Dr Weimin Zhang

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Selected publications

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Book Chapters

  • Chen, J., Swiegers, G., Wallace, G., Zhang, W. (2008). Time-Dependent ('Mechanical'), Nonbiological Catalysis. 3. A Readily Prepared, Convergent, Oxygen-Reduction Electrocatalyst. In Gerhard F. Swiegers (Eds.), Mechanical Catalysis: Methods of Enzymatic, Homogeneous, and Heterogeneous Catalysis, (pp. 319-335). New Jersey, USA: John Wiley & Sons, Inc.

Journals

  • Zhao, J., Zhang, W., Sherrell, P., Razal, J., Huang, X., Minett, A., Chen, J. (2012). Carbon Nanotube Nanoweb−Bioelectrode for Highly Selective Dopamine Sensing. ACS Applied Materials and Interfaces, 4, 44-48.
  • Sherrell, P., Zhang, W., Zhao, J., Wallace, G., Chen, J., Minett, A. (2012). Microwave Decoration of Pt Nanoparticles on Entangled 3D Carbon Nanotube Architectures as PEM Fuel Cell Cathode. ChemSusChem, 5(7), 1233-1240.
  • Zhang, W., Minett, A., Gao, M., Zhao, J., Razal, J., Wallace, G., Romeo, T., Chen, J. (2011). Assembling Pt/Carbon Nanotube Arrays as High Platinum Utilization Electrocatalysts for Proton Exchange Membrane Fuel Cells. Advanced Energy Materials, 1, 671-677.
  • Guo, F., Schulte, L., Zhang, W., Vigild, M., Ndoni, S., Chen, J. (2011). Gyroid nanoporous scaffold for conductive polymers. Polymer Chemistry, 2, 553-555.
  • Zhang, W., Minett, A., Gao, M., Zhao, J., Razal, J., Wallace, G., Romeo, T., Chen, J. (2011). Integrated High-Efficiency Pt/Carbon Nanotube Arrays for PEM Fuel Cells. Advanced Energy Materials, 1(4), 671-677.
  • Zhang, W., Sherrell, P., Minett, A., Razal, J., Chen, J. (2010). Carbon nanotube architectures as catalyst supports for proton exchange membrane fuel cells. Energy and Environmental Science, 3(9), 1286-1293.
  • Zhang, W., Chen, J., Swiegers, G., Ma, Z., Wallace, G. (2010). Microwave-assisted synthesis of Pt/CNT nanocomposite electrocatalysts for PEM fuel cells. Nanoscale, 2, 282-286.
  • Zhang, W., Chen, J., Minett, A., Swiegers, G., Too, C., Wallace, G. (2010). Novel ACNT arrays based MEA structure-nano-Pt loaded ACNT/Nafion/ACNT for fuel cell applications. Chemical Communications, 46, 4824-4826.
  • Zhang, A., Zhang, W., Lu, J., Wallace, G., Chen, J. (2009). Electrocatalytic reduction of carbon dioxide by cobalt-phthalocyanine-incorporated polypyrrole. Electrochemical and Solid-State Letters, 12(8), E17-E19.
  • Liu, Y., Chen, J., Zhang, W., Ma, Z., Swiegers, G., Too, C., Wallace, G. (2008). Nano-Pt modified aligned carbon nanotube arrays are efficient, robust, high surface area electrocatalysts. Chemistry of Materials, 20(8), 2603-2605.
  • Zhang, W., Chen, J., Wagner, P., Swiegers, G., Wallace, G. (2008). Polypyrrole/Co-tetraphenylporphyrin modified carbon fibre paper as a fuel cell electrocatalyst of oxygen reduction. Electrochemistry Communications, 10(4), 519-522.
  • Chen, J., Zhang, W., Officer, D., Swiegers, G., Wallace, G. (2007). A readily-prepared, convergent, oxygen reduction electrocatalyst. Chemical Communications, , 3353-3355.
  • Chen, J., Zhang, W., Dong, Z., Swiegers, G., Wallace, G. (2007). An efficient bifunctional electrocatalyst of methanol oxidation. Organometallics, 26, 4860-4862.
  • Chen, J., Winther-Jensen, B., Lynam, C., Ngamna, O., Moulton, S., Zhang, W., Wallace, G. (2006). A simple means to immobilize enzyme into conducting polymers via entrapment. Electrochemical and Solid-State Letters, 9(7), H68-H70.
  • Ma, C., Ye, H., Tong, S., Zhang, W. (2005). A study on the catalytic behavior of tungsten carbide for the electroreduction of p-nitrophenol. Wuli Huaxue Xuebao, 21(7), 721-724.
  • Li, G., Ma, C., Zheng, Y., Zhang, W. (2005). Preparation and electrocatalytic activity of hollow global tungsten carbide with mesoporosity. Microporous and Mesoporous Materials, 85(3), 234-240.
  • Ma, C., Zhang, W., Li, G., Zheng, Y., Zhou, B., Cheng, D. (2005). Preparation of hollow global tungsten carbide (WC) catalysts with meso-porosity and its characterization. Acta Chimica Sinica (Huaxue Xuebao), 63(12), 1151-1154.

