[1] Yang L, Amer Hakki, Li Zheng, M. Roderick Jones, Fazhou Wang, Donald E. Macphee. Photocatalytic concrete for NOx abatement: Supported TiO2 efficiencies and impacts. Cement and Concrete Research. 2019;116:57-64.
[2] Xiao Huang, Shuguang Hu, Fazhou Wang *, Lu Yang *, Meijuan Rao, Yong Tao. Enhanced Sulphate Resistance: The Importance of Iron in Aluminate Hydrates. ACS Sustainable Chemistry & Engineering. 2019; DOI: 10.1021/acssuschemeng.8b06097.
[3] Chen Liu, Yunpeng Liu, Zhichao Liu, Chuanlin Hu, Xiao Huang, Lu Yang*,Fazhou Wang*. Heat-cured Concrete: Improving the Early Strength and Pore Structure by Activating Aluminