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2020

Journal Article

Catalyst‐electrolyte interactions in aqueous reline solutions for highly selective electrochemical CO2 reduction

Garg, Sahil, Li, Mengran, Rufford, Thomas Edward, Ge, Lei, Rudolph, Victor, Knibbe, Ruth, Konarova, Muxina and Wang, Guoxiong (2020). Catalyst‐electrolyte interactions in aqueous reline solutions for highly selective electrochemical CO2 reduction. ChemSusChem, 13 (2) cssc.201902433, 304-311. doi: 10.1002/cssc.201902433

Catalyst‐electrolyte interactions in aqueous reline solutions for highly selective electrochemical CO2 reduction

2019

Journal Article

Carbon monoliths by assembling carbon spheres for gas adsorption

Gao, Shuai, Ge, Lei, Villacorta, Byron S., Rufford, Thomas E. and Zhu, Zhonghua (2019). Carbon monoliths by assembling carbon spheres for gas adsorption. Industrial & Engineering Chemistry Research, 58 (12) acs.iecr.8b04891, 4957-4969. doi: 10.1021/acs.iecr.8b04891

Carbon monoliths by assembling carbon spheres for gas adsorption

2018

Journal Article

A phase inversion polymer coating to prevent swelling and spalling of clay fines in coal seam gas wells

Ge, Lei, Hamilton, Christopher, Febrina, Rahmah Tasha, Rudolph, Victor and Rufford, Thomas E. (2018). A phase inversion polymer coating to prevent swelling and spalling of clay fines in coal seam gas wells. International Journal of Coal Science & Technology, 5 (2), 179-190. doi: 10.1007/s40789-018-0199-0

A phase inversion polymer coating to prevent swelling and spalling of clay fines in coal seam gas wells

2017

Journal Article

Gate opening effect of zeolitic imidazolate framework ZIF-7 for adsorption of CH4 and CO2 from N2

Arami-Niya, Arash, Birkett, Greg, Zhu, Zhonghua and Rufford, Thomas E. (2017). Gate opening effect of zeolitic imidazolate framework ZIF-7 for adsorption of CH4 and CO2 from N2. Journal of Materials Chemistry A, 5 (40), 21389-21399. doi: 10.1039/C7TA03755D

Gate opening effect of zeolitic imidazolate framework ZIF-7 for adsorption of CH4 and CO2 from N2

2017

Journal Article

Nitrogen-doped Ti3C2Tx MXene electrodes for high-performance supercapacitors

Wen, Yangyang, Rufford, Thomas E. , Chen, Xingzhu, Li, Neng, Lyu, Miaoqiang, Dai, Liming and Wang, Lianzhou (2017). Nitrogen-doped Ti3C2Tx MXene electrodes for high-performance supercapacitors. Nano Energy, 38 (78), 368-376. doi: 10.1016/j.nanoen.2017.06.009

Nitrogen-doped Ti3C2Tx MXene electrodes for high-performance supercapacitors

2017

Journal Article

The effect of rank, lithotype and roughness on contact angle measurements in coal cleats

Mahoney, Shilo A., Rufford, Thomas E., Johnson, David, Dmyterko, Anastasia, Rodrigues, Sandra, Esterle, Joan, Rudolph, Victor and Steel, Karen M. (2017). The effect of rank, lithotype and roughness on contact angle measurements in coal cleats. International Journal of Coal Geology, 179, 302-315. doi: 10.1016/j.coal.2017.07.001

The effect of rank, lithotype and roughness on contact angle measurements in coal cleats

2017

Journal Article

A facile method to synthesize boron-doped Ni/Fe alloy nano-chains as electrocatalyst for water oxidation

Yang, Yisu, Linzhou Zhuang, Rijia Lin, Mengran Li, Xu, Xiaoyong, Rufford, Thomas and Zhu, Zhonghua (2017). A facile method to synthesize boron-doped Ni/Fe alloy nano-chains as electrocatalyst for water oxidation. Journal of Power Sources, 349, 68-74. doi: 10.1016/j.jpowsour.2017.03.028

A facile method to synthesize boron-doped Ni/Fe alloy nano-chains as electrocatalyst for water oxidation

2016

Journal Article

Activated carbon monoliths with hierarchical pore structure from tar pitch and coal powder for the adsorption of CO2, CH4 and N2

Arami Niya, Arash, Rufford, Thomas and Zhu, Zhonghua (2016). Activated carbon monoliths with hierarchical pore structure from tar pitch and coal powder for the adsorption of CO2, CH4 and N2. Carbon, 103, 115-124. doi: 10.1016/j.carbon.2016.02.098

Activated carbon monoliths with hierarchical pore structure from tar pitch and coal powder for the adsorption of CO2, CH4 and N2

2014

Journal Article

A review of conventional and emerging process technologies for the recovery of helium from natural gas

Rufford, Thomas E., Chan, K. Ida, Huang, Stanley H. and May, Eric F. (2014). A review of conventional and emerging process technologies for the recovery of helium from natural gas. Adsorption Science and Technology, 32 (1), 49-72. doi: 10.1260/0263-6174.32.1.49

A review of conventional and emerging process technologies for the recovery of helium from natural gas

2012

Journal Article

The removal of CO2 and N-2 from natural gas: A review of conventional and emerging process technologies

Rufford, T. E., Smart, S., Watson, G. C. Y., Graham, B. F., Boxall, J., Diniz da Costa, J. C. and May, E. F. (2012). The removal of CO2 and N-2 from natural gas: A review of conventional and emerging process technologies. Journal of Petroleum Science and Engineering, 94-95, 123-154. doi: 10.1016/j.petrol.2012.06.016

The removal of CO2 and N-2 from natural gas: A review of conventional and emerging process technologies

2008

Journal Article

Nanoporous carbon electrode from waste coffee beans for high performance supercapacitors

Rufford, Thomas E., Hulicova-Jurcakova, Denisa, Zhu, Zhonghua and Lu, Gao Qing (2008). Nanoporous carbon electrode from waste coffee beans for high performance supercapacitors. Electrochemistry Communications, 10 (10), 1594-1597. doi: 10.1016/j.elecom.2008.08.022

Nanoporous carbon electrode from waste coffee beans for high performance supercapacitors

2025

Journal Article

Amorphous CuSbOx composite-catalyzed electrocatalytic reduction of CO2 to CO: CO2 demand-supply-regulated performance

Fu, Huai Qin, Yu, Tingting, White, Jessica, Sun, Ji Wei, Wu, Yuming, Li, Wen Jing, Bedford, Nicholas M., Wang, Yun, Rufford, Thomas E., Lian, Cheng, Liu, Porun, Yang, Hua Gui and Zhao, Huijun (2025). Amorphous CuSbOx composite-catalyzed electrocatalytic reduction of CO2 to CO: CO2 demand-supply-regulated performance. Chem, 11 (3) 102362, 102362-3. doi: 10.1016/j.chempr.2024.10.029

Amorphous CuSbOx composite-catalyzed electrocatalytic reduction of CO2 to CO: CO2 demand-supply-regulated performance

2025

Journal Article

Material needs for power-to-X systems for CO<sub>2</sub> utilization require a life cycle approach

Sahu, Aloka Kumar, Rufford, Thomas E., Ali, Saleem H., Knibbe, Ruth, Smart, Simon, Jiao, Feng, Bell, Alexis T. and Zhang, Xiwang (2025). Material needs for power-to-X systems for CO2 utilization require a life cycle approach. Chemical Science, 16 (14), 5819-5835. doi: 10.1039/d4sc07752k

Material needs for power-to-X systems for CO<sub>2</sub> utilization require a life cycle approach

2024

Journal Article

Pairing Oxygen Reduction and Water Oxidation for Dual-Pathway H2O2 Production

Sun, Xin, Yang, Jindi, Zeng, Xiangkang, Guo, Lijun, Bie, Chuanbiao, Wang, Zhuyuan, Sun, Kaige, Sahu, Aloka Kumar, Tebyetekerwa, Mike, Rufford, Thomas E. and Zhang, Xiwang (2024). Pairing Oxygen Reduction and Water Oxidation for Dual-Pathway H2O2 Production. Angewandte Chemie International Edition, 63 (52) e202414417, 1-17. doi: 10.1002/anie.202414417

