aluminum by Anodizing, Laser Irradiation and Electroless-Plating [Thesis]. 2000 Mar: 1-180. 105. Chu SZ, Sakairi M, Saeki I, Takahashi H. Nucleation of Metals on Aluminum by Laser Irradiation and the Effect on Ni-P Electroless Deposition. Journal of The Electrochemical Society. 1999 Aug; 146(8): 2996-3005. 106. Sun SP, Li J, Yin YB, Wang Y, Chu SZ, Yang ZH, Qiu ZX. Effects of Ce and Ti on Al-Mn Alloy Electrodeposition Coating on Steel. J. Northeastern University (Natural Science) (CHN). 1999 Aug; 20(4): 395-397. 107. Chu SZ, Sakairi M, Takahashi H, Qiu ZX. Local Deposition of Ni-P Alloy on Aluminum by Laser Irradiation and Electroless-Plating. Journal of The Electrochemical Society. 1999 Feb; 146(2): 537-546. 108. Chu SZ, Nukui K, Wakabayashi J, Kato Z, Kikuchi T, Sakairi M, Takahashi H. Fabrication of Self-Organized Titania Nanostructures on Glass by Combinational Anodizing Technology. Proceedings of International Symposium of Environmental-Conscious Innovative Materials Processing with advanced Energy Sources (Ecomap-98). 1998 Jul: 224-231. 109. Chu SZ, Qiu ZX, Yang ZH, He MH, Li QF. Structure and properties of Al-Mn Alloys Coatings electroplated from Molten Salts. The Chinese Journal of Non-ferrous Metals. 1998 Mar; 8(8): 95-100. 110. Chu SZ, Qiu ZX, Wang BG, Zhang Z. Investigation on Al-Mn Alloy Electroplating technology in Molten Salts. Non-Ferrous Metals (CHN). 1997 May; 49(2): 57-63. 111. Chu SZ. Al-Mn-(Ti) Alloy Elelctrodeposition with High Corrosion Resistance on Carbon Steelby from Molten Salts. 1997. 112. Si XL, Chu SZ, Wu F. Effects of Stirring of Compress Air on the Bright Nickel Electroplating. J. Shenyang Polytechnic Univ.(CHN). 1996 Dec; 18(4): 54-57. 113. Chu SZ, Qiu ZX. Investigation on Al-Mn-Ti Alloy Electrodeposition from Molten Salts on Carbon Steel. Proceedings of International Symposium on Non-Ferrous Metallurgy and its Alloy Materials. 1996 Sep: 54-60. 114. Chu SZ, Qiu ZX. Survey and Prospects of Al-Mn Alloy Electroplating Technology from Molten Salts. Light Metals (CHN). 1996 Aug; 49(2): 30-34. 115. Si XL, Chu SZ, Zhou HQ, Wu F. The Investigation of the Resolutive Properties of Zn-Ni Alloy Electroplating. J. Shenyang Polytechnic Univ.(CHN). 1996 Jun; 18(2): 64-69. 116. Si XL, Wu F, Chu SZ. Investigation of Process and Performance of Electroless Ni-Sn-P Deposition. Functional Materials (CHN). 1995 Aug; 26(2): 189-195. 117. Wu F, Chu SZ. Process and Corrosion Resistance of Ni-Cu-P Electroless Deposition. Plating and Finishing (CHN). 1994 Sep; 16(5): 36-41. 