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Dr Shujian Chen
Dr

Shujian Chen

Email: 
Phone: 
+61 7 344 31359

Overview

Background

Dr Shujian Chen started his research on nanomaterial modified cement and concrete in 2011. He is also dedicated to developing and adapting new nano/micro-scale characterisation and simulations techniques for developing new cement and concrete-based construction materials via emerging technologies. Since 2014, he extended his research to apply 3D printing technology in advanced manufacturing of multifunctional, high-performance cement-based materials.

Availability

Dr Shujian Chen is:
Available for supervision

Qualifications

  • Doctor of Philosophy, Monash University

Research impacts

With the aid of nanoengineering and carbon-based nanomaterials, Dr Chen's research develops new routes for more efficient and sustainable production, manufacturing and design of cement and concrete-based materials and structures. Over the years, He contributed to developing the carbon-based nanoengineered cement, which can significantly reduce Portland cement usage and associated cost and greenhouse gas emissions. Using advanced nano-characterisation and AI, he invented new techniques to understand the behaviour of cement and concrete up from the nanoscale, which helps accelerate the development of better construction materials. Via the application of nanoengineering and advanced characterisation with 3D printing, his research generates novel light-weight multifunctional cement and concrete-based materials that could be life-saving under extreme earthquake and impact events. These new materials have twice the strength as traditional counterparts and can still carry the load under extreme deformation.

Works

Search Professor Shujian Chen’s works on UQ eSpace

56 works between 2011 and 2024

21 - 40 of 56 works

2020

Journal Article

Grid-based electron–solid interaction simulation for characterizing high-dimensional microstructures

Zhou, Ze Fu, Chen, Shu Jian, Zheng, Chang Xi, Jing, Hong Wen and Duan, Wen Hui (2020). Grid-based electron–solid interaction simulation for characterizing high-dimensional microstructures. Ultramicroscopy, 217 113070, 113070. doi: 10.1016/j.ultramic.2020.113070

Grid-based electron–solid interaction simulation for characterizing high-dimensional microstructures

2020

Journal Article

Toward the understanding of stress-induced mineral dissolution via molecular scale simulations

Ouyang, Yubing, Chen, Shujian, Chen, Weiqiang, Zhang, Lihai, Matthai, Stephan and Duan, Wenhui (2020). Toward the understanding of stress-induced mineral dissolution via molecular scale simulations. Journal of Physical Chemistry C, 124 (35), 19166-19173. doi: 10.1021/acs.jpcc.0c06300

Toward the understanding of stress-induced mineral dissolution via molecular scale simulations

2020

Conference Publication

Role of multifunctional sulfonated graphene oxide in foam concrete system: reinforcement and surfactant

Wang, Wei, Qiu, Chengyu, Chen, Shu Jian and Duan, Wenhui (2020). Role of multifunctional sulfonated graphene oxide in foam concrete system: reinforcement and surfactant. 25th Australasian Conference on Mechanics of Structures and Materials (ACMSM25), Brisbane, QLD, Australia, December 2018. Singapore, Singapore: Springer. doi: 10.1007/978-981-13-7603-0_74

Role of multifunctional sulfonated graphene oxide in foam concrete system: reinforcement and surfactant

2020

Journal Article

Highly tunable anisotropic co-deformation of black phosphorene superlattices

Miao, Jianxiong, Chen, Shujian, Zhang, Qianhui, Jiang, Jinyang and Duan, Wenhui (2020). Highly tunable anisotropic co-deformation of black phosphorene superlattices. Nanoscale, 2020 (38), 19787-19796. doi: 10.1039/d0nr04781c

Highly tunable anisotropic co-deformation of black phosphorene superlattices

2020

Conference Publication

FEM simulation of ocarina-shaped piezoelectric wind energy harvester

Liu, Yanming, Lin, Ren, Chen, Shujian and Duan, Wenhui (2020). FEM simulation of ocarina-shaped piezoelectric wind energy harvester. The 25th Australasian Conference on the Mechanics of Structures and Materials (ACMSM25), Brisbane, Australia, 4-7 December 2018. Singapore: Springer. doi: 10.1007/978-981-13-7603-0_101

