Representative Publication List and Citation of Jacob Chih-Ching Huang 黃志青
論文被引用狀況
歷年來 (含UCLA, Los Alamos NL, NSYSU) SCI 論文,
(1) 於Google Scholar之引用數據統計中,被引用總數26,711次,生平總H-index為75,單篇論文最高引用次數 891 次,被引用次數超過100次之論文數 (i100-index) 為49 篇,被引用次數超過10 次之論文數 (i10-index) 為468 篇
(2) Google Scholar citation statistics Total citation: 26,711 times
H-index: 75
Citation per paper: 62 times
Highest citation times for best cited paper: 891 times
Papers over 100 citation (i100-index): 49
Papers over 10 citation (i10-index): 468
一般金屬材料之平均引用次數,約為物理與化學之1/2,生醫之1/3。因此本人在金屬材料領域之被引用表現,約略等同物理與化學領域之被引用總數約40,000次與H-index 約100;甚至生醫領域之被引用總數約60,000次與H-index 約120。
For normal metallic material papers, the citation performance is typically 1/2 of those papers in physics or chemistry areas, or 1/3 of those papers in biomedical field. It follows that the citation performance for our metallic papers has been approximately equivalent to citation times of ~40,000 and H-index of ~100 for physics or chemistry areas, or of ~60,000 and ~120 for biomedical field.
近五年中對本人所有論文,Google資料中,2017年被引用1296次,2018年被引用1446次,2019年被引用1473次,2020年被引用1563次,2021年被引用1976次,2022年被引用2062次,2023年被引用2074次。最近共有十餘次論文先後曾被列為高引用論文,近來這些重要著作本人皆為通訊作者。
For the past five years, according to Google statistics, our papers have been cited for 1296 times in 2017, 1446 times in 2018, 1473 times in 2019, 1563 times in 2020, 1976 times in 2021, 2062 in 2022, and 2074 times in 2023. There have been over ten papers ever ranked as highly cited papers. Prof. J. C. Huang is the corresponding author.
A. Highly cited papers
1. Y. N. Wang and J. C. Huang*, “The Role of Twinning and Untwinning in Yielding Behavior in Hot-Extruded Mg-Al-Zn Alloy”, Acta Mater., vol. 55, 2007, pp. 897-905. Cited for 891 times.
2. C. I. Chang, C. J. Lee, and J. C. Huang*, “Relationship between Grain Size and Working Strain Rate and Temperature during Friction Stir Processing in AZ31 Mg Alloy”, Scripta Mater., vol. 51, 2004, pp. 509-514. Cited for 742 times.
3. Y. N. Wang and J. C. Huang*, “Texture Analysis on Hexagonal Materials”, Materials Chemistry and Physics, vol. 81, 2003, pp. 11-26. Cited for 678 times.
4. C. J. Lee, J. C. Huang*, and P. J. Hsieh, “Mg based Nanocomposites Fabricated by Friction Stir Processing”, Scripta Mater., vol. 54, 2006, pp. 1415-1420. Cited for 441 times.
5. M. C. Kuo, J. C. Huang*, and M. Chen, “PEEK Composites Reinforced by Nano-Sized SiO2 and Al2O3 Particulates”, Mater. Chem. Phys, vol. 90, 2005, pp. 185-195. Cited for 422 times.
6. J. P. Chu, J. S. C. Jang, J. C. Huang, H. S. Chou, Y. Yang, J. C. Ye, Y. C. Wang, J. W. Lee, F. X. Liu, P. K. Liaw, Y. C. Chen, C. M. Lee, C. L. Li, and C. Rullyani, “Thin Film Metallic Glasses: Unique Properties and Potential Applications”, Thin Solid Films, vol. 520, 2012, pp. 5097-5122. Cited for 378 times.
7. C. I. Chang, X. H. Du, and J. C. Huang*, “Achieving Ultrafine Grain Size in Mg-Al-Zn Alloys by Friction Stir Processing”, Scripta Mater., vol. 57, 2007, pp. 209-212. Cited for 361.
8. H. K. Lin, J. C. Huang*, and T. G. Langdon, “Relationship between Texture and Low Temperature Superplasticity in AZ31 Mg Alloy”, Mater. Sci. Eng. A, vol. A402, 2005, pp. 250-257. Cited for 355 times.
9. XH Du, WP Li, HT Chang, T Yang, GS Duan, BL Wu, JC Huang, FR Chen, ..., “Dual heterogeneous structures lead to ultrahigh strength and uniform ductility in a Co-Cr-Ni medium-entropy alloy”, Nature communications, vol. 11, 2022, pp. 2390. Cited for 345 times.
10. Z Jia, T Yang, L Sun, Y Zhao, W Li, J Luan, F Lyu, LC Zhang, J. C. Huang, JJ Kruzic, ..., “A novel multinary intermetallic as an active electrocatalyst for hydrogen evolution”, Advanced Materials, vol. 32, 2020, pp. 2000385. Cited for 262 times.
