Mingyang Li
Research Fellow
Also affiliated: Shihezi University (2025); Kunming University of Science and Technology (2023–2024); Qingdao University (2023–2025); Shanghai University (2017); Yunnan Normal University (2024–2025); Beijing Institute of Technology (2017–2018); University of Iowa (2010); University of Science and Technology of China (2025); Northeastern University (2013); Binzhou Medical University (2023); Tianjin University of Technology (2024); University of Shanghai for Science and Technology (2024); University of Electronic Science and Technology of China (2015–2017); Binzhou University (2023); North China Electric Power University (2015); Shandong University (2024); Linyi University (2024); Ningbo University of Technology (2023–2025); Tianjin University (2022–2025); Hefei University of Technology (2019); Maxwell Technologies (United States) (2025); Nanjing Forestry University (2011); City University of Hong Kong (2023); Northwestern Polytechnical University (2022–2025); Nanyang Technological University (2017–2025); Shenzhen University (2025); Yunnan University (2025); Wuhan University of Technology (2020–2025); Peking University (2025); Missouri University of Science and Technology (2014–2016); China University of Petroleum, Beijing (2024); Ministry of Ecology and Environment (2025); Harbin Institute of Technology (2017–2025); Hainan University (2025); Beijing Jiaotong University (2008–2024); Lanzhou University of Technology (2013); Chang'an University (2025); China University of Mining and Technology (2023–2025); National Tsing Hua University (2012); Nanjing Institute of Technology (2023); China Aerospace Science and Technology Corporation (2018); Health Alliance International (2013); Liaoning University of Technology (2011); Inner Mongolia University of Science and Technology (2023–2025); University of Jinan (2014–2016); Guilin University of Technology (2025); Soochow University (2025); Yanshan University (2025); Beijing Institute of Aeronautical Materials (2025); Guangxi Academy of Special Crops (2025); State Key Laboratory of Pollution Control and Resource Reuse (2022–2024); China Institute of Water Resources and Hydropower Research (2025); Henan University of Engineering (2025); China Automotive Technology and Research Center (2023); Energy Research Institute (2025); Jiangsu University of Science and Technology (2019); Institute of Disaster Prevention (2025); Research Center for Applied Science, Academia Sinica (2015–2020); Institute of Soil and Water Conservation (2024); Hubei Provincial Center for Disease Control and Prevention (2018); City University of Hong Kong, Shenzhen Research Institute (2023); Southern Marine Science and Engineering Guangdong Laboratory (Guangzhou) (2021); Ministry of Education (2025); Northwest Institute For Non-Ferrous Metal Research (2023); Hubei Provincial Water Resources and Hydropower Planning Survey and Design Institute (2018–2023); Xi’an University (2025); Taiwan Semiconductor Manufacturing Company (China) (2025); Taiwan Semiconductor Manufacturing Company (Taiwan) (2021–2025); General Research Institute for Nonferrous Metals (China) (2022); San’an Optoelectronics (China) (2015); China Aluminum International Engineering Corporation Limited (China) (2012); Grinm Advanced Materials (China) (2022); Yunnan Province Science and Technology Department (2024); Xi'an University of Technology (2025); Institute of Atomic and Molecular Sciences, Academia Sinica (2015); Economic Research Institute (2024); Jilin Electric Power Research Institute (China) (2025); Semiconductor Manufacturing International (China) (2025); Singapore Centre for Environmental Life Sciences Engineering (2021); State Key Laboratory of Vehicle NVH and Safety Technology (2025); Sanya University (2025); XTC (China) (2025); Karamay Central Hospital of Xinjiang (2025); Hezhou University (2024); South China Institute of Collaborative Innovation (2024); Digital Equipment (Germany) (2016); Western Metal Materials (China) (2023–2025); Economic Research Institute (2024); Beijing Aerospace Flight Control Center (2019); Henan Polytechnic University (2024–2025); State Key Laboratory of Nonferrous Metals and Processes (2022); Wuhan University of Science and Technology (2024–2025); Huazhong University of Science and Technology (2016–2023); Chongqing University of Technology (2025); Guilin University of Electronic Technology (2025); King Abdullah University of Science and Technology (2015–2020); Hubei University of Technology (2025); China Southern Power Grid (China) (2024–2025); Beijing University of Chemical Technology (2021); Shandong University of Science and Technology (2022–2024); Beihang University (2016–2025); Universidad del Noreste (2013–2024); Nanjing University (2022–2024); Northwest A&F University (2024–2025); South China University of Technology (2013); Huanghe Science and Technology College (2021); Northeastern University (2013–2015); University of Science and Technology Beijing (2011–2025); Tsinghua University (2024)
Upstream record may be merged OpenAlex, the source of these figures, lists 110 institutions in 11 countries for this author record — a pattern that usually means it combines several researchers with similar names. The totals above may include work by other people.
