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Honorary Professor Roland De Marco
Honorary Professor

Roland De Marco

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Overview

Background

Roland De Marco is an internationally recognized leader in the field of electrochemical sensors. His major strength is in the field of electrochemical surface and interface analysis, and he has a strong track record of using state-of-the-art electrochemical and surface analytical techniques in the micro- and nano-characterization of electrochemical devices. He has been recognized for his national and international leadership in neutron and synchrotron science through his past appointments on the Australian Institute of Nuclear Science and Engineering (AINSE) Ltd. Board as well as member of the Australian Synchrotron Stakeholders Committee.

ResearcherID: http://www.researcherid.com/rid/F-7213-2011; ORCID ID: http://orcid.org/0000-0002-1357-3727; Fellow of the Royal Australian Chemical Institute (FRACI); Member of the American Chemical Society (MACS); Fellow of the Queensland Academy and Arts and Science (FQAAS); Member of the European Academy of Sciences (MEUAS).

Availability

Honorary Professor Roland De Marco is:
Available for supervision

Qualifications

  • Bachelor of Science, RMIT University
  • Masters (Research) of Science, RMIT University
  • Doctor of Philosophy, La Trobe University

Research interests

  • Electrochemistry

    electrochemical sensors, corrosion, batteries, fuel cells, electrocatalysts

  • Materials Science

    characterization, synchrotron science, neutron science, electron microscopy

  • Analytical Chemistry

    ion-selective electrodes, seawater, environmental science, all solid state sensors

Research impacts

Roland De Marco started his career at CSIRO in partnership with Pasminco Metals where his research demonstrated that Bismuth in Australian lead does not impact deleteriously on lead/acid battery performance, minimizing the costly implications of Pasminco Metals' debismuthization process.

In his research at Curtin University, University of the Sunshine, Fiji National University and University of Queensland, he developed and implemented new and effective corrosion mitigation, control and monitoring practices for industry partners like Woodside, Chevron, Ondeo Nalcon and Mobil. He partnered with Alberto Zirino at the US Office of Naval Research through SPAWAR Systems Laboratory and Scripps Institution of Oceanography (SIO) to co-develop and implement techniques for the monitoring of free copper and free iron using ion-selective electrodes (ISEs) in oceanographic systems, and he assisted San Ping Jiang at Curtin University as well as John Zhu in partnership with their industrial partners in the development and implementation of innovative fuel cell and catalyst systems. Last, with Erno Lindner at The University of Memphis in partnership with International Laboratory (IL), he identified an optimal solid contact ISE system that minimizes conditiniong times when new sensors are swapped in IL's clinical analyzers.

Works

Search Professor Roland De Marco’s works on UQ eSpace

50 works between 1990 and 2023

1 - 20 of 50 works

2023

Journal Article

Photoelectrochemical N2-to-NH3 Fixation with High Efficiency and Rates via Optimized Si-Based System at Positive Potential versus Li0/+

Zhang, Xiaoran, Lyu, Yanhong, Zhou, Huaijuan, Zheng, Jianyun, Huang, Aibin, Ding, Jingjing, Xie, Chao, De Marco, Roland, Tsud, Nataliya, Kalinovych, Viacheslav, Jiang, San Ping, Dai, Liming and Wang, Shuangyin (2023). Photoelectrochemical N2-to-NH3 Fixation with High Efficiency and Rates via Optimized Si-Based System at Positive Potential versus Li0/+. Advanced Materials, 35 (21) 2211894, e2211894. doi: 10.1002/adma.202211894

Photoelectrochemical N2-to-NH3 Fixation with High Efficiency and Rates via Optimized Si-Based System at Positive Potential versus Li0/+

2023

Journal Article

Compression Stress-Induced Internal Magnetic Field in Bulky TiO2 Photoanodes for Enhancing Charge-Carrier Dynamics

Wu, Binbin, Lyu, Yanhong, Chen, Wei, Zheng, Jianyun, Zhou, Huaijuan, De Marco, Roland, Tsud, Nataliya, Prince, Kevin C., Kalinovych, Viacheslav, Johannessen, Bernt, Jiang, San Ping and Wang, Shuangyin (2023). Compression Stress-Induced Internal Magnetic Field in Bulky TiO2 Photoanodes for Enhancing Charge-Carrier Dynamics. JACS Au, 3 (2), 592-602. doi: 10.1021/jacsau.2c00690