11. T Yang, YL Zhao, WP Li, CY Yu, JH Luan, DY Lin, L Fan, ZB Jiao, WH Liu, J. C. Huang, ..., “Ultrahigh-strength and ductile superlattice alloys with nanoscale disordered interfaces”, Science, vol. 369, 2020, pp. 427-432. Cited for 245 times.
12. C. J. Lee, J. C. Huang, and T. G. Nieh, “Sample size effect and microcompression of Mg65Cu25Gd10 metallic glass, Appl. Phys. Lett., vol. 91, 2007, 161913. Cited for 235 times.
13. D Wu, J Zhang, JC Huang, H Bei, TG Nieh, “Grain-boundary strengthening in nanocrystalline chromium and the Hall–Petch coefficient of body-centered cubic metals”, Scripta Materialia, vol. 68, 2013, pp. 118-121. Cited for 222 times.
14. X. H. Du, J. C. Huang, C. T. Liu, and Z. P. Lu, “New Criterion of Glass Forming Ability for Bulk Metallic Glasses”, J. Appl. Phys., vol. 101, 2007, p. 086108. Cited for 220 times.
15. Y. N. Wang, C. I. Chang, C. J. Lee, H. K. Lin, and J. C. Huang, “ Texture and weak grain size dependence in friction stir processed Mg–Al–Zn alloy”, Scripta Materialia 55(7), 2006, 637-640. Cited for 217 times.
16. H. C. Shih, N. J. Ho, and J. C. Huang, “Precipitation behaviors in Al-Cu-Mg and 2024 aluminum alloys”, Metallurgical and Materials Transactions, vol. A27, 1996, 2479-2494. Cited for 212 times.
B. Acta papers
1. J. C. Huang and A. J. Ardell, "Addition Rules and the Contribution of Precipitates to Strengthening of Aged Al-Li-Cu Alloys", Acta Metall., vol. 36, 1988, pp. 2995-3006.
2. J. C. Huang* and G. T. Gray, "Microband Formation in Shock-Loaded and Cold-Rolled Metals", Acta Metall., vol. 37, 1989, pp. 3335-3347.
3. P. S. Follansbee, J. C. Huang and G. T. Gray, "Low Temperature and High Strain Rate Deformation of Ni and Ni-C Alloys and Analysis of the Constitutive Behavior According to an Internal State Variable Model", Acta Metall. Mater., vol. 38, 1990, pp. 1241-1254.
4. H. C. Fu, J. C. Huang*, T. D. Wang, and C. C. Bampton, "Evolution of microstructure and Superplastic Deformation Mechanisms of Super-??2 Ti3Al Thin Sheets as a Function of Strain", Acta Mater., vol. 46, 1998, pp. 465-479.
5. K. L. Yang, J. C. Huang*, and Y. N. Wang, “Phase Transformation in the b Phase of Super a2 Ti3Al Based Alloys during Static Annealing and Superplastic Deformation at 700-1000oC”, Acta Mater., vol. 51, 2003, pp. 2577-2594.
6. C. J. Lee and J. C. Huang*, “Cavitation Characteristics in AZ31 Mg Alloys during LTSP or HSRSP”, Acta Mater., vol. 52, 2004, 3111-3122.
7. Y. N. Wang and J. C. Huang*, “The Role of Twinning and Untwinning in Yielding Behavior in Hot-Extruded Mg-Al-Zn Alloy”, Acta Mater., vol. 55, 2007, pp. 897-905. 208
8. Jinn P. Chu, J. E. Greene, Jason S. C. Jang, J. C. Huang, Yu-Lin Shen, Peter K. Liaw, Yoshihiko Yokoyama, Akihisa Inoue, and T. G. Nieh, “Bendable Bulk Metallic Glass: Effects of a Thin, Adhesive, Strong, and Ductile Coating”, Acta Mater., vol. 60, 2012, pp. 3226-3238.
9. M. C. Liu, Y. T. Feng, J. C. Huang*, J. P. Ju, H. J. Pei, X. H. Du, and T. G. Nieh, “Interface energy and its influence on mechanical behavior of inclined ZrCu/Zr micropillars”, Acta Mater., vol. 61, 2013, pp. 3304-3313.
10. T. H. Chou, J. C. Huang, C. H. Yang, S. K. Lin, and T. G. Nieh, “Consideration of kinetics on intermetallics formation in solid-solution high entropy alloys”, Acta Mater., vol. 195, 2020, pp. 1-10.
11. Hao Jie Kong, Tao Yang, Rong Chen, Zengbao Jiao, Tianlong Zhang, Boxuan Cao, Junhua Luan, Shaofei Liu, Anding Wang, Jacob Chih-Ching Huang, Xun-Li Wang, and Chain Tsuan Liu, “Design of ultra-strong but ductile iron-based alloys with low supersaturations”, Acta Mater., vol. 256, 2023, pp. 119000 (1-17).
12. T. H. Chou, W. P. Li, L. Y. Zhu, J. Huang, F. Zhu, X. C. Li, W. Y. Chen, R. Zhou, J. H. Luan, Y. L. Zhao, Z. X. Wu, F. R. Chen, J. C. Huang, P. K. Liaw, X. L. Wang, T. Yang, “Unveiling critical impacts of thermodynamic instability and short-range order on deformation mechanisms of VCoNi medium-entropy alloy”, Acta Mater., vol. 227, 2024, pp. 120190 (1-17).
C. J Mater Chem A, Scientific Reports, APL, PRB, Optics Express, Nanotechnology, RSC, MSE-C papers
1. X. H. Du, J. C. Huang*, K. C. Hsieh, J. S. C. Jang, and P. K. Liaw, Y. H. Lai, and H. M. Chen, “Two-Glassy-Phase Bulk Metallic Glass with Remarkable Plasticity”, Appl. Phys. Lett., vol. 91, 2007, p. 131901 (1-3).
2. C. J. Lee, J. C. Huang*, and T. G. Nieh, “Sample Size Effect on the Mechanical Behavior of Mg65Cu25Gd10 Metallic Glass”, Appl. Phys. Lett., vol. 91, 2007, p. 161913 (1-3).
3. Y. C. Lo, S. P. Ju, J. C. Huang*, and X. H. Du, “Atomic Structural Evolution of Zr-Ni during Accumulative Roll Bonding Using Honeycutt-Anderson (HA) Pair Analysis”, Phys. Rev. B, vol. 76, 2007, p. 024103 (1-6).
4. J. S. C. Jang, J. Y. Ciou, T. H. Hung, J. C. Huang*, and X. H. Du, “Enhanced Mechanical Performance of Mg Based Metallic Glass with Porous Mo Particles”, Appl. Phys. Lett., vol. 92, 2008, p. 011930 (1-3).
5. H. S. Chou, J. C. Huang*, L. W. Chang, and T. G. Nieh, “Structural Relaxation and Nanoindentation Response in Zr-Cu-Ti Amorphous Thin Films”, Appl. Phys. Lett., vol. 93, 2008, p. 191901 (1-3).
6. S. X. Song, Y. H. Lai, J. C. Huang, and T. G. Nieh, “Homogeneous Deformation of Au-Based Metallic Glass Micro-Pillars in Compression at Elevated Temperatures”, Appl. Phys. Lett., vol. 94, 2009, pp. 061911 (1-3).
7. H. M. Chen, S. X. Song, J. C. Huang*, H. S. Chou, J. S. C. Jang, and T. G. Nieh, “Flow Serration and Shear Band Propagation in Bulk Metallic Glasses”, Appl. Phys. Lett., vol. 94, 2009, pp. 141914 (1-3).
8. T. H. Sung, J. C. Huang* and J. H. Hsu, and S. R. Jain, “Mechanical Response of GaN Film and Micropillar under Nanoindentation and Microcompression”, Appl. Phys. Lett., vol. 97, 2010, p. 171904 (1-3).
9. T. H. Sung, J. C. Huang*, J. H. Hsu, S. R. Jian, and T. G. Nieh, “Yileding and plastic slip in ZnO”, vol. 100, Appl. Phys. Lett., 2012, pp. 211903 (1-4).
10. T. T. Hu, J. H. Hsu, J. C. Haung*, S. Y. Kuan, C. J. Lee, and T. G. Nieh, “Correlation between reflection and resistivity in multi-component metallic systems”, Appl. Phys. Lett., vol. 101, 2012, p. 011902 (1-4).
11. Sheng-Rui Jian, T.-H. Sung, J. C. Huang, and Jenh-Yih Juang, “Deformation behavior of InP micropillars under uniaxial compression, Appl. Phys. Lett., vol. 101, 2012, p. 151905 (1-4).
12. T. H. Sung, J. C. Huang*, and C. H. Chen, “Mechanical response of polar/non-polar ZnO under low dimensional stress”, Appl. Phys. Lett., vol. 102, 2013, p. 241901.
13. W. H. Wang, J. H. Hsu, and J. C. Huang, “Optical reflection improvement by upgrading metallic glass quality”, Appl. Phys. Lett., vol. 103, 2013, pp. 161906 (1-4).
14. C. H. Huang, J. C. Huang*, J. B. Li, and J. S. C. Jang, “Simulated body fluid electrochemical response of Zr-based metallic glasses with different degrees of crystallization”, Mater. Sci. Eng. C, vol. C33, 2013, pp. 4183-4187.
15.