FEM simulation of ocarina-shaped piezoelectric wind energy harvester

2019

Journal Article

Graphene oxide in ceramic-based layered structure: nanosheet optimization

Hosseini, Ehsan, Zakertabrizi, Mohammad, Habibnejad Korayem, Asghar, Chen, Shujian and Kazemi Mohsenabadi, Saeed (2019). Graphene oxide in ceramic-based layered structure: nanosheet optimization. Construction and Building Materials, 224, 266-275. doi: 10.1016/j.conbuildmat.2019.07.087

Graphene oxide in ceramic-based layered structure: nanosheet optimization

2019

Journal Article

Towards microstructure-based analysis and design for seepage water in underground engineering: effect of image characteristics

Hu, Yong, Li, Yun An, Lin, Jun Lin, Ruan, Cheng Ke, Chen, Shu Jian, Tang, Hui Ming and Duan, Wen Hui (2019). Towards microstructure-based analysis and design for seepage water in underground engineering: effect of image characteristics. Tunnelling and Underground Space Technology, 93 103086, 103086. doi: 10.1016/j.tust.2019.103086

Towards microstructure-based analysis and design for seepage water in underground engineering: effect of image characteristics

2019

Journal Article

Graphene oxide-coated Poly(vinyl alcohol) fibers for enhanced fiber-reinforced cementitious composites

Yao, Xupei, Shamsaei, Ezzatollah, Chen, Shujian, Zhang, Qian Hui, de Souza, Felipe Basquiroto, Sagoe-Crentsil, Kwesi and Duan, Wenhui (2019). Graphene oxide-coated Poly(vinyl alcohol) fibers for enhanced fiber-reinforced cementitious composites. Composites Part B: Engineering, 174 107010, 107010. doi: 10.1016/j.compositesb.2019.107010

Graphene oxide-coated Poly(vinyl alcohol) fibers for enhanced fiber-reinforced cementitious composites

2019

Journal Article

Dynamic increased reinforcing effect of graphene oxide on cementitious nanocomposite

Li, Chen Yang, Chen, Shu Jian, Li, Wen Gui, Li, Xiang Yu, Ruan, Dong and Duan, Wen Hui (2019). Dynamic increased reinforcing effect of graphene oxide on cementitious nanocomposite. Construction and Building Materials, 206, 694-702. doi: 10.1016/j.conbuildmat.2019.02.001

Dynamic increased reinforcing effect of graphene oxide on cementitious nanocomposite

2019

Journal Article

Influence of ultrasonication on the dispersion and enhancing effect of graphene oxide–carbon nanotube hybrid nanoreinforcement in cementitious composite

Gao, Yuan, Jing, Hong Wen, Chen, Shu Jian, Du, Ming Rui, Chen, Wei Qiang and Duan, Wen Hui (2019). Influence of ultrasonication on the dispersion and enhancing effect of graphene oxide–carbon nanotube hybrid nanoreinforcement in cementitious composite. Composites Part B: Engineering, 164, 45-53. doi: 10.1016/j.compositesb.2018.11.066

Influence of ultrasonication on the dispersion and enhancing effect of graphene oxide–carbon nanotube hybrid nanoreinforcement in cementitious composite

2019

Journal Article

Transitions between nanomechanical and continuum mechanical contacts: new insights from liquid structure

Chen, Shu Jian, Chen, Wei Qiang, Ouyang, Yubing, Matthai, Stephan and Zhang, Lihai (2019). Transitions between nanomechanical and continuum mechanical contacts: new insights from liquid structure. Nanoscale, 11 (47), 22954-22963. doi: 10.1039/c9nr07180f

Transitions between nanomechanical and continuum mechanical contacts: new insights from liquid structure

2018

Journal Article

Dynamic responses of bridge–embankment transitions in high speed railway: field tests and data analyses

Hu, Ping, Zhang, Chunshun, Chen, Shu Jian, Wang, Yonghe, Wang, Wei and Duan, Wen Hui (2018). Dynamic responses of bridge–embankment transitions in high speed railway: field tests and data analyses. Engineering Structures, 175, 565-576. doi: 10.1016/j.engstruct.2018.08.079

Dynamic responses of bridge–embankment transitions in high speed railway: field tests and data analyses

2018

Journal Article

Transformation of pore structure in consolidated silty clay: new insights from quantitative pore profile analysis

Hu, Yong, Li, Yun An, Ruan, Cheng Ke, Lin, Jun Lin, Chen, Shu Jian, Tang, Hui Ming and Duan, Wen Hui (2018). Transformation of pore structure in consolidated silty clay: new insights from quantitative pore profile analysis. Construction and Building Materials, 186, 615-625. doi: 10.1016/j.conbuildmat.2018.07.136

Transformation of pore structure in consolidated silty clay: new insights from quantitative pore profile analysis

2018

Journal Article

Role of multiwalled carbon nanotubes as shear reinforcing nanopins in quasi-brittle matrices

Du, Ming Rui, Chen, Shu Jian, Duan, Wen Hui, Chen, Wei Qiang and Jing, Hong Wen (2018). Role of multiwalled carbon nanotubes as shear reinforcing nanopins in quasi-brittle matrices. ACS Applied Nano Materials, 1 (4), 1731-1740. doi: 10.1021/acsanm.8b00162

Role of multiwalled carbon nanotubes as shear reinforcing nanopins in quasi-brittle matrices

2018

Journal Article

Snubbing effect in atomic scale friction of graphene

Chen, Shu Jian, Yao, Xu Pei, Wang, Quan and Duan, Wen Hui (2018). Snubbing effect in atomic scale friction of graphene. Composites Part B: Engineering, 136, 119-125. doi: 10.1016/j.compositesb.2017.07.049

Snubbing effect in atomic scale friction of graphene

2018

Journal Article

Investigation on dispersion of graphene oxide in cement composite using different surfactant treatments

Chuah, Samuel, Li, Wengui, Chen, Shu Jian, Sanjayan, Jay G. and Duan, Wen Hui (2018). Investigation on dispersion of graphene oxide in cement composite using different surfactant treatments. Construction and Building Materials, 161, 519-527. doi: 10.1016/j.conbuildmat.2017.11.154

Investigation on dispersion of graphene oxide in cement composite using different surfactant treatments

2018

Journal Article

Exfoliation and dispersion of boron nitride nanosheets to enhance ordinary Portland cement paste

Wang, Wei, Chen, Shu Jian, Basquiroto De Souza, Felipe, Wu, Bailin and Duan, Wen Hui (2018). Exfoliation and dispersion of boron nitride nanosheets to enhance ordinary Portland cement paste. Nanoscale, 10 (3), 1004-1014. doi: 10.1039/c7nr07561h

Exfoliation and dispersion of boron nitride nanosheets to enhance ordinary Portland cement paste

2017

Journal Article

Pore shape analysis using centrifuge driven metal intrusion: indication on porosimetry equations, hydration and packing

Chen, Shu Jian, Li, Wen Gui, Ruan, Cheng Ke, Sagoe-Crentsil, Kwesi and Duan, Wen Hui (2017). Pore shape analysis using centrifuge driven metal intrusion: indication on porosimetry equations, hydration and packing. Construction and Building Materials, 154, 95-104. doi: 10.1016/j.conbuildmat.2017.07.190

Pore shape analysis using centrifuge driven metal intrusion: indication on porosimetry equations, hydration and packing

2017

Journal Article

Quantification of evaporation induced error in atom probe tomography using molecular dynamics simulation

Chen, Shu Jian, Yao, Xupei, Zheng, Changxi and Duan, Wen Hui (2017). Quantification of evaporation induced error in atom probe tomography using molecular dynamics simulation. Ultramicroscopy, 182, 28-35. doi: 10.1016/j.ultramic.2017.06.006

Quantification of evaporation induced error in atom probe tomography using molecular dynamics simulation

2017

Journal Article

Effects of nanoalumina and graphene oxide on early-age hydration and mechanical properties of cement paste

Li, Wengui, Li, Xiangyu, Chen, Shu Jian, Long, Guangcheng, Liu, Yan Ming and Duan, Wen Hui (2017). Effects of nanoalumina and graphene oxide on early-age hydration and mechanical properties of cement paste. Journal of Materials in Civil Engineering, 29 (9) 04017087, 04017087. doi: 10.1061/(ASCE)MT.1943-5533.0001926

Effects of nanoalumina and graphene oxide on early-age hydration and mechanical properties of cement paste

Funding

Current funding

  • 2023 - 2026
    Creating pH-sensitive self-healing concrete using sludge waste for sewers (ARC Discovery Project administered by University of South Australia)
    University of South Australia
    Open grant

Past funding

  • 2019 - 2021
    New generation foam concrete using 3D printing and nano-engineering
    ARC Discovery Early Career Researcher Award
    Open grant

Supervision

Availability

Dr Shujian Chen is:
Available for supervision

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Supervision history

Current supervision

Completed supervision

Media

Enquiries

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