Article
  • Impact of Simultaneous Silane and PCPA Grafting on the Thermal and Mechanical Properties of BN and GO Hybrid Composites
  • Youngsung Cho*,# , Jihoon Kim*,# , Jangwoo Cho*, and Jooheon Kim*, **,†

  • *Departement of Chemical Engineering, Chung-Ang University, 84 Heukseok-ro, Dongjak-gu, Seoul 06974, Korea
    **Department of Intelligent Energy and Industry, Graduate School, Chung-Ang University, Seoul 06974, Korea

  • 실란과 PCPA 그래프팅의 동시적인 영향이 BN 및 GO 하이브리드 복합체의 열 및 기계적 특성에 미치는 영향
  • 조영성*,# · 김지훈*,# · 조장우* · 김주헌*, **,†

  • *중앙대학교 화학공학과, **중앙대학교 대학원 지능형에너지산업학과

  • Reproduction, stored in a retrieval system, or transmitted in any form of any part of this publication is permitted only by written permission from the Polymer Society of Korea.

References
  • 1. Liu, B.; Yang, J.; Zhang, X.; Yang, Q.; Zhang, J.; Li, X. Development and Application of Magnesium Alloy Parts for Automotive OEMs: A Review. J. Magnes. Alloy. 2023, 11, 15-47.
  •  
  • 2. Pan, Y.; Stark, R. An Interpretable Machine Learning Approach for Engineering Change Management Decision Support in Automotive Industry. Comput. Ind. 2022, 138, 103633-103650.
  •  
  • 3. Savari, G. F.; Sathik, M. J.; Raman, L. A.; El-Shahat, A.; Hasanien, H. M.; Almakhles, D.; Abdel Aleem, S. H. E.; Omar, A. I. Assessment of Charging Technologies, Infrastructure and Charging Station Recommendation Schemes of Electric Vehicles: A Review. Ain. Shams. Eng. J. 2023, 14, 101938-101952.
  •  
  • 4. Sun, Z.; Li, J.; Yu, M.; Kathaperumal, M.; Wong, C. P. A Review of the Thermal Conductivity of Silver-Epoxy Nanocomposites as Encapsulation Material for Packaging Applications. Chem. Eng. J. 2022, 446, 137319-137332.
  •  
  • 5. Li, R.; Yang, X.; Li, J.; Shen, Y.; Zhang, L.; Lu, R.; Wang, C.; Zheng, X.; Chen, H.; Zhang, T. Review on Polymer Composites with High Thermal Conductivity and Low Dielectric Properties for Electronic Packaging. Mater. Today. Phys 2022, 22, 100594-100611.
  •  
  • 6. Wen, Y.; Chen, C.; Ye, Y.; Xue, Z.; Liu, H.; Zhou, X.; Zhang, Y.; Li, D.; Xie, X.; Mai, Y. W. Advances on Thermally Conductive Epoxy-Based Composites as Electronic Packaging Underfill Materials-A Review. Adv. Mater. 2022, 34, 2201023-2201044.
  •  
  • 7. Park, D.; Ju, H.; Kim, J. Enhanced Thermoelectric Properties of Flexible N-Type Ag2Se Nanowire/Polyvinylidene Fluoride Composite Films Synthesized via Solution Mixing. J. Ind. Eng. Chem. 2021, 93, 333-338.
  •  
  • 8. An, D.; He, R.; Chen, J.; Li, Z.; Sun, Z.; Yu, H.; Liu, Y.; Zhang, Z.; Feng, W.; Wong, C. Interacted Boron Nitride/Mxene Hybrids with Vertically Aligned Networks for Improving the Thermal Conductivity, Electromagnetic Wave Absorption and Mechanical Properties for the Polymer-Based Thermal Interface Materials. Compos. Part. A. Appl. Sci. Manuf. 2023, 174, 107727-107735.
  •  
  • 9. Hu, Q.; Bai, X.; Zhang, C.; Zeng, X.; Huang, Z.; Li, J.; Li, J.; Zhang, Y. Oriented BN/Silicone Rubber Composite Thermal Interface Materials with High out-of-Plane Thermal Conductivity and Flexibility. Compos. Part. A. Appl. Sci. Manuf. 2022, 152, 106681-106688.
  •  
  • 10. Xie, Z.; Dou, Z.; Wu, D.; Zeng, X.; Feng, Y.; Tian, Y.; Fu, Q.; Wu, K. Joint-Inspired Liquid and Thermal Conductive Interface for Designing Thermal Interface Materials with High Solid Filling yet Excellent Thixotropy. Adv. Funct. Mater. 2023, 33, 2214071-2214079.
  •  
  • 11. Wu, Q.; Li, W.; Liu, C.; Xu, Y.; Li, G.; Zhang, H.; Huang, J.; Miao, J. Carbon Fiber Reinforced Elastomeric Thermal Interface Materials for Spacecraft. Carbon 2022, 187, 432-438.
  •  
  • 12. Chung, D. D. L. A Critical Review of Carbon-Based Thermal Interface Materials. Mater. Chem. Phys. 2023, 309, 128432-128440.
  •  
  • 13. An, D.; Chen, Y.; He, R.; Yu, H.; Sun, Z.; Liu, Y.; Liu, Y.; Lian, Q.; Feng, W.; Wong, C. The Polymer-Based Thermal Interface Materials with Improved Thermal Conductivity, Compression Resilience, and Electromagnetic Interference Shielding Performance by Introducing Uniformly Melamine Foam. Adv. Compos. Hybrid. Mater. 2023, 6, 136-146.
  •  
  • 14. Zhao, H. Y.; Yu, M. Y.; Liu, J.; Li, X.; Min, P.; Yu, Z. Z. Efficient Preconstruction of Three-Dimensional Graphene Networks for Thermally Conductive Polymer Composites. Nano-Micro. Lett. 2022, 14, 129-168.
  •  
  • 15. Yu, H.; Chen, C.; Sun, J.; Zhang, H.; Feng, Y.; Qin, M.; Feng, W. Highly Thermally Conductive Polymer/Graphene Composites with Rapid Room-Temperature Self-Healing Capacity. Nano-Micro. Lett. 2022, 14, 135-148.
  •  
  • 16. Lin, H.; Jian, Q.; Bai, X.; Li, D.; Huang, Z.; Huang, W.; Feng, S.; Cheng, Z. Recent Advances in Thermal Conductivity and Thermal Applications of Graphene and Its Derivatives Nanofluids. Appl. Therm. Eng. 2023, 218, 119176-119202.
  •  
  • 17. Tan, X.; Yuan, Q.; Qiu, M.; Yu, J.; Jiang, N.; Lin, C. Te; Dai, W. Rational Design of Graphene/Polymer Composites with Excellent Electromagnetic Interference Shielding Effectiveness and High Thermal Conductivity: A Mini Review. J. Mater. Sci. Technol. 2022, 117, 238-250.
  •  
  • 18. Chen, Q.; Liu, L.; Zhang, A.; Wang, W.; Wang, Z.; Zhang, J.; Feng, J.; Huo, S.; Zeng, X.; Song, P. An Iron Phenylphosphinate @graphene Oxide Nanohybrid Enabled Flame-Retardant, Mechanically Reinforced, and Thermally Conductive Epoxy Nanocomposites. Chem. Eng. J. 2023, 454, 140424.
  •  
  • 19. Li, Y.; Zhang, T.; Zhang, Y.; Zhao, C.; Zheng, N.; Yu, W. A Comprehensive Experimental Study Regarding Size Dependence on Thermal Conductivity of Graphene Oxide Nanosheet. Int. Commun. Heat Mass Transf. 2022, 130, 105764.
  •  
  • 20. Cho, Y.; Han, S.; Kim, J. Improved Thermal, Dielectric, and Mechanical Properties of Acrylate Composites with Diethylene Glycol and Silane-Treated Ternary Hybrid Fillers via Three-Dimensional Vat Photopolymerization. Mater. Chem. Phys. 2023, 309, 128360.
  •  
  • 21. Li, M.; Sun, Y.; Feng, D.; Ruan, K.; Liu, X.; Gu, J. Thermally Conductive Polyvinyl Alcohol Composite Films via Introducing Hetero-Structured MXene@silver Fillers. Nano. Res. 2023, 16, 7820-7828.
  •  
  • 22. Li, Y.; Zhang, D.; Zhou, B.; He, C.; Wang, B.; Feng, Y.; Liu, C. Synergistically Enhancing Electromagnetic Interference Shielding Performance and Thermal Conductivity of Polyvinylidene Fluoride-Based Lamellar Film with MXene and Graphene. Compos. Part A: Appl. Sci. Manuf. 2022, 157, 106945.
  •  
  • 23. Cho, Y.; Kim, J. Enhanced Thermal and Mechanical Properties of 3D-Printed PEG Containing Acrylate Composite with Surface-Treated BN via Digital Light Processing. Polym. Test. 2023, 118, 107898.
  •  
  • 24. Cho, Y.; Kim, J. Effects of Two Silane Surface Modifications with Different Functional Groups on the Thermal Conductivity and Mechanical Properties of UV-Cured Composites with High Ceramic Filler Loading. Ceram. Int. 2022, 48, 32001-32008.
  •  
  • 25. Yu, H.; Guo, P.; Qin, M.; Han, G.; Chen, L.; Feng, Y.; Feng, W. Highly Thermally Conductive Polymer Composite Enhanced by Two-Level Adjustable Boron Nitride Network with Leaf Venation Structure. Compos. Sci. Technol. 2022, 222, 109406.
  •  
  • 26. Jang, W.; Lee, S.; Kim, N. R.; Koo, H.; Yu, J.; Yang, C. M. Eco-Friendly and Scalable Strategy to Design Electrically Insulating Boron Nitride/Polymer Composites with High through-Plane Thermal Conductivity. Composite Part B. 2023, 248, 110355.
  •  
  • 27. An, L.; Yu, Y.; Cai, Q.; Mateti, S.; Li, L. H.; Chen, Y. I. Hexagonal Boron Nitride Nanosheets: Preparation, Heat Transport Property and Application as Thermally Conductive Fillers. Progress in Materials Science. 2023, 138, 101154.
  •  
  • 28. Oh, H.; Kim, Y.; Wie, J.; Kim, K.; Kim, J. Tailoring of Si–C–N–O Ceramic-Coated Reduced Graphene Oxide by Oil/Water-Solution Process for High Thermal Conductive Epoxy Composite with Electrical Insulation. Compos. Sci. Technol. 2020, 197, 108257.
  •  
  • 29. Yang, J.; Shen, X.; Yang, W.; Kim, J. K. Templating Strategies for 3D-Structured Thermally Conductive Composites: Recent Advances and Thermal Energy Applications. Prog. Mater. Sci. 2023, 133, 101054.
  •  
  • 30. Ma, Q.; Wang, Z.; Liang, T.; Su, Y.; Li, J.; Yao, Y.; Zeng, X.; Pang, Y.; Han, M.; Zeng, X.; Xu, J.; Ren, L.; Sun, R. Unveiling the Role of Filler Surface Energy in Enhancing Thermal Conductivity and Mechanical Properties of Thermal Interface Materials. Compos. Part A: Appl. Sci. Manuf. 2022, 157, 106904.
  •  
  • 31. Ouyang, Y.; Bai, L.; Tian, H.; Li, X.; Yuan, F. Recent Progress of Thermal Conductive Ploymer Composites: Al2O3 Fillers, Properties and Applications. Compos. Part A: Appl. Sci. Manuf. 2022, 152, 106685.
  •  
  • 32. Peng, X.; Qin, J.; Huang, D.; Zeng, Z.; Tang, C. Enhancement on Thermal and Mechanical Properties of Insulating Paper Cellulose Modified by Silane Coupling Agent Grafted HBN. Macromol. Mater. Eng. 2022, 307, 2200424.
  •  
  • 33. Ozen, M.; Demircan, G.; Kisa, M.; Acikgoz, A.; Ceyhan, G.; Işıker, Y. Thermal Properties of Surface-Modified Nano-Al2O3/Kevlar Fiber/Epoxy Composites. Mater. Chem. Phys. 2022, 278, 125689.
  •  
  • 34. Yang, D.; Wei, Q.; Yu, L.; Ni, Y.; Zhang, L. Natural Rubber Composites with Enhanced Thermal Conductivity Fabricated via Modification of Boron Nitride by Covalent and Non-Covalent Interactions. Compos. Sci. Technol. 2021, 202, 108590.
  •  
  • 35. Casanova, S.; Liu, T. Y.; Chew, Y. M. J.; Livingston, A.; Mattia, D. High Flux Thin-Film Nanocomposites with Embedded Boron Nitride Nanotubes for Nanofiltration. J. Memb. Sci. 2020, 597, 117749.
  •  
  • 36. Chen, Q.; Hao, D.; Wei, J.; Jia, C.; Wang, H.; Shi, L.; Liu, S.; Ning, F.; An, M.; Jia, Z.; Dong, F.; Ji, Y. The Influence of High-Fluorine Groundwater on Surface Soil Fluorine Levels and Their FTIR Characteristics. Arabian J. Geosciences 2020, 13, 383.
  •  
  • 37. Khan, M. U. A.; Haider, S.; Raza, M. A.; Shah, S. A.; Razak, S. I. A.; Kadir, M. R. A.; Subhan, F.; Haider, A. Smart and PH-Sensitive RGO/Arabinoxylan/Chitosan Composite for Wound Dressing: In-Vitro Drug Delivery, Antibacterial Activity, and Biological Activities. Int. J. Biol. Macromol. 2021, 192, 820-831.
  •  
  • 38. Manu, M.; Reby Roy, K. E.; Mubarak Ali, M.; Mathew, A. A. Experimental Study on Silane as an Epoxy Additive for Improving the Impact Strength of CFRP Composites at Cryogenic Temperatures. Mater. Today Proc. 2021, 52, 2279-2284.
  •  
  • 39. Dhali, K.; Daver, F.; Cass, P.; Adhikari, B. Surface Modification of the Cellulose Nanocrystals through Vinyl Silane Grafting. Int. J. Biol. Macromol. 2022, 200, 397-408.
  •  
  • 40. Farrokhzad, M. A. High Temperature Oxidation Behaviour of Autocatalytic Ni-P-BN(h) Coatings. Surf. Coat. Technol. 2017, 309, 390-400.
  •  
  • 41. Xu, W.; Yang, C.; Su, W.; Zhong, N.; Xia, X. Effective Corrosion Protection by PDA-BN@CeO2 Nanocomposite Epoxy Coatings. Colloids Surf A Physicochem Eng. Asp. 2023, 657, 130448.
  •  
  • 42. Mahari, S.; Gandhi, S. Electrochemical Immunosensor for Detection of Avian Salmonellosis Based on Electroactive Reduced Graphene Oxide (RGO) Modified Electrode. Bioelectrochemistry 2022, 144, 108036.
  •  
  • 43. Sahoo, B. P.; Das, D.; Rath, P.; Chakrabarty, S.; Roy, S.; Mohanta, K. Improving Reinforcement Properties of CNTs in Aluminium Matrix Composites: A Case of Surface Modification through AlN Nano-Particle Grafting. Surf. Interfaces 2023, 36, 102571.
  •  
  • 44. Wang, Z. Y.; Sun, X.; Wang, Y.; Liu, J. D.; Zhang, C.; Zhao, Z. B.; Du, X. Y. A High-Performance Thermally Conductive and Electrically Insulating Silver@siloxane/Graphene/Epoxy Composites at Low Filler Content: Fabrication, Mechanism Study of Insulation and Thermal Conductivity Enhancement. Ceram. Int. 2023, 49, 2871-2880.
  •  
  • Polymer(Korea) 폴리머
  • Frequency : Bimonthly(odd)
    ISSN 0379-153X(Print)
    ISSN 2234-8077(Online)
    Abbr. Polym. Korea
  • 2023 Impact Factor : 0.4
  • Indexed in SCIE

This Article

  • 2024; 48(5): 543-552

    Published online Sep 25, 2024

  • 10.7317/pk.2024.48.5.543
  • Received on Apr 29, 2024
  • Revised on May 23, 2024
  • Accepted on May 28, 2024

Correspondence to

  • Jooheon Kim
  • *Departement of Chemical Engineering, Chung-Ang University, 84 Heukseok-ro, Dongjak-gu, Seoul 06974, Korea
    **Department of Intelligent Energy and Industry, Graduate School, Chung-Ang University, Seoul 06974, Korea

  • E-mail: jooheonkim@cau.ac.kr