C. H. Lin, C. H. Huang, J. F. Chuang, J. C. Huang*, J. S. C. Jang, and C. H. Chen, “Rapid Screening of Potential Metallic Glasses for Biomaterial Applications”, Mater. Sci. Eng. C, vol. 33, 2013, pp. 4520-4526.
16.
Y. Y. Chu, Y. S. Lin, C. M. Chang, J.-K. Liu, C. H. Chen, and J. C. Huang, “Superior anti-microbial effect of thin film metallic glass”, Mater. Sci. Eng. C, vol. C36, 2014, pp. 221-225.
17.
C. T. Pan, C. K. Yen, L. W Lin, Y. S. Lu, H. W. Li, J. C. Huang, and S. W. Kuo, “Energy harvesting with piezoelectric poly(γ-benzyl-l-glutamate) fibers prepared through cylindrical near-field electrospinning”, RSC Advances, vol. 4, 2014, pp. 21563-21570.
18.
C. T. Pan, Y. C. Chen, P. H. Lin, C. C. Hsieh, F. T. Hsu, C. M. Chang, J. H. Hsu, and J. C. Huang, “Lens of controllable optical field with thin film metallic glasses for UV-LEDs”, Optics Express, vol. 22, 2014, pp. 14411-14424.
19.
C. H. Huang , Y. S. Huang , Y. S. Lin , C. H. Lin* , J. C. Huang* , C. H. Chen , J. B. Li, Y. H. Chen, J. S. C. Jang, “Electrochemical properties and biocompatibility of newly developed TiZr-based metallic glasses”, Mater. Sci. Eng. C, vol. 43, 2014, pp. 343-349.
20.
C. H. Huang, J. J. Lai, T. Y. Wei, Y. H. Chen, X. Wang, S. Y. Kuan, and J. C. Huang*, “Improvement of bio-corrosion resistance for Ti42Zr40Si15Ta3 metallic glasses in simulated body fluid by annealing within supercooled liquid region”, Mater. Sci. Eng. C, vol. 52, 2015, pp. 144-150.
21.
C. T. Pan, C. K. Yen, H. C. Wu, L. W. Lin, Y. S. Lu, J. C. Huang and S. W. Kao, “Significant Piezoelectric Enhancement of Poly(vinylidene fluoride)/Polypeptide Fiber Composites Prepared Through Near-Field Electrospinning”, J. Mater. Chem. A, vol. 3, 2015, pp. 6835-6843. ?
22.
C. T. Pan, C. K. Yen, H. C. Wu, L. W. Lin, Y. S. Lu, J. C. Huang and S. W. Kao, “Near-Field Electrospinning Enhances the Energy Harvesting of Hollow PVDF Piezoelectric Fibers”, RSC Advances, vol. 5, 2015, pp. 85073-85081.
23.
C. H. Huang, J. J. Lai, J. C. Huang*, C. H. Lin, and J. S. C. Jang, “Effect pf Cu content on electrochemical response in Ti-based metallic glasses under simulated body fluid”, Mater. Sci. Eng. C, 2016, vol. C62, 2016, pp. 368-376.
24.
C. H. Chang, C. H. Hsieh, J. C. Huang*, C. Wang, Y. C. Liao, C. H. Hsueh, X. H. Du, J. K. Wang, and X. Wang, “Improvement of interface properties by graded interface in amorphous / nanocrystalline ZrCu/Cu multilayered films”, Nanotechnology, 2016.
25. Guan-Rong Huang, J. C. Huang, and W. Y. Tsai, “Stochastic dynamics of dislocation density in the single crystal metals at small scales”, Scientific Reports, vol. 6, 2016, p. 39242 (1-6).
26. T. H. Li, P. C. Wong, S. F. Chang, P. H. Tsai, J. S. C. Jang, and J.C. Huang, “Biocompatibility study on Ni-free Ti-based and Zr-based bulk metallic glasses”, Mater. Sci. Eng. C, vol. 75, 2017, pp. 1-6.
27. C. H. Lin, Y. S. Huang, Y. S. Lin, C. H. Huang, J. C. Huang*, J. S. C. Jang, and C. H. Chen,“In vivo investigations and cytotoxicity tests on Ti/Zr-based metallic glasses with various Cu contents”, Mater. Sci. Eng. C, vol. 77, 2017, pp. 308-317.
28. J. J. Lai, Y. S. Lin, C. H. Chang, T. Y. Wei, J. C. Huang*, Z. X. Lia, C. H. Lin, and C. H. Chen, “Promising Ta-Ti-Zr-Si metallic glass coating without cytotoxic elements for bio-implant applications”, Appl. Surf. Sci., vol. 427, 2018, pp. 485-495.
