林建宏 / 教授

林建宏教授
現任國立清華大學永續學院教授,同時兼任學院永續科技學位學程主任。研究與教學專長涵蓋奈米碳材料、觸媒設計及催化反應、儲能碳材料、生質廢棄物材料高值化再利用等。
現職
- 國立清華大學永續學院 教授
- 國立清華大學永續科技學位學程 主任
學歷
- 國立中山大學 化學博士 (1999)
- 國立中山大學 化學碩士 (1991)
- 國立中山大學 化學學士 (1989)
學術專長
- 奈米碳材料
- 觸媒設計及催化反應
- 儲能碳材料
- 生質廢棄物材料高值化再利用
- 超電容
- 鈉電池
- 二氧化碳捕捉再利用 CCU)
- 生質氫能
聯絡資訊
- 電話:(03)5715131轉78012
- 信箱:chienhung@mx.nthu.edu.tw
- 個人網站:https://acmrc647.wixsite.com/acmrclab
開設課程
- 普通化學
- 普通化學實驗
- 材料分析
- 奈米材料
- 奈米科技
- 材料研究技術
- 奈米碳材料導論與應用
- 書報討論
- 科學論文寫作
- 材料永續循環及在儲能元件的應用
- 表面分析技術
個人經歷
產業經歷與技術開發
業界經歷
- 台灣中橡公司研發部任職11年
- 主要研究:奈米碳材料開發、與法國米其林合作研發低滾阻節能輪胎
技術創新
- 開發出熱裂解氣相層析質譜法 (Pyrolysis GC-MS)
- 功能:快速辨別碳材料種類與表面特性
- 應用:正新輪胎產品開發
學術研究與技術突破
碳材料製備
- 發展新型銅觸媒製備奈米碳管
儲能材料開發
- 以生質廢棄物(咖啡渣、木屑、稻殼、廢塑膠)製成高效電極材料
二氧化碳再利用(CCU)
- 將CO2轉化為天然氣與奈米碳材料
- 與國內外機構合作成立CCU研究團隊
- 發展新世代儲能電池材料
教學與學術貢獻
碳材料研究經驗:累積30年
計畫參與:多項國家型計畫
產學合作:積極推動與產業接軌
學會與國際推廣
台灣碳材料學會
- 創辦人之一(2017年)
- 曾任:第一屆秘書長、常務監事,現任常務理事
國際活動主辦
- 2023年主辦第一屆國際碳材料學術研討會
著作
學術期刊論文
- J. H. Lin "Identification of the surface characteristics of carbon blacks by pyrolysis GC MASS" Carbon 2002, 40, 183-187.
- C. S. Chen*, J. H. Lin J. H. You and C. R. Chen "Properties of Cu(thd)2 as a Precursor to Prepare Cu/SiO2 Catalyst Using the Atomic Layer Epitaxy Technique" J. Am. Chem. Soc. 2006, 128, 15950-15951.
- J. H. Lin, C. S. Chen, H. L. Ma, C. Y. Hsu and H. W. Chen“Synthesis of MWCNTs on CuSO4 /Al2O3 using chemical vapor deposition from methane” Carbon 2007, 45(1), 223-225.
- C.S. Chen*, J. H. Lin S. J. Lin, H. T. Huang and H. L. Ma Synthesis of Carbon Nanofibers from CO2 on Ni-K/Al2O3 catalysts" Carbon 2008, 46, 369-317.
- J. H. Lin* C. S. Chen, H. L. Ma, C. Y. Hsu and H. W. Chen "Self Assembly of multi walled carbon nanotubes on a porous carbon surface by catalyst free chemical vapor deposition" Carbon 2008, 46, 1619-1623.
- C. S. Chen*, J. H. Lin J. H. You and K. H. Yang "The effects of potassium on Ni-K/Al2O3 catalysts in the synthesis of carbon nanofibers by catalytic hydrogenation of CO 2". J. Phys. Chem. A. 2010, 114, 3773-3781.
- M. H. Rümmeli, A. Bachmatiuk, A. Scott, F. Börrnert, J. H. Warner,V. Hoffmann, J. H. Lin G. Cuniberti, B. Büchner "Low temperature graphene via non metal catalytic chemical vapor deposition" ACS Nano 2010, 4(7), 4206-4210.
- J. H. Lin* C. S. Chen, M. H. Rümmeli and Z. Y. Zeng "Self assembly of multimulti--walledwalled carboncarbon nanotubesnanotubes onon goldgold surfaces"surfaces" Nanoscale Nanoscale 2010, 2(12), 28352010, 2(12), 2835--2840.2840.
- J. H. Lin* C. S. Chen, Z. Y. Zeng, H. L. Ma and H. W. Chen "The growth of carbon nanotubes on defect rich graphite surfaces" Chem. Mater. 2011, 23, 1637-1639.
- J. H. Lin* C. S. Chen, Z. Y. Zeng, C. W. Chang and H. W. Chen "Sulfate activated growth of bamboo like carbon nanotubes over copper catalysts" Nanoscale 2012, 4, 4757-4764.
- H. C. Wu, Y. C. Chang, J. H. Wu, J. H. Lin I. K. Lin and C. S. Chen "Methanation of CO2 and reverse water gas shift reactions on Ni/SiO2 catalysts: the influence of particle size on selectivity and reaction pathway" Catal. Sci. Technol. 2015, 5, 4154-416.
- J. H. Lin* and S. B. Wang “An effective route to transform scrap tire carbons into highly pure activated carbons with a high adsorption capacity of ethylene blue through thermal and chemical treatments” Environ. Technol. Inno. 2017, 8, 17-27.
- C. H. Hsiao and J. H. Lin* "Growth of a Superhydrophobic Multi walled Carbon Nanotube Forest on quartz Using Flow vapor Deposited Copper Catalysts" Carbon 2017, 124, 637-641.
- M. D. Liao, C. Peng, S. P. Hou, J. Chen*, X. G. Zeng, H. L. Wang, J. H. Lin* "Large scale synthesis of nitrogen doped activated carbon fibers with high specific surface area for high performance supercapacitors" Energy Technol. 2020, 8, 1901477.
- C.-H. Chiang, J. Chen, J. H. Lin* "Preparation of pore size tunable activated carbon derived from waste coffee grounds for high adsorption capacities of organic dyes" J. Environ. Chem. Eng. 2020, 8(4), 103929.
- C. Peng, M. D. Liao, X. L. Lv, L. Chen, S. P. Hou, D. Min, J. Chen*, H. L. Wang and J. H. Lin* "Large scale synthesis of highly structural connecting carbon nanospheres as an anodes material for lithium ion batteries with high rate capacity" Chem. Eng. J. Adv. 2020, 2, 100014.
- T. H. Hsieh, H. L. Wang, G. T. Yu, G. M. Huang, J. H. Lin* "Meso-pore dominant activated carbon from spent coffee grounds for high-performance electrochemical capacitors in organic electrolyte", J. Environ. Chem. Eng. 2021, 9, 106418.
- J. H. Lin* and C. Y. Chen "Thickness-controllable coating on graphite surface as anode materials using glucose based suspending solutions for Lithium ion Battery" Surf. Coating Technol. 2022, 436, 128270.
- G. T. Yu, T. H. Hsieh,* Y.-H. Lin, J. H. Lin* " Porous Carbon Nanosheets Derived from Spent Coffee Grounds for Highly Stable Electric Double Layer Capacitors Enabled by Structurally Complementary Carbons", ACS Sustainable Resour. Manage. 2024 , 1, 76-87.
- T. H. Hsieh, T. J . Chang, Y.-H. Lin, J. H. Lin* One step generation of hollow graphitic carbon nanospheres with suitable oxygenated structures as conductive additives for water soluble binder in highly stable supercapacitor electrodes” Electrochimica Acta 2024, 483, 144050.