基本信息

 

孟子捷,博士,助理教授,西安交大青年优秀人才计划(A类)入选者

荣誉获奖

  • 孟子捷. 博士研究生国家奖学金. 教育部, 2021.
  • 孟子捷. 博士研究生国家奖学金. 教育部, 2020.
  • 孟子捷(排3).第七届全国大学生机械创新设计大赛二等奖. 全国大学生机械设计大赛组委会、教育部高等学校机械基础课程教学指导委员会, 2016.

  • 孟子捷(排7). 陕西省科技工作者创新创业大赛一等奖. 陕西省科学技术厅、教育厅, 2020.
  • 孟子捷. 陕西省保健协会胸壁外科专委会优秀论文一等奖. 陕西省保健协会, 2023.

  • 孟子捷. 第十届NSK机械工程优秀论文成果奖. 恩斯克投资有限公司, 2020.
  • 孟子捷. HIWIN奖学金. 上银科技股份有限公司, 2022.
  • 孟子捷. 谢友柏基金奖学金. 西安交通大学, 2021.
  • 孟子捷. 西安交通大学优秀研究生. 西安交通大学, 2020.
  • 孟子捷(排6). 西安交通大学“腾飞杯”创新大赛创新赛道一等奖. 西安交通大学, 2022.

联系方式

单位:西安交通大学前沿技术前沿科学技术研究院、西安交通大学机械工程学院,精密微纳制造技术全国重点实验室

ResearchGate:https://www.researchgate.net/profile/Zijie-Meng?ev=hdr_xprf

Orcid ID: 0000-0002-5375-5162

邮箱:zijiemeng@xjtu.edu.cn

地址:陕西省西安市雁翔路99号 精密微纳制造技术全国重点实验室 西五楼 A415

 

微信:

 

站点计数器

工作经历与教育背景

团队具有高度医工交叉特色,欢迎优秀同学的加入!

要求对科研具有浓厚的兴趣,勤奋刻苦,具有团队精神。

 

主要研究方向:

  • 生物制造与生物3D打印工艺装备
  • 医用可降解植入物设计与3D打印
  • 活性组织/器官3D打印与功能化

 

工作经历

  • 2023.07 — 今             西安交通大学,前沿科学技术研究院,助理教授

 

教育背景

  • 2017.09 — 2023.06    西安交通大学,机械工程学院,博士
  • 2013.09 — 2017.06    西安交通大学,机械工程学院,学士
  • 2015.09 — 2016.02    日本京都大学,交换学生

 

 

论文期刊

没有找到条目。
论文标题 作者 发表/完成日期 期刊名称
Microphysiological systems inspired by leaf venation Mao Mao, Zijie Meng, Jiankang He and Dichen Li 2024-04-20 Trends in Biotechnology
3D printing in space: from mechanical structures to living tissues Mao Mao#, Zijie Meng#, Xinxin Huang, et al. 2024-02-12 International Journal of Extreme Manufacturing
Effect of in vivo implantation sites on the graft-to-bone osteointegration induced by gradient nanofibrous scaffolds Jiang Nan#, Zhang Weijie#, Meng Zijie#, et al. 2023-12-01 Applied Materials Today
A cell-free tissue-engineered tracheal substitute with sequential cytokine release maintained airway opening in a rabbit tracheal full circumferential defect model Yujian Liu#, Kaifu Zheng#, Zijie Meng#, et al. 2023-06-01 Biomaterials
Melt-based embedded printing for freeform fabrication of overhanging and flexible polycaprolactone scaffolds Zeng Xiangbin, Meng Zijie, Qiu Zhennan, et al. 2023-05-24 Virtual and Physical Prototyping
Development of electro-conductive composite bioinks for electrohydrodynamic bioprinting with microscale resolution Ayiguli Kasimu#, Zhu Hui#, Meng Zijie#, et al. 2023-04-16 Advanced Biology
Embedding aligned nanofibrous architectures within 3D-printed polycaprolactone scaffolds for directed cellular infiltration and tissue regeneration Meng Zijie#, Mu Xingdou#, He Jiankang, et al. 2023-03-03 International Journal of Extreme Manufacturing
Exploration of electrohydrodynamic printing potentially for in-space fabrication of microscale functional structures: A preliminary study by an anti-gravity configuration Qu Manqiang#, Meng Zijie#, Gao Tianjian, et al. 2023-01-05 Additive Manufacturing
Bioprinted living tissue constructs with layer-specific, growth factor-loaded microspheres for improved enthesis healing of a rotator cuff Bai Lang#, Han Qian#, Meng Zijie#, et al. 2022-12-01 Acta Biomaterialia
Micro/nanoscale electrohydrodynamic printing for functional metallic structures Meng Zijie#, Li Jiaxin#, Chen Yuhua, et al. 2022-12-01 Materials Today Nano
Embedded bioprinting for designer 3D tissue constructs with complex structural organization Zeng Xiangbin#, Meng Zijie#, He Jiankang, et al. 2022-03-01 Acta Biomaterialia
Enhanced attachment and collagen type I deposition of MC3T3-E1 cells via electrohydrodynamic printed sub-microscale fibrous architectures Hu Shugang#, Meng Zijie#, Zhou Junpeng, et al. 2022-02-11 International Journal of Bioprinting
Expanding melt-based electrohydrodynamic printing of highly-ordered microfibrous architectures to cm-height via in situ charge neutralization He Jiankang, Hao Guanzhe, Meng Zijie, et al. 2021-12-16 Advanced Materials Technologies
Development of three-dimensional printed biodegradable external airway splints with native-like shape and mechanical properties for tracheomalacia treatment Liu Wenhao#, Meng Zijie#, Zheng Kaifu#, et al. 2021-11-15 Materials & Design
Additive manufacturing and large deformation responses of highly-porous polycaprolactone scaffolds with helical architectures for breast tissue engineering Meng Zijie, He Jiankang, Li Dichen. 2021-05-04 Virtual and Physical Prototyping
Fabrication of microfibrous PCL/MWCNTs scaffolds via melt-based electrohydrodynamic printing Meng Zijie, He Jiankang, Xia Zhengxun, et al. 2020-11-01 Materials Letters
Melt-based, solvent-free additive manufacturing of biodegradable polymeric scaffolds with designer microstructures for tailored mechanical/biological properties and clinical applications Meng Zijie, He Jiankang, Li Jiaxin, et al. 2020-08-17 Virtual and Physical Prototyping
In-situ re-melting and re-solidification treatment of selective laser sintered polycaprolactone lattice scaffolds for improved filament quality and mechanical properties Meng Zijie, He Jiankang, Cai Zhihao, et al. 2020-05-15 Biofabrication
Design and additive manufacturing of flexible polycaprolactone scaffolds with highly-tunable mechanical properties for soft tissue engineering Meng Zijie, He Jiankang, Cai Zhihao, et al. 2020-04-01 Materials & Design