29. Yi-Ting Tseng, I-Chieh Chen, Ting-Chang Chang*, J. C. Huang*, Chih-Cheng Shih, Hao-Xuan Zheng, Wen-Chung Chen, Ming-Hui Wang, Wei-Chen Huang, Min-Chen Chen, Xiao-Hua Ma, Yue Hao, and Simon M. Sze, “Enhanced electrical behavior from the galvanic effect in Ag-Cu alloy electrode conductive bridging resistive switching memory”, Appl. Phy. Lett., vol. 113, 2018, pp. 053501 (1-5).
30. Y. Y. Zhao, Z. F. Lei, Z. P. Lu, J. C. Huang, and T. G. Nieh, “A simple model connecting lattice distortion with friction stress of Nb-based equiatomic high-entropy alloys”, Mater. Research Lett., vol. 7:8, 2019, pp. 340-346.
31. C. Chen, H. W. Chen, J. C. Huang ?, and J. G. Duh, “iron oxide/holey graphene framework nanocomposites as high energy electrodes for advanced lithium-ion batteries”, Appl. Surf. Sci., vol. 485, 2019, pp. 247-254.
32. H. K. Lin, Y. T. Wang, W. S. Chuang, H. S. Chou, and J. C. Huang, “Surface resonance properties of pure Cu and Cu80Zr20 metallic glass films with nanoparticles induced by pulsed-laser dewetting process”, Appl. Surf. Sci., vol. 507, 2020, pp. 145185 (1-9).
33. Y. H. Chen, W. S. Chuang, J. C. Huang*, X. Wang, H. S. Chou, Y. J. Lai, and P. H. Lin, “On the bio-corrosion and biocompatibility of TiTaNb medium entropy alloy films”, Appl. Surf. Sci., vol. 508, 2020, pp. 145307 (1-10).
34. Y. H. Kang, Z. H. Huang, S. C. Wang, H. Yan, R. S. Chen, and J. C. Huang, “Effect of pre-deformation on microstructure and mechanical properties of WE43 magnesium alloy II: aging at 250 and 300oC”, J. Magnesium and Alloys, vol. 8, 2020, pp. 103-110.
35. Zhe Jia, Tao Yang, Ligang Sun, Yilu Zhao, Wanpeng Li, Junhua Luan, Fucong Lyu, Lai-Chang Zhang, Jamie J. Kruzic, Ji-Jung Kai, Jacob C. Huang, Jian Lu, and C. T. Liu, “A novel multinary intermetallic as an active electrocatalyst for hydrogen evolution”, Advanced Mater., 2020, pp. 2000385 (1-9).
36. X. H. Du, W. P. Li, H. T. Chang, T. Yang, G. S. Duan, B. L. Wu, J. C. Huang*, F. R. Chen, C. T. Liu, W. S. Chuang, Y. Lu, M. L. Sui, and E. W. Huang, “Dual heterogeneous structures lead to ultrahigh strength and uniform ductility in a Co-Cr-Ni medium-entropy alloy”, Nature Comm., vol. 11, 2020, pp. 2390 (1-7).
37. T. H. Chou, J. C. Huang, C. H. Yang, S. K. Lin, and T. G. Nieh*, “Consideration of kinetics on intermetallics formation in solid-solution high entropy alloys”, Acta Mater., vol. 195, 2020, pp. 1-10.
38. T. Yang, Y. L. Zhao, W. P. Li, C. Y. Yu, J. H. Luan, D. Y. Lin, L. Fan, Z. B. Jiao, W. H. Liu, X. J. Liu, J. J. Kai, J. C. Huang, and C. T. Liu,“Discovery of novel superlattice composite materials with extraordinary mechanical properties”, Science, 2020.
39. W. P. Li, T. H. Chou, T. Yang, W. S. Chuang, J. C. Huang*, J. H. Luan, X. K. Zhang, X. F. Huo, X. F. Huo, H. J. Kong, Q. F. He, X. H. Du, C. T. Liu, and F. R. Chen, "Design of ultrastrong but ductile medium-entropy alloy with controlled precipitations and heterogeneous grain structures", Applied Materials Today, vol. 23, 2021, pp. 101037 (1-12).
40. Jing Zhang, Hang Zou, Shifeng Gan, Benzhao He, J. C. Huang, Chen Peng, Jacky W. Y. Lam, Lei Zheng, and Ben Zhong Tang, "Endowing AIE with Extraordinary Potential: A New Au(I)-Containing AIEgen for Bimodal Bioimaging-Guided Multimodal Synergistic Cancer Therapy", Adv. Functional Mater., 2021, pp. 2108199 (1-9).
41. W. Y. Chen, Y. H. Chen, W. P. Li, Rui Zhou, T. H. Chou, X. Wang, and J. C. Huang*, “Passivation evolution of Ti -Ta-Nb medium entropy sputtered thin films in sulfuric acid solution”, Appl. Surface Sci., vol. 576, 2022, pp. 151824 (1-11).