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Mingyang Li's research centers on the application of additive manufacturing, specifically 3D printing, across diverse material systems. His work has investigated the modification of printing processes and the applications of sodium alginate-based hydrogels for soft tissue engineering, as evidenced by his 2023 review publication. Li has also explored the fundamental aspects of 3D printing, including interlayer adhesion in cementitious materials, the deposition systems used in 3D concrete printing, and the effect of printing parameters on material distribution in spray-based 3D concrete printing. His research extends to the development of functional gradient concrete materials and the comparative competitiveness of 3D concrete printing within the construction industry.
Further contributions include the creation of thermo-responsive shape memory polymer composites using PCL/TPU blends for 3D printing applications. Li's scholarship is marked by a significant publication record, with 281 total publications and 7,827 citations, contributing to an h-index of 40. He is recognized as a highly cited researcher and has been recently active in his field.
Metrics
- h-index: 40
- Publications: 279
- Citations: 7,912
Positions
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Research Fellow 2016–presentNanyang Technological University College of Engineering Singapore Centre for 3D Printing, School of Mechanical & Aerospace Engineering ORCID
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Research Fellow publications 2025University of Arkansas at Fayetteville ORCID
Selected Publications
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Introducing cement composite agents during printing process to enhance the 3D-printed concrete interfaces between layers and filaments (2025)
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High-current density and wear-resistant flexible rolling tribovoltaic generator and its scalable array strategy (2025)
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Integrating spatial multi-criteria decision analysis and GIS for pumped hydro storage site selection in arid Northwest China: A topology-driven framework (2025)
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In-process filament repair in 3D concrete printing with instance segmentation (2025)
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Thermomechanical analysis of ultrasonically welded copper-magnesium sheets with Ni and Zn interlayers (2025)
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Exploring hot formability and strengthening mechanisms of a Co39.2Ni39.2Al19.6Ti2 dual-phase high entropy alloy (2025)
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Hydrophobic associations and cellulose nanofibers reinforced PVA/PAM multi-network conductive hydrogel with high sensitivity, fast response, and excellent mechanical properties (2025)
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Performance Step-Up in PMOS with Monolayer WSe 2 Channel (2025)
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Single Sublayer Reconstruction in Substrate-Supported WS 2 Twisted Bilayers (2025)
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Design, fabrication, and analysis of 2.5D support-free meta-lattice materials (2025)
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Strong room-temperature ferromagnetism and magnetocaloric effect in anisotropic two-dimensional layered chromium indium telluride (2025)
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Simultaneous enhancement of strength, ductility and wear resistance of TC4 matrix composites via boron nitride incorporation (2025)
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High-temperature thermal stability and thermal conductivity of Al/AlN-C core-shell microencapsulated phase change material (2025)
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Crystal orientation-modulated ferroelectric and dielectric properties in Hf0.5Zr0.5O2 thin films (2025)
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Promoting strength-ductility synergy through sequential martensitic transformation in a hierarchical heterostructured eutectic high-entropy alloy (2025)
Collaboration Network
Top Collaborators
- Design 3D printing cementitious materials via Fuller Thompson theory and Marson-Percy model
- Comparative economic, environmental and productivity assessment of a concrete bathroom unit fabricated through 3D printing and a precast approach
- Effect of printing parameters in 3D concrete printing: Printing region and support structures
- Investigation of interlayer adhesion of 3D printable cementitious material from the aspect of printing process
- Empirical models to predict rheological properties of fiber reinforced cementitious composites for 3D printing
Showing 5 of 26 shared publications
- Comparative economic, environmental and productivity assessment of a concrete bathroom unit fabricated through 3D printing and a precast approach
- Improving surface finish quality in extrusion-based 3D concrete printing using machine learning-based extrudate geometry control
- Synchronized concrete and bonding agent deposition system for interlayer bond strength enhancement in 3D concrete printing
- Modelling and parameter optimization for filament deformation in 3D cementitious material printing using support vector machine
- Effect of printing parameters on material distribution in spray-based 3D concrete printing (S-3DCP)
Showing 5 of 24 shared publications
- Large-scale 3D printing by a team of mobile robots
- Design 3D printing cementitious materials via Fuller Thompson theory and Marson-Percy model
- Comparative economic, environmental and productivity assessment of a concrete bathroom unit fabricated through 3D printing and a precast approach
- Investigation of interlayer adhesion of 3D printable cementitious material from the aspect of printing process
- Empirical models to predict rheological properties of fiber reinforced cementitious composites for 3D printing
Showing 5 of 20 shared publications
- Microstructures and mechanical properties of oxide dispersion strengthened CoCrFeNi high-entropy alloy produced by mechanical alloying and spark plasma sintering
- Microstructure and mechanical properties of oxide dispersion strengthened FeCoNi concentrated solid solution alloys
- Enhanced mechanical property by introducing bimodal grains structures in Cu-Ta alloys fabricated by mechanical alloying
- Oxide dispersion strengthened FeCoNi concentrated solid-solution alloys synthesized by mechanical alloying
- Property enhancement of CoCrNi medium-entropy alloy by introducing nano-scale features
Showing 5 of 15 shared publications
- Design 3D printing cementitious materials via Fuller Thompson theory and Marson-Percy model
- Comparative economic, environmental and productivity assessment of a concrete bathroom unit fabricated through 3D printing and a precast approach
- Investigation of interlayer adhesion of 3D printable cementitious material from the aspect of printing process
- Empirical models to predict rheological properties of fiber reinforced cementitious composites for 3D printing
- Effect of printing parameters on material distribution in spray-based 3D concrete printing (S-3DCP)
Showing 5 of 13 shared publications
- Epitaxial growth of a monolayer WSe 2 -MoS 2 lateral p-n junction with an atomically sharp interface
- Strong Rashba-Edelstein Effect-Induced Spin–Orbit Torques in Monolayer Transition Metal Dichalcogenide/Ferromagnet Bilayers
- Layered Semiconducting 2D Materials for Future Transistor Applications
- Temperature-dependent optical constants of monolayer $${\text {MoS}}_2$$, $${\text {MoSe}}_2$$, $${\text {WS}}_2$$, and $${\text {WSe}}_2$$: spectroscopic ellipsometry and first-principles calculations
- Electronic Properties of a 1D Intrinsic/p-Doped Heterojunction in a 2D Transition Metal Dichalcogenide Semiconductor
Showing 5 of 12 shared publications
- A critical review on secondary lead recycling technology and its prospect
- A low-emission strategy to recover lead compound products directly from spent lead-acid battery paste: Key issue of impurities removal
- A closed-loop ammonium salt system for recovery of high-purity lead tetroxide product from spent lead-acid battery paste
- Effect of pH on desulphurization of spent lead paste via hydrometallurgical process
- A closed-loop acetic acid system for recovery of PbO@C composite derived from spent lead-acid battery
Showing 5 of 11 shared publications
- Modification, 3D printing process and application of sodium alginate based hydrogels in soft tissue engineering: A review
- Numerical Simulation and Experimental Study the Effects of Process Parameters on Filament Morphology and Mechanical Properties of FDM 3D Printed PLA/GNPs Nanocomposite
- Micromechanical modeling and numerical homogenization calculation of effective stiffness of 3D printing PLA/CF composites
