Basic Information | |
![]() | Jiacheng LIU Lecturerr E-mail: j.c.liu1018@seu.edu.cn Office: Room 509, Building A, School of Materials Science and Engineering |
Personal Profile | |
uEducational Background Sep. 2013 – Jun. 2017 Bachelor of Engineering, Materials Science and Engineering, Anhui University of Technology Jan. 2017 – Mar. 2019 Japanese Language, Tokyo Shenfeng International Academy Apr. 2019 – Mar. 2020 Department of Physical Engineering, Nagoya Institute of Technology Apr. 2020 – Mar. 2022 Master of Engineering, Physical Engineering, Nagoya Institute of Technology Apr. 2022 – Mar. 2025 Doctor of Engineering, Nagoya Institute of Technology Jul. 2024 – Nov. 2024 Visiting Scholar, University of Texas at Dallas, USA uAwards & Honors Apr. 2020 – Mar. 2022 Scholarship Recipient, NGK Foundation (Total award: 100,000 RMB) Nov. 2020 – Mar. 2022 Scholarship Recipient, Hattori Foundation for International Scholarship (Total award: 100,000 RMB) Apr. 2022 – Mar. 2025 Scholarship Recipient, Kobayashi Foundation (Total award: 250,000 RMB) 2020 – 2025 Tuition Exemption, Nagoya Institute of Technology 2023 ARS Outstanding Presentation Award 2023 57th Paper Award, Japan Copper Society (3rd Place) 2023 Young Researcher Award, Nagoya Institute of Technology 2023 Overseas Project Promotion Grant, Nagoya Institute of Technology 2023 – 2024 Annual Academic Contribution Award for Students, Nagoya Institute of Technology 2025 Student Representative Speaker at the 2024 Graduation Ceremony, Nagoya Institute of Technology uResearch Interests 1. Surface functionalization of light metals (aluminum, titanium and magnesium alloys) 2. Electrochemical fabrication of metal-carbon composites (graphene, carbon nanotubes and carbon fibers) 3. Preparation of catalytic electrodes for alcohol fuel cells uResearch Grants 1. Mar. 2022 – Mar. 2025 | FCM Co., Ltd. Development and application of Ag-graphene composite coatings on copper substrates — Core Member 2. Mar. 2023 – Mar. 2024 | Huawei Yokohama Research Institute, Japan Development of fabrication processes for hydrophobic oxide films on inner walls of aluminum microchannels — Core Member 3. May 2023 – Mar. 2025 | Jiangsu Sanxin Special Metal Materials Co., Ltd. Development and technical breakthrough of silver electroplating technology for aluminum and aluminum alloys — Core Member 4. Apr. 2022 – Mar. 2024 | Nippon Yakin Kogyo Co., Ltd. Research on defects of silver plating on 42% nickel-iron alloy substrates — Core Member 5. Apr. 2019 – Mar. 2022 | ISUZU Central Research Laboratory Surface treatment of aluminum engine pistons — Core Member 6. Oct. 2019 – Jul. 2020 | ISUZU Central Research Laboratory Wettability improvement of aluminum powder metallurgy materials — Core Member 7. Sep. 2019 – Mar. 2020 | FCM Development and performance evaluation of nickel plating technology — Research Assistant uSelected Publications and Achievements 1. 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. Materials Chemistry and Physics. 2023 Aug; 128271. 2. 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 ZM. 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 Structures. 2024 Jul; 2400172. 3. 劉珈成, 勝田修二, 松原孝至, 王 鵬, 林 尓力, 呉 松竹*. 自動車エンジン部品用Al-Si-Cu-Ni-Mg鋳造合金上への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. 4. 呉松竹*, 武井悠朔, 平山銀士, 劉 珈成, 富永秀一, 浅井 正. 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). 5. 神谷友斗, 武井悠朔, 劉 珈成, 呉 松竹*. 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). 6. Wang Y, Yuan P, Liu XX, Feng S, Cao M, Ding J, Liu J, Kure-Chu SZ, Hihara T, Pan L, Sun ZM. Sacrificial NH4HCO3 inhibits fluoropolymer/garnet interfacial reactions towards 1mS cm−1 and 5V-level composite solid electrolyte.Advanced Functional Materials. 2024 Jun; 2405060. 7. 平山銀士, 藤村美吹, 神谷友斗, 劉 珈成, 呉 松竹*. 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). 8. 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. Chinese Chemical Letters. 2024 Aug. 9. 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 ZM. Ultra-thin amphiphilic hydrogel electrolyte for flexible zinc-ion paper batteries. Energy & Environmental Science. 2024 Sep; 17(18): 6507-6520. | |