Pairing Oxygen Reduction and Water Oxidation for Dual-Pathway H2O2 Production

2024

Journal Article

Pairing Oxygen Reduction and Water Oxidation for Dual‐Pathway H<sub>2</sub>O<sub>2</sub> Production

Sun, Xin, Yang, Jindi, Zeng, Xiangkang, Guo, Lijun, Bie, Chuanbiao, Wang, Zhuyuan, Sun, Kaige, Sahu, Aloka Kumar, Tebyetekerwa, Mike, Rufford, Thomas E. and Zhang, Xiwang (2024). Pairing Oxygen Reduction and Water Oxidation for Dual‐Pathway H2O2 Production. Angewandte Chemie, 136 (52) e202414417, 1-17. doi: 10.1002/ange.202414417

Pairing Oxygen Reduction and Water Oxidation for Dual‐Pathway H<sub>2</sub>O<sub>2</sub> Production

2024

Journal Article

AI: Educating the educators

Konarova, Muxina, Fitzgerald, Rachel, Birkett, Greg, Bakharia, Aneesha, Howes, Tony, Rufford, Tom and O'Brien, Kate (2024). AI: Educating the educators. The Chemical Engineer, 26-28.

AI: Educating the educators

2024

Journal Article

Flooding control by electrochemically reduced graphene oxide additives in silver catalyst layers for CO2 electrolysis

Wu, Yuming, Idros, Mohamed Nazmi, Feng, Desheng, Huang, Wengang, Burdyny, Thomas, Wang, Bo, Wang, Geoff, Li, Mengran and Rufford, Thomas E. (2024). Flooding control by electrochemically reduced graphene oxide additives in silver catalyst layers for CO2 electrolysis. ACS Applied Materials and Interfaces, 16 (42), 56967-56974. doi: 10.1021/acsami.4c09095

Flooding control by electrochemically reduced graphene oxide additives in silver catalyst layers for CO2 electrolysis

2024

Journal Article

An indirect Z-scheme heterostructure of nano-gold layer immobilized Cu-Al-doped SrTiO3 and CoOx-WO3 for photocatalytic CO2 reduction

Sahu, Aloka Kumar, Pokhriyal, Meenakshi, Banerjee, Debarun, Rufford, Thomas E. and Upadhyayula, Sreedevi (2024). An indirect Z-scheme heterostructure of nano-gold layer immobilized Cu-Al-doped SrTiO3 and CoOx-WO3 for photocatalytic CO2 reduction. Chemical Engineering Journal, 487 150716, 1-10. doi: 10.1016/j.cej.2024.150716

An indirect Z-scheme heterostructure of nano-gold layer immobilized Cu-Al-doped SrTiO3 and CoOx-WO3 for photocatalytic CO2 reduction

2024

Journal Article

Accelerating charge separation and CO2 photoreduction in aqueous phase under visible light with Ru nanoparticles loaded on Ga-doped NiTiO3 in a batch photoreactor

Kumar Sahu, Aloka, Yadav, Sushant, Banerjee, Debarun, Rufford, Thomas E. and Upadhyayula, Sreedevi (2024). Accelerating charge separation and CO2 photoreduction in aqueous phase under visible light with Ru nanoparticles loaded on Ga-doped NiTiO3 in a batch photoreactor. ACS Applied Materials & Interfaces, 16 (6), 7057-7069. doi: 10.1021/acsami.3c15915

Accelerating charge separation and CO2 photoreduction in aqueous phase under visible light with Ru nanoparticles loaded on Ga-doped NiTiO3 in a batch photoreactor

2024

Journal Article

Electrode, electrolyte, and membrane materials for electrochemical CO2 capture

Sun, Kaige, Tebyetekerwa, Mike, Zhang, Hongxia, Zeng, Xiangkang, Wang, Zhuyuan, Xu, Zhen, Rufford, Thomas E. and Zhang, Xiwang (2024). Electrode, electrolyte, and membrane materials for electrochemical CO2 capture. Advanced Energy Materials, 14 (24) 2400625. doi: 10.1002/aenm.202400625

Electrode, electrolyte, and membrane materials for electrochemical CO2 capture