42. Wenjun Zhao, Jiangzhou Qin, Wei Teng, Jincheng Mu, Chang Chen, Jun Ke, Jacob C. Huang, Baojun Liu, and Shaobin Wang, “Catalytic photo-redox of simulated air into ammonia over bimetallic MOFs nanosheets with oxygen vacancies”, Applied Catalysis B: Environmental, vol. 305, 2022, pp. 121046 (1-8).
43. Shimin Huang, Peiyu Li, Jing Wang, and J. C. Huang, and Qifan Xue, “Modification of SnO2 electron transport layer: Brilliant strategies to make perovskite solar cells stronger“, Chem Engineering Journal, vol. 439, 2022, pp. 135687 (1-15).
44. Jing Huang, Wanpeng Li, Junyang He, Rui Zhou, T. Yang, C. T. Liu, Weidong Zhang, Yong Liu*, and J. C. Huang*, “Dual heterogeneous structure facilitates excellent strength-ductility synergy in an additively manufactured multi-principal-element alloy”, Mater. Res. Lett., vol. 10, no. 9, 2022, pp. 575-584.
45. L. Romero-Resendiz, M. El-Tahawy, T. Zhang, M.C. Rossi, D. M. Marulanda-Cardona, T. Yang, V. Amigo-Borras, Y. Huang, H. Mirzadeh, I. J. Beyerlein, J. C. Huang, T. G. Langdon, and Y. T. Zhu, “Heterostructured stainless steel: properties, current trends and future perspectives”, Mater. Sci. Eng. R , vol. 150, 2022, pp. 100691 (1-55).
46. Tianbai Ji, Tianqi Niu, Jing Wang, Rong Lu, Zhangchuan Wen, Dongxiang Luo, Jacob C. Huang, Yonggang Min, Shun Wang, Yuriy N. Luponosov, Shuang Pan, Yihuang Chen, and Qifan Xue, “Crystallization Regulation of Solution-processed Two-dimensional Perovskite Solar Cells”, J. Mater. Chemistry A , vol. 10, 2022, pp. 13625-13650.
47. Sujuan Hu, Farzan Shabani, Baiquan Liu, Lingjiao Zhang, Min Guo, Guanhua Lu, Zhisheng Zhou, Jing Wang, Jacob Chih-Ching Huang, Yonggang Min, Qifan Xue, Hilmi Volkan Demir, and Chuan Liu, “High-performance deep-red colloidal quantum well light-emitting diodes enabled by the understanding of charge dynamics”, ACS Nano , vol. 16, 2022, pp. 10840–10851.
48. T. H. Chou, W. P. Li*, H. W. Chang, X. H. Du, W. S. Chuang, T. Yang*, Y. T. Zhu*, and J. C. Huang*, “Quantitative analyses of hetero-deformation induced strengthening in heterogeneous grain structure”, International Journal of Plasticity, vol. 159, 2022, pp. 103482 (1-15).
49. Hang Zou, Shifeng Gan, Hanchen Shen, Benzhao He, Zheng Zheng, Jingjun Li, J. C. Huang, Lei Zheng, Ben Zhong Tang, and Jing Zhang, “A novel drug susceptibility testing AIEgen with spatiotemporal resolved progress-reporting characteristic for therapy of drug-resistant tumor”, Mater. Today, vol. 61, 2022, pp. 117-128.
50. Wenyu Chen, Rui Zhou, Wanpeng Li, Yen-Hsiang Chen, Tzu-Hsiu Chou, Xu Wang, Yuntian Zhu*, and J. C. Huang*, “Effect of interstitial carbon and nitrogen on corrosion behavior of FeCoCrNi multi-principal element alloys made by selective laser melting”, Journal of Materials Science & Technology, vol. 148, 2023, pp. 52-63.
51. X. K. Zhang*, J. Yan, Y. H. Chen, R. Kevorkyants, T. Q. Wen, X. Sun, A. Hu, and J. C. Huang*, “Effects of lattice distortion and chemical short-range ordering on the incipient behavior of Ti-based multi-principal element alloy: MD simulations and DFT calculations”, accepted by Int. J. Plasticity, 2023.
52. Hao Jie Kong, Tao Yang, Rong Chen, Zengbao Jiao, Tianlong Zhang, Boxuan Cao, Junhua Luan, Shaofei Liu, Anding Wang, Jacob Chih-Ching Huang, Xun-Li Wang, and Chain Tsuan Liu, “Design of ultra-strong but ductile iron-based alloys with low supersaturations”, Acta Mater., vol. 256, 2023, pp. 119000 (1-17).
53. Xinyi Liu, Ming Wu, Xu Wang, Ke Gong, Jin Du, Dongxu Sun, and Jacob C. Huang, “Stress corrosion cracking behavior on carbon steel under the synergistic effects of chloride and bicarbonate ions in alternating wet-dry environment”, Corrosion Science, vol. 225, 2023, pp. 111624 (1-17).
