费铭恩 讲师(高校)材料工程学院 |
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发表同行评议的期刊论文40余篇,其中第一作者及通讯作者论文13篇,被引总数超过1500次,H-index 23;获得授权发明专利7件;多次参加国内外学术会议并作口头报告。主持/参与国家自然科学基金、国家重点研发计划子课题、美国农业部 AFRI Competitive Grant等,担任美国化学会(ACS)会员、美国塑料工程师协会(SPE)青年会员、中国复合材料学会会员、中国复合材料学会青年工作委员会委员、中国复合材料学会天然纤维复合材料分会委员、中国林学会会员。Carbohydrate Polymers, Composite Part A, Additive Manufacturing, Construction and Building Materials, Polymer Degradation and Stability, Polymer等期刊审稿人。
个人信息
教育经历2019-01 至 2023-12, 华盛顿州立大学, 材料科学与工程, 博士 2016-09 至 2018-12, 福建农林大学, 林业工程, 硕士 2012-09 至 2016-06, 福建农林大学, 材料科学与工程, 学士 工作经历2024-03 至 今, 福建农林大学, 材料工程学院, 讲师 2023-05 至 2023-09, 华盛顿州立大学, 复合材料与工程中心, Technical Assistant 荣誉及奖励2023年 Heh-Won Chang PhD Fellowship in Green Chemistry 2023年 GC&E Poster Competition Award 2023年 Best Oral Presentation Award for the MME Poster Session 2018年 国家留学基金资助出国留学资格 教学活动1.指导学生参加“大龙杯”第四届全国高分子材料实验实践大赛获个人二等奖和团体三等奖 2.本科生课程《高分子化学》 研究领域生物基高分子、纤维增强复合材料、聚合物降解回收、绿色土木工程材料 开授课程2024~2025 秋季学期:本科生课程《高分子化学》 2024~2025 春季学期:本科生课程《高分子化学实验》;硕士生课程《胶黏剂专论》 科研项目2024 国家自然科学基金重大项目子课题:竹材分子多重拓扑网络构筑与代塑材料性能构效调控机制. 项目编号32494794,任务主持人 2024 国家自然科学基金青年基金项目:废弃聚氨酯定向胺解制备木材胶黏剂的分子设计及胶接机理. 项目编号32401506,主持 2024 国家重点研发计划子课题:高品质二元胺炼制集成技术. 项目编号2024YFB4205905-03,参与 2020 美国农业部 AFRI Competitive Grant:A Biobased Catalyst-free Epoxy Vitrimer System Built on Hyperbranched Prepolymer and Its Potential Application for Self-healable Powder Coating. 项目编号2020-67021-31138,参与 2019 美国能源部:Upcycling of CFRP Waste: Viable Ecofriendly Chemical Recycling and Manufacturing of Novel Repairable and Recyclable Composites. 项目编号DE-EE0008931,参与 2019 美国运输研究委员会 NCHRP IDEA Program:A Novel Durable, Healable and Conveniently Removable Pavement Marking Material Suitable for Both Permanent and Temporary Marking Uses. 项目编号NCHRP-IDEA Project 219,参与 2018 国家自然科学基金青年基金项目:纳米纤维素晶体对水泥基材料水化反应及微观结构影响机理的研究. 项目编号51808121,参与 2018 国家自然科学基金青年基金项目:改性红麻纤维/棕榈油基树脂复合材料的协同制备及其界面结合机制. 项目编号31800486,参与 2018 福建省科学技术厅高校产学合作项目:竹纤维增强水泥混凝土复合材料制备关键技术及其工程应用. 项目编号2018H6004,参与 论文著作[1] Mingen Fei#, Qingbing Cai#, Weijian Wu, Xiaoqian Yan, Huilong Zhao, Kunming Yu, Huaye Yu, Shuyi Wu, Xiaoyan Zheng, Wendi Liu*,Renhui Qiu*. Surface modified slag fiber reinforced asphalt mixture: Enhancement of pavement performance and field validation. Case Studies in Construction Materials, 2025, 22, e04505. (IF 6.5, 中科院二区) [2] Yongtong Fan#, Xueliang Chen#, Kunqi Ling, Han Chen, Wendi Liu, Renhui Qiu*, Mingen Fei*. Investigation of waterborne epoxy-modified cement mortar with copper slag fillers: Hydration, material performance, and pore structure. Case Studies in Construction Materials, 2024, e04054. DOI: https://doi.org/10.1016/j.cscm.2024.e04054. (IF 6.5, 中科院二区) [3] Mingen Fei#, Xueliang Chen#, Han Chen, Yongtong Fan, Yongchen Peng, Yu-Chung Chang, Wendi Liu*, Renhui Qiu*. Eco-friendly and cost-effective epoxy binder for polymer mortar utilizing oregano oil-based hardener. Industrial Crops and Products, 2024, 222(4): 120024. DOI: https://doi.org/10.1016/j.indcrop.2024.120024. (IF 5.6, 中科院一区top) [4] Jie Pan, Xueliang Chen, Yizhen Chen, Wendi Liu, Mingen Fei*, Renhui Qiu*. Preparation of a biobased PU/EP IPN concrete binder with balanced performance and decent adhesion. Construction and Building Materials, 2024, 428, 136329. DOI: https://doi.org/10.1016/j.conbuildmat.2024.136329. (IF 7.4, 中科院一区top) [5] Mingen Fei#, Chenhui Luo#, Xiaoyan Zheng, Tengfei Fu, Kunqi Ling, Han Chen, Wendi Liu*, Renhui Qiu*. High-performance pervious concrete using cost-effective modified vinyl ester as binder. Construction and Building Materials, 2024, 414, 134908. DOI:10.1016/j.conbuildmat.2024.134908. (IF 7.4, 中科院一区top) [6] Mingen Fei, Wangcheng Liu, Lin Shao, Yiding Cao, Bliss J. Brian, Baoming Zhao*, Jinwen Zhang*. Hemp fiber reinforced dual dynamic network vitrimer biocomposites with direct incorporation of amino silane. Chemical Engineering Journal, 2024, 480, 148019. DOI: https://doi.org/10.1016/j.cej.2023.148091. (IF 15.1, 中科院一区top) [7] Mingen Fei, Wentao Fu, Xiaoyan Zheng, Yizhen Chen, Wendi Liu*, Renhui Qiu*. Enhancing cement composite interface with waterglass modification on bamboo fiber: A viable and effective approach. Construction and Building Materials, 2024,411, 134338. DOI: 10.1016/j.conbuildmat.2023.134338. (IF 7.4, 中科院一区top) [8] Mingen Fei, Yu-Chung Chang, Cheng Hao, Lin Shao, Wangcheng Liu, Baoming Zhao*, Jinwen Zhang*. Highly engineerable Schiff base polymer matrix with facile fiber composite manufacturability and hydrothermal recyclability. Composites Part B: Engineering, 2023, 248: 110366. DOI: 10.1016/j.compositesb.2022.110366. (IF 13.1, 中科院一区top) [9] Mingen Fei, Tuan Liu, Baoming Zhao, Anthony Otero, Yu-Chung Chang, Jinwen Zhang*. From glassy plastic to ductile elastomer: Vegetable oil-based UV-curable vitrimers and their potential use in 3D printing. ACS Applied Polymer Materials, 2021, 3, 5, 2470-2479. DOI: 10.1021/acsapm.1c00063. (IF 5, 中科院二区) [10] Mingen Fei, Tuan Liu, Tengfei Fu, Jinwen Zhang, Yuchao Wu, Renhui Qiu*, Wendi Liu*. Styrene-free soybean oil thermoset composites reinforced by hybrid fibers from recycled and natural resources. ACS Sustainable Chemistry and Engineering, 2019, 7(21): 17808-17816. 10.1021/acssuschemeng.9b04308. (IF 8.4, 中科院一区top) [11] Mingen Fei, Tianshun Xie, Wendi Liu, Renhui Qiu*. Toughening of bamboo fibers/unsaturated polyester composites with 2-acetoacetoxyethyl methacrylate. Polymer Composites, 2019, 40(4): 1595-1601. DOI: 10.1002/pc.24906. (IF 5.2, 中科院二区) [12] Mingen Fei, Wendi Liu, Anming Jia, Yang Ban, Renhui Qiu*. Bamboo fibers composites based on styrene-free soybean-oil thermosets using methacrylates as reactive diluents. Composites Part A: Applied Science and Manufacturing, 2018, 114: 40-48. DOI: 10.1016/j.compositesa.2018.08.007. (IF 8.7, 中科院一区top) [13] Mingen Fei, Tianshun Xie, Wendi Liu, Han Chen, Renhui Qiu*. Surface grafting of bamboo fibers with 1,2-epoxy-4-vinylcyclohexane for reinforcing unsaturated polyester. Cellulose, 2017, 24(12): 5505-5514. DOI: 10.1007/s10570-017-1497-1. (IF 5.7, 中科院一区top) [14] Mingen Fei#, Linli Sun#, Huaye Yu, Weijian Wu, Qingbing Cai, Xiaoyan Zheng, Shuyi Wu, Xueqiang Liu, Wendi Liu*, Renhui Qiu*. Polymer modifier from vinyl ester and soybean oil derivatives: Enhancing recycled asphalt and PET fiber-reinforced asphalt mixture. Journal of Infrastructure Preservation and Resilience, 2025. (Revision) 科技成果[1] 邱仁辉;费铭恩;刘文地;贾暗明;班阳;於德美;傅文涛;范永通基于甲基丙烯酸酯交联大豆油基树脂的植物纤维增强复合材料及其制备方法发明专利专利号:ZL107915811A [2] 邱仁辉;费铭恩;刘文地;陈婷婷;付腾飞;於德美;班阳;贾暗明;范永通;傅文涛一种PET废纤/竹纤维增强无苯乙烯大豆油基树脂复合材料发明专利专利号:ZL109354834A [3] 邱仁辉;费铭恩;刘文地;班阳;贾暗明;於德美;范永通;傅文涛;付腾飞一种大豆油基聚氨酯/环氧树脂灌浆材料及其制备方法发明专利专利号:ZL108276550A |