118. Wu F, Chu SZ, Zhou HQ. The Investigation of the Effects of Construction of Zn-Ni Alloy Coating and Its Properties. J. Shenyang Polytechnic Univ.(CHN). 1994 Apr; 16(4): 40-46. 119. Wu F, Chu SZ. The Study of the Ni-B-Al2O3 Combined Electroless Plating. Surface Technology (CHN). 1994 Apr; 23(4): 154-158. 120. Chu SZ, Wu F. Study on Composite Ni-P-SiC Electroless-plating. J. Shenyang Polytechnic Univ.(CHN). 1993 Mar; 15(1): 87-91. 121. Wu F, Chu SZ. An investigation of an electroplating technology of anti-corrosion and decorative Zn-Ni alloy coating. J. Shenyang Polytechnic Univ.(CHN). 1991 Jun; 13(2): 113-117. 122. Chu SZ. Zn-Ni Alloy Elelctrodeposition with High Corrosion Resistance and High Decorition on Carbon Steelby Using Zn-Ni Alloy Anodes. 1988 Jan. 123. Chu SZ. Process Design of Glass Bottles Production Lines. 1982 Jul. 专利 1. 吴松竹, 刘珈成, 周建国, 吴昊. 镀膜、复合镀膜、具有镀膜的金属部件及其制备方法与应用. 2. 呉松竹. 電池の負極材料とその製造方法 (电池负极材料及其制造方法). 日本专利. 3. 呉松竹. Sn-グラフェン複合めっき膜金属製端子とその製造方法 (Sn-石墨烯复合镀膜金属端子及其制造方法). 日本专利. 4. 呉松竹. Ag-グラフェン複合めっき膜金属製端子とその製造方法 (Ag-石墨烯复合镀膜金属端子及其制造方法). 日本专利. 5. 呉松竹. 車載端子・電子部品用の高導電性スズ―グラフェン複合めっき膜 (用于车载端子和电子元器件的高导电性锡-石墨烯复合镀膜). 日本专利. 6. 呉松竹. Ag-グラフェン複合めっき膜金属製部品とその製造方法 (Ag-石墨烯复合镀膜金属部件及其制造方法). 日本专利. 7. 呉松竹, 八代仁. 多孔質陽極酸化皮膜の製造方法及び多孔質陽極酸化皮膜並びにそれを用いた電極及び電池 (多孔阳极氧化膜的制造方法、多孔阳极氧化膜以及使用其的电极和电池). 日本专利. 8. 呉松竹, 飯塚建興. 陽極酸化皮膜を有する金属成形体の製造方法、陽極酸化皮膜を有する金属成形体、ピストン及び内燃機関 (具有阳极氧化膜的金属成形体的制造方法、具有阳极氧化膜的金属成形体、活塞及内燃机). 日本专利. 9. 呉松竹, 八代仁. 金属基材の表面に複数のAg-Sn合金層を有する導電材およびその製造方法 (在金属基材表面具有多个Ag-Sn合金层的导电材料及其制造方法). 日本专利. 10. 褚松竹, 森昌史, 河村浩孝. ナノ構造体およびその製造方法 (纳米结构及其制造方法). 日本专利. 11. 櫻井健, 呉松竹. 銅又は銅合金板へのAg-Snめっき方法及びその方法により製造されたAg-Snめっきが施された銅又は銅合金板 (在铜或铜合金板上的Ag-Sn电镀方法及通过该方法制造的Ag-Sn电镀铜或铜合金板). 日本专利. 12. 褚松竹, 森昌史, 河村浩孝. 金属―多孔質基材複合材料及びその製造方法 (金属-多孔基材复合材料及其制造方法). 日本专利. 13. 褚松竹, 和田健二, 井上悟. ジルコニウム酸化物ナノ構造体及びその製造方法 (氧化锆纳米结构及其制造方法). 日本专利. 14. 褚松竹, 和田健二, 井上悟. バルブ金属酸化物ナノ構造体の製造方法 (阀金属氧化物纳米结构的制造方法). 日本专利. 15. 褚松竹, 熊谷淳一, 櫻井健. 端子・コネクタ用導電材料及び嵌合型接続端子 (用于端子/连接器的导电材料及嵌合型连接端子). 日本专利. 16. 褚松竹, 熊谷淳一. Snメッキ導電材料及びその製造方法並びに通電部材 (Sn镀层导电材料及其制造方法以及通电部件). 日本专利. 17. 褚松竹, 熊谷淳一. Sn镀层导电材料及其制造方法以及通电部件 (Sn Plated Electrical Conducting Material and Manufacturing Method Thereof and Energization Parts). 日本专利. 18. 褚松竹, 和田健二, 井上悟. シリコン酸化物ナノ構造体とその製造方法 (氧化硅纳米结构及其制造方法). 日本专利. 19. 和田健二, 褚松竹, 井上悟, 李迪. 基体上に形成されたチタニヤ系結晶体からなる光触媒の製造方法 (在基体上形成二氧化钛系晶体的光催化剂的制造方法). 日本专利. 20. 和田健二, 井上悟, 轟眞市, 褚松竹. 基体上に接合して規則化したナノ構造体およびその製造方法 (在基体上接合并规则化的纳米结构及其制造方法). 日本专利. 21. 福井俊巳, 褚松竹, 内田文生, 高村誠. In2O3-SnO2塗布液およびその製造方法及びIn2O3-SnO2膜の製造方法 (In2O3-SnO2涂布液及其制造方法以及In2O3-SnO2膜的制造方法). 日本专利。 22. 呉松竹, いすゞ自動車(株). 陽極酸化皮膜を有する金属成形体及び製造方法、ピストンおよび内燃機関 (具有阳极氧化膜的金属成形体及其制造方法、活塞以及内燃机). 日本专利。 | ||