54. Jing Huang, Wanpeng Li*, Tao Yang, Tzu-Hsiu Chou, Rui Zhou, Liu Bin, Jacob C. Huang*, Yong Liu*, Yuntian Zhu, “An additively manufactured precipitation-hardening medium entropy alloy with excellent strength-ductility synergy over a wide temperature range”, J. Mater. Sci. Tech. , vol. 197, 2024, pp. 247-264.
55. T. H. Chou, W. P. Li, L. Y. Zhu, J. Huang, F. Zhu, X. C. Li, W. Y. Chen, R. Zhou, J. H. Luan, Y. L. Zhao, Z. X. Wu, F. R. Chen, J. C. Huang, P. K. Liaw, X. L. Wang, T. Yang, “Unveiling critical impacts of thermodynamic instability and short-range order on deformation mechanisms of VCoNi medium-entropy alloy”, Acta Mater. , vol. 227, 2024, pp. 120190 (1-17).
D. Review papers
1. J. C. Huang* and T. H. Chuang, "Progress on Superplasticity and Superplastic Forming in Taiwan during 1987-1997", Materials Chemistry and Physics, vol. 57, 1999, pp. 195-206. Cited for 45 times.
2. Y. N. Wang and J. C. Huang*, “Texture Analysis on Hexagonal Materials”, Materials Chemistry and Physics, vol. 81, 2003, pp. 11-26. Cited for 874 times.
3. J. C. Huang*, J. P. Chu, and J. S. C. Jang, “Recent Progress on Metallic Glasses in Taiwan”, vol. 17, Intermetallics, 2009, pp. 973-987. Cited for 122 times.
4. J. P. Chu, J. C. Huang, J. S. C. Jang, Y. C. Wang, and P. K. Liaw, “Thin Film Metallic Glasses: Preparations, Properties, and Applications”, J. of Metals, vol. 62, no. 4, 2010, pp. 19-24. Cited for 104 times.
5. J. P. Chu, J. S. C. Jang, J. C. Huang, H. S. Chou, Y. Yang, J. C. Ye, Y. C. Wang, J. W. Lee, F. X. Liu, P. K. Liaw, Y. C. Chen, C. M. Lee, C. L. Li, and C. Rullyani “Thin film metallic glasses: unique properties and potential applications”, Thin Solid Films, vol. 520, 2012, pp. 5097-5122. Cited for 358 times.
E. ROC, USA and PRC Patents
1. H. P. Pu and J. C. Huang, G-R Su, "Low Temperature Superplasticity in 8090 Al-Li Base Alloys", ROC patent, 1993, Invention 062260, 1993-2012.
2. H. P Pu, J. C. Huang, H. C. Shih, and S-H Yen, "Thermomechanical Treatments for Making Superplastic 7075 and 7475 Al Sheets", ROC patent, 1995,Invention 070543, 1995-2014.
3. H. P. Pu and J. C. Huang, and H. C. Shih, "Processing Routes for Intertransformation between Low-Temperature and High-Temperature Superplasticity in 8090 Al-Li Alloys", ROC patent, 1995, Invention 073148, 1995-2015.
4. B. Y. Lou, Y. F. Huang, J. R. Huang, J. C. Huang, H. L. Lee, and H. C. Fu, "Processing Routes for Making 6061Al/SiC(p) Composites Possessing High Strain Rate Superplasticity", ROC patent, 2001, Invention 127987, 2001-2017.
5. I. C. Hsiao and J. C. Huang, H. C. Shih, "Low Temperature Superplasticity in 5083 Al-Mg Base Alloys", ROC patent, 2002, Invention 151060, 2002-2018.
6. H. K. Lin and J. C. Huang, “Fabrication and Press Forming of Low Temperature and High Strain Rate Superplasticity in AZ31 Mg Base Alloy”, ROC patent, 2003, Invention 177546, 2003-2019.
7. H. K. Lin and J. C. Huang, “Using Simple High Extrusion Ratio in Fabrication Low Temperature Superplasticity in AZ91 Mg Base Alloy”, ROC patent, 2003, Invention 180617, 2003-2019.
8. C. J. Lee and J. C. Huang, “Fabrication of Mg BasedNanocomposites Fabricated by Friction Stir Processing”, ROC patent, Invention, 2007, Invention 293333, 2007-2023.
9. J. S. C. Jang, J. Y. Ciou, T. H. Hung, J. C. Huang, and X. H. Du, “Glassy Metals Composite Materials”, US Patent, Invention, No. 7,955,477 B2, June 7, 2011.