- Modification of hydroxyapatite (HA) powder by carboxymethyl chitosan (CMCS) for 3D printing bioceramic bone scaffolds
- Three-dimensional bioprinting of tissue-engineered skin: Biomaterials, fabrication techniques, challenging difficulties, and future directions: A review
Showing 5 of 10 shared publications
- Modification, 3D printing process and application of sodium alginate based hydrogels in soft tissue engineering: A review
- 3D printing thermo-responsive shape memory polymer composite based on PCL/TPU blends
- Numerical Simulation and Experimental Study the Effects of Process Parameters on Filament Morphology and Mechanical Properties of FDM 3D Printed PLA/GNPs Nanocomposite
- Modification of hydroxyapatite (HA) powder by carboxymethyl chitosan (CMCS) for 3D printing bioceramic bone scaffolds
- Three-dimensional bioprinting of tissue-engineered skin: Biomaterials, fabrication techniques, challenging difficulties, and future directions: A review
Showing 5 of 10 shared publications
- A critical review on secondary lead recycling technology and its prospect
- A low-emission strategy to recover lead compound products directly from spent lead-acid battery paste: Key issue of impurities removal
- A closed-loop ammonium salt system for recovery of high-purity lead tetroxide product from spent lead-acid battery paste
- Effect of pH on desulphurization of spent lead paste via hydrometallurgical process
- A closed-loop acetic acid system for recovery of PbO@C composite derived from spent lead-acid battery
Showing 5 of 9 shared publications
- A critical review on secondary lead recycling technology and its prospect
- A low-emission strategy to recover lead compound products directly from spent lead-acid battery paste: Key issue of impurities removal
- A closed-loop ammonium salt system for recovery of high-purity lead tetroxide product from spent lead-acid battery paste
- Effect of pH on desulphurization of spent lead paste via hydrometallurgical process
- A closed-loop acetic acid system for recovery of PbO@C composite derived from spent lead-acid battery
Showing 5 of 9 shared publications
- A critical review on secondary lead recycling technology and its prospect
- A low-emission strategy to recover lead compound products directly from spent lead-acid battery paste: Key issue of impurities removal
- A closed-loop ammonium salt system for recovery of high-purity lead tetroxide product from spent lead-acid battery paste
- Effect of pH on desulphurization of spent lead paste via hydrometallurgical process
- A closed-loop acetic acid system for recovery of PbO@C composite derived from spent lead-acid battery
Showing 5 of 9 shared publications
- Empirical models to predict rheological properties of fiber reinforced cementitious composites for 3D printing
- Printability and fire performance of a developed 3D printable fibre reinforced cementitious composites under elevated temperatures
- Effect of printing parameters on material distribution in spray-based 3D concrete printing (S-3DCP)
- Mechanism and design of fluid catalytic cracking ash-blended cementitious composites for high performance printing
- Effect of spray-based printing parameters on cementitious material distribution
Showing 5 of 9 shared publications
- Empirical models to predict rheological properties of fiber reinforced cementitious composites for 3D printing
- Printability and fire performance of a developed 3D printable fibre reinforced cementitious composites under elevated temperatures
- Modelling and parameter optimization for filament deformation in 3D cementitious material printing using support vector machine
- Rotation nozzle and numerical simulation of mass distribution at corners in 3D cementitious material printing
- Comprehensive investigations on printability and thermal performance of cementitious material incorporated with PCM under various conditions
Showing 5 of 8 shared publications
- Local structure and its change of Al–Ni alloy melts
- Effect of liquid–liquid structure transition on solidification of Sn57Bi43 alloy
- Study on liquid structure feature of Al100−xNix alloy with resistivity and rapid solidification method
- Effect of Y Addition on the Mechanical Properties and Microstructure of Zn-Al Alloys
- Liquid–liquid phase equilibrium in ternary immiscible Al–Bi–Sn melts
Showing 5 of 7 shared publications
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