Compression Stress-Induced Internal Magnetic Field in Bulky TiO2 Photoanodes for Enhancing Charge-Carrier Dynamics

2021

Journal Article

Electrochemistry-assisted photoelectrochemical reduction of nitrogen to ammonia

Zheng, Jianyun, Lyu, Yanhong, Veder, Jean-Pierre, Johannessen, Bernt, Wang, Ruilun, De Marco, Roland, Huang, Aibin, Jiang, San Ping and Wang, Shuangyin (2021). Electrochemistry-assisted photoelectrochemical reduction of nitrogen to ammonia. Journal of Physical Chemistry C, 125 (42), 23041-23049. doi: 10.1021/acs.jpcc.1c07278

Electrochemistry-assisted photoelectrochemical reduction of nitrogen to ammonia

2021

Journal Article

Investigation of the calcareous deposits formation controlled by interfacial pH and its effect on the hydrogen entry into AISI 4135 steel in seawater

Xu, Yong, Huang, Yanliang, Yang, Dan, Kunte, Hans Joerg, De Marco, Roland and Wang, Xiutong (2021). Investigation of the calcareous deposits formation controlled by interfacial pH and its effect on the hydrogen entry into AISI 4135 steel in seawater. International Journal of Hydrogen Energy, 46 (7), 5824-5841. doi: 10.1016/j.ijhydene.2020.11.040

Investigation of the calcareous deposits formation controlled by interfacial pH and its effect on the hydrogen entry into AISI 4135 steel in seawater

2020

Journal Article

Controlled one-pot synthesis of nickel single atoms embedded in carbon nanotube and graphene supports with high loading

Zhao, Shiyong, Wang, Tianshuai, Zhou, Guanmin, Zhang, Liji, Lin, Chao, Veder, Jean-Pierre, Johannessen, Bernt, Saunders, Martin, Yin, Lichang, Liu, Chang, De Marco, Roland, Yang, Shi-Ze, Zhang, Qianfan and Jiang, San Ping (2020). Controlled one-pot synthesis of nickel single atoms embedded in carbon nanotube and graphene supports with high loading. ChemNanoMat, 6 (7) cnma.202000223, 1063-1074. doi: 10.1002/cnma.202000223

Controlled one-pot synthesis of nickel single atoms embedded in carbon nanotube and graphene supports with high loading

2020

Journal Article

Deactivation and selectivity for electrochemical ozone production at Ni- and Sb-doped SnO2 / Ti electrodes

Sandin, Staffan, Abo Hamad, Ali, Cuartero, Maria, de Marco, Roland, Crespo, Gaston A., Bäckström, Joakim and Cornell, Ann (2020). Deactivation and selectivity for electrochemical ozone production at Ni- and Sb-doped SnO2 / Ti electrodes. Electrochimica Acta, 335 135645, 135645. doi: 10.1016/j.electacta.2020.135645

Deactivation and selectivity for electrochemical ozone production at Ni- and Sb-doped SnO2 / Ti electrodes

2019

Journal Article

A universal seeding strategy to synthesis single atom catalysts on 2D materials for electrocatalytic applications

Zhao, Shiyong, Chen, Guangxu, Zhou, Guangmin, Yin, Li-Chang, Veder, Jean-Pierre, Johannessen, Bernt, Saunders, Martin, Yang, Shi-Ze, De Marco, Roland, Liu, Chang and Jiang, San Ping (2019). A universal seeding strategy to synthesis single atom catalysts on 2D materials for electrocatalytic applications. Advanced Functional Materials, 30 (6) 1906157, 1906157. doi: 10.1002/adfm.201906157

A universal seeding strategy to synthesis single atom catalysts on 2D materials for electrocatalytic applications

2019

Journal Article

Efficient BiVO4 photoanodes by postsynthetic treatment: remarkable improvements in photoelectrochemical performance from facile borate modification

Meng, Qijun, Zhang, Biaobiao, Fan, Lizhou, Liu, Haidong, Valvo, Mario, Edstrom, Kristina, Cuartero, Maria, de Marco, Roland, Crespo, Gaston A. and Sun, Licheng (2019). Efficient BiVO4 photoanodes by postsynthetic treatment: remarkable improvements in photoelectrochemical performance from facile borate modification. Angewandte Chemie-International Edition, 58 (52), 19027-19033. doi: 10.1002/anie.201911303

Efficient BiVO4 photoanodes by postsynthetic treatment: remarkable improvements in photoelectrochemical performance from facile borate modification

2019

Journal Article

Tuning the electron localization of gold enables the control of nitrogen-to-ammonia fixation

Zheng, Jianyun, Lyu, Yanhong, Qiao, Man, Veder, Jean P., Marco, Roland D., Bradley, John, Wang, Ruilun, Li, Yafei, Huang, Aibin, Jiang, San Ping and Wang, Shuangyin (2019). Tuning the electron localization of gold enables the control of nitrogen-to-ammonia fixation. Angewandte Chemie (International Edition), 58 (51), 18604-18609. doi: 10.1002/anie.201909477

Tuning the electron localization of gold enables the control of nitrogen-to-ammonia fixation

2019

Journal Article

Ferrocene self assembled monolayer as a redox mediator for triggering ion transfer across nanometer-sized membranes

Cuartero, Maria, Chai, Lijun, Zhang, Biaobiao, De Marco, Roland and Crespo, Gastón A. (2019). Ferrocene self assembled monolayer as a redox mediator for triggering ion transfer across nanometer-sized membranes. Electrochimica Acta, 315, 84-93. doi: 10.1016/j.electacta.2019.05.091

Ferrocene self assembled monolayer as a redox mediator for triggering ion transfer across nanometer-sized membranes

2019

Journal Article

Selective Hydrogen Evolution on Manganese Oxide Coated Electrodes: New Cathodes for Sodium Chlorate Production

Endrodi, Balazs, Stojanovic, Aleksandra, Cuartero, Maria, Simic, Nina, Wildlock, Mats, de Marco, Roland, Crespo, Gaston A. and Cornell, Ann (2019). Selective Hydrogen Evolution on Manganese Oxide Coated Electrodes: New Cathodes for Sodium Chlorate Production. ACS Sustainable Chemistry & Engineering, 7 (14), 12170-12178. doi: 10.1021/acssuschemeng.9b01279

Selective Hydrogen Evolution on Manganese Oxide Coated Electrodes: New Cathodes for Sodium Chlorate Production

2019

Journal Article

Hydrogen release from carbon steel in chloride solution under anodic polarization

Huang, Yanliang, Liu, Xiangju, Zhang, Qichao, Xu, Yong, Kunte, Hans-Jörg and De Marco, Roland (2019). Hydrogen release from carbon steel in chloride solution under anodic polarization. International Journal of Hydrogen Energy, 45 (4), 3307-3315. doi: 10.1016/j.ijhydene.2019.11.218

Hydrogen release from carbon steel in chloride solution under anodic polarization

2019

Journal Article

Iron Single Atoms on Graphene as Nonprecious Metal Catalysts for High-Temperature Polymer Electrolyte Membrane Fuel Cells

Cheng, Yi, He, Shuai, Lu, Shanfu, Veder, Jean-Pierre, Johannessen, Bernt, Thomsen, Lars, Saunders, Martin, Becker, Thomas, De Marco, Roland, Li, Qingfeng, Yang, Shi-ze and Jiang, San Ping (2019). Iron Single Atoms on Graphene as Nonprecious Metal Catalysts for High-Temperature Polymer Electrolyte Membrane Fuel Cells. Advanced Science, 6 (10) 1802066, 1802066. doi: 10.1002/advs.201802066

Iron Single Atoms on Graphene as Nonprecious Metal Catalysts for High-Temperature Polymer Electrolyte Membrane Fuel Cells

2019

Journal Article

Polyaniline films as electrochemical-proton pump for acidification of thin layer samples

Wiorek, Alexander, Cuartero, Maria, De Marco, Roland and Crespo, Gaston A. (2019). Polyaniline films as electrochemical-proton pump for acidification of thin layer samples. Analytical Chemistry, 91 (23), 14951-14959. doi: 10.1021/acs.analchem.9b03402

Polyaniline films as electrochemical-proton pump for acidification of thin layer samples

2018

Journal Article

High CO tolerance of new SiO2 doped phosphoric acid/polybenzimidazole polymer electrolyte membrane fuel cells at high temperatures of 200–250 °C

Cheng, Yi, Zhang, Jin, Lu, Shanfu, Kuang, Haohua, Bradley, John, De Marco, Roland, Aili, David, Li, Qingfeng, Cui, Cheng Qiang and Jiang, San Ping (2018). High CO tolerance of new SiO2 doped phosphoric acid/polybenzimidazole polymer electrolyte membrane fuel cells at high temperatures of 200–250 °C. International Journal of Hydrogen Energy, 43 (49), 22487-22499. doi: 10.1016/j.ijhydene.2018.10.036

High CO tolerance of new SiO2 doped phosphoric acid/polybenzimidazole polymer electrolyte membrane fuel cells at high temperatures of 200–250 °C

2018

Journal Article

One-pot pyrolysis method to fabricate carbon nanotube supported Ni single-atom catalysts with ultrahigh loading

Zhao, Shiyong, Cheng, Yi, Veder, Jean-Pierre, Johannessen, Bernt, Saunders, Martin, Zhang, Lianji, Liu, Chang, Chisholm, Matthew F., De Marco, Roland, Liu, Jian, Yang, Shi-Ze and Jiang, San Ping (2018). One-pot pyrolysis method to fabricate carbon nanotube supported Ni single-atom catalysts with ultrahigh loading. ACS Applied Energy Materials, 1 (10) acsaem.8b00903, 5286-5297. doi: 10.1021/acsaem.8b00903

One-pot pyrolysis method to fabricate carbon nanotube supported Ni single-atom catalysts with ultrahigh loading

2018

Journal Article

In situ techniques for developing robust Li-S batteries

Li, Ming, Amirzadeh, Zhila, De Marco, Roland, Tan, Xin Fu, Whittaker, Andrew, Huang, Xia, Wepf, Roger and Knibbe, Ruth (2018). In situ techniques for developing robust Li-S batteries. Small Methods, 2 (11) 1800133, 1800133. doi: 10.1002/smtd.201800133

In situ techniques for developing robust Li-S batteries

2018

Journal Article

Electron Hopping Between Fe 3d States in Ethynylferrocene-doped Poly(Methyl Methacrylate)-poly(Decyl Methacrylate) Copolymer Membranes

Cuartero, Maria, Acres, Robert G., Jarolímová, Zdenka, Bakker, Eric, Crespo, Gaston A. and DeMarco, Roland (2018). Electron Hopping Between Fe 3d States in Ethynylferrocene-doped Poly(Methyl Methacrylate)-poly(Decyl Methacrylate) Copolymer Membranes. Electroanalysis, 30 (4), 596-601. doi: 10.1002/elan.201700510

Electron Hopping Between Fe 3d States in Ethynylferrocene-doped Poly(Methyl Methacrylate)-poly(Decyl Methacrylate) Copolymer Membranes

2018

Journal Article

Atomically Dispersed Transition Metals on Carbon Nanotubes with UltraHigh Loading for Selective Electrochemical Carbon Dioxide Reduction

Cheng, Yi, Zhao, Shiyong, Johannessen, Bernt, Veder, Jean-Pierre, Saunders, Martin, Rowles, Matthew R., Cheng, Min, Liu, Chang, Chisholm, Matthew F., De Marco, Roland, Cheng, Hui-Ming, Yang, Shi-Ze and Jiang, San Ping (2018). Atomically Dispersed Transition Metals on Carbon Nanotubes with UltraHigh Loading for Selective Electrochemical Carbon Dioxide Reduction. Advanced Materials (Deerfield Beach, Fla.), 30 (13) 1706287, e1706287. doi: 10.1002/adma.201706287

Atomically Dispersed Transition Metals on Carbon Nanotubes with UltraHigh Loading for Selective Electrochemical Carbon Dioxide Reduction

2017

Journal Article

Electrochemically substituted metal phthalocyanines, e-MPc (M = Co, Ni), as highly active and selective catalysts for CO2 reduction

Cheng, Yi, Veder, Jean-Pierre, Thomsen, Lars, Zhao, Shiyong, Saunders, Martin, Demichelis, Raffaella, Liu, Chang, De Marco, Roland and Jiang, San Ping (2017). Electrochemically substituted metal phthalocyanines, e-MPc (M = Co, Ni), as highly active and selective catalysts for CO2 reduction. Journal of Materials Chemistry A, 6 (4), 1370-1375. doi: 10.1039/c7ta09208c

Electrochemically substituted metal phthalocyanines, e-MPc (M = Co, Ni), as highly active and selective catalysts for CO2 reduction

Supervision

Availability

Honorary Professor Roland De Marco is:
Available for supervision

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Media

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