2012

  • Zhao, J., Zhang, W., Sherrell, P., Razal, J., Huang, X., Minett, A., Chen, J. (2012). Carbon Nanotube Nanoweb−Bioelectrode for Highly Selective Dopamine Sensing. ACS Applied Materials and Interfaces, 4, 44-48.
  • Sherrell, P., Zhang, W., Zhao, J., Wallace, G., Chen, J., Minett, A. (2012). Microwave Decoration of Pt Nanoparticles on Entangled 3D Carbon Nanotube Architectures as PEM Fuel Cell Cathode. ChemSusChem, 5(7), 1233-1240.

2011

  • Zhang, W., Minett, A., Gao, M., Zhao, J., Razal, J., Wallace, G., Romeo, T., Chen, J. (2011). Assembling Pt/Carbon Nanotube Arrays as High Platinum Utilization Electrocatalysts for Proton Exchange Membrane Fuel Cells. Advanced Energy Materials, 1, 671-677.
  • Guo, F., Schulte, L., Zhang, W., Vigild, M., Ndoni, S., Chen, J. (2011). Gyroid nanoporous scaffold for conductive polymers. Polymer Chemistry, 2, 553-555.
  • Zhang, W., Minett, A., Gao, M., Zhao, J., Razal, J., Wallace, G., Romeo, T., Chen, J. (2011). Integrated High-Efficiency Pt/Carbon Nanotube Arrays for PEM Fuel Cells. Advanced Energy Materials, 1(4), 671-677.

2010

  • Zhang, W., Sherrell, P., Minett, A., Razal, J., Chen, J. (2010). Carbon nanotube architectures as catalyst supports for proton exchange membrane fuel cells. Energy and Environmental Science, 3(9), 1286-1293.
  • Zhang, W., Chen, J., Swiegers, G., Ma, Z., Wallace, G. (2010). Microwave-assisted synthesis of Pt/CNT nanocomposite electrocatalysts for PEM fuel cells. Nanoscale, 2, 282-286.
  • Zhang, W., Chen, J., Minett, A., Swiegers, G., Too, C., Wallace, G. (2010). Novel ACNT arrays based MEA structure-nano-Pt loaded ACNT/Nafion/ACNT for fuel cell applications. Chemical Communications, 46, 4824-4826.

2009

  • Zhang, A., Zhang, W., Lu, J., Wallace, G., Chen, J. (2009). Electrocatalytic reduction of carbon dioxide by cobalt-phthalocyanine-incorporated polypyrrole. Electrochemical and Solid-State Letters, 12(8), E17-E19.

2008

  • Liu, Y., Chen, J., Zhang, W., Ma, Z., Swiegers, G., Too, C., Wallace, G. (2008). Nano-Pt modified aligned carbon nanotube arrays are efficient, robust, high surface area electrocatalysts. Chemistry of Materials, 20(8), 2603-2605.
  • Zhang, W., Chen, J., Wagner, P., Swiegers, G., Wallace, G. (2008). Polypyrrole/Co-tetraphenylporphyrin modified carbon fibre paper as a fuel cell electrocatalyst of oxygen reduction. Electrochemistry Communications, 10(4), 519-522.
  • Chen, J., Swiegers, G., Wallace, G., Zhang, W. (2008). Time-Dependent ('Mechanical'), Nonbiological Catalysis. 3. A Readily Prepared, Convergent, Oxygen-Reduction Electrocatalyst. In Gerhard F. Swiegers (Eds.), Mechanical Catalysis: Methods of Enzymatic, Homogeneous, and Heterogeneous Catalysis, (pp. 319-335). New Jersey, USA: John Wiley & Sons, Inc.

2007

  • Chen, J., Zhang, W., Officer, D., Swiegers, G., Wallace, G. (2007). A readily-prepared, convergent, oxygen reduction electrocatalyst. Chemical Communications, , 3353-3355.
  • Chen, J., Zhang, W., Dong, Z., Swiegers, G., Wallace, G. (2007). An efficient bifunctional electrocatalyst of methanol oxidation. Organometallics, 26, 4860-4862.

2006

  • Chen, J., Winther-Jensen, B., Lynam, C., Ngamna, O., Moulton, S., Zhang, W., Wallace, G. (2006). A simple means to immobilize enzyme into conducting polymers via entrapment. Electrochemical and Solid-State Letters, 9(7), H68-H70.

2005

  • Ma, C., Ye, H., Tong, S., Zhang, W. (2005). A study on the catalytic behavior of tungsten carbide for the electroreduction of p-nitrophenol. Wuli Huaxue Xuebao, 21(7), 721-724.
  • Li, G., Ma, C., Zheng, Y., Zhang, W. (2005). Preparation and electrocatalytic activity of hollow global tungsten carbide with mesoporosity. Microporous and Mesoporous Materials, 85(3), 234-240.
  • Ma, C., Zhang, W., Li, G., Zheng, Y., Zhou, B., Cheng, D. (2005). Preparation of hollow global tungsten carbide (WC) catalysts with meso-porosity and its characterization. Acta Chimica Sinica (Huaxue Xuebao), 63(12), 1151-1154.

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