10. J. S. C. Jang and J. C. Huang, “Toughening of metallic glasses”, Technology transfer技轉, NT$ 200,000, 2012.
11. J. S. C. Jang, J. Y. Ciou, T. H. Hung, J. C. Huang, and X. H. Du, “Enhanced Mechanical Performance of Mg Based Metallic Glass with Porous Mo Particles”, ROC patent, 2013, Invention 385256, 2013-2023.
12. C. T. Pan, C. L. Chen, M. F. Chen, Y. M. Hwang, and J. C. Huang, “Application of Berkvich-Shaped Mold to Optical Film”, ROC patent, 2013, Invention 408041, 2013-2023.
13. C. H. Lin, J. C. Huang, J. F. Chuang, C. H. Huang, J. S. C. Jang, C. H. Chen, H. C. Lee, M. C. Liu, and X. H. Du, “Analyzing Corrosion Activity of Amorphous Metallic Bio-Implant”, ROC patent, 2014, Invention 452292, 2014-2032.
14. J. C. Huang, T. T. Hu, T. G. Nieh, J. H. Hsu, S. Y. Kuan, and C. J. Lee, “Metallic Glass Coating and Manufacturing Method Thereof”, ROC patent, 2015, Invention 477618, 2015-2032.
15. C. T. Pan, J. C. Huang, F. C. Hsu, Y.J. Chen, “Micro-structure of metallic glasses to enhance the adhesion of bio implants”, ROC patent, 2015, Invention 491377, 2015-2032.
16. C. T. Pan, J. C. Huang, J. H. Hsu, Y. C. Chen, T. F. Hsu, C. M. Chang,可調控光場透鏡結合金屬玻璃反射光學膜,Technology transfer技轉, 科毅科技股份有限公司,100萬台幣。
17. C. T. Pan, J. C. Huang, Y. C. Chen, B. Y. Lin, B. H. Lin, Y. T. Lin, “一種反射燈具及其燈罩”, ROC patent, 2015, Invention 513941, 2015-2034.
18. Y. L. Chung and J. C. Huang, “Protection film and method for depositing the protection film”, ROC patent, 2015, Invention 527920, 2015-2034.
19. J. S. C. Jang, J. C. Huang, J. B. Li, H. C. Lin, “Porous Amorphous Alloy Artificial Joint and Manufacturing Method Thereof”, ROC patent, 2016, Invention 536976, 2016-2033.
20. J. S. C. Jang, P. H. Tsai, J. B. Li, P. C. Wong, and J. C. Huang, “Amorphous alloys based replaceable minimally invasive surgery devices”, ROC patent, 2016,Invention 559889, 2016-2032.
21. J. S. C. Jang, P. H. Tsai, J. B. Li, P. C. Wong, and J. C. Huang, “可替換式微型手術器械”, PRC patent, Invention ZL-2012-1-0199033.4, 2016-2036.
22. C. T. Pan, J. C. Huang,UVB光形設計結合抗菌金屬玻璃膜技術,Technology transfer技轉, 科毅科技股份有限公司,10萬台幣。
23. C. H. Lin, C. T. Pan, J. C. Huang, H. K. Lin, J. S. C. Jang, C. H. Chen, C. L. Yang, “Gradient porous bone scaffold material and its manufacturing method”, ROC patent, 2017, Invention 589282, 2017-2035.
24. J. S. C. Jang, J. C. Huang, C. H. Lin, P. H. Tsai, and T. H. Li, “Development of biocompatible Ti-based metallic glass for additive manufacturing 積層製造用具生物相容性之鈦基金屬玻璃合金”, ROC patent, Invention 598448, 2017-2037.
25. J. S. C. Jang, J. C. Huang, J. B. Li, H. C. Lin, “Porous Amorphous Alloy Artificial Joint and Manufacturing Method Thereof”, submitted to USA patent, 2023, pending (on 2nd rebuttal).
26. J. S. C. Jang, J. C. Huang, C. H. Lin, P. H. Tsai, and T. H. Li, “Biocompatible Ti-based metallic glass for additive manufacturing”, submitted to USA patent, 2023, pending (on 2nd rebuttal).
27. C. H. Lin, C. T. Pan, J. C. Huang, J. S. C. Jang, H. K. Lin, C. H. Chen, J. C. Yang, Y. K. Huang, and Y. S. Huang, “髖關節之漸進多孔人工植體幾何構型”, submitted to ROC patent, 2023, pending.
28. J. S. C. Jang, K. C. Liao, P. H. Tsai, J. C. Huang, “Non-equiatomic light-weight Ti-rich medium/high entropy alloys 富鈦非等比例輕量中熵與高熵合金”, submitted to ROC patent, 2023, pending.
29. Liliana Romero Resendiz, Yuntian Zhu, Jacob Chih-Ching Huang, and Tao Yang, “Heterostructured antimicrobial stainless steel and method for synthesizing the SAME”, submitted to USA and PRC patent, 2023, 140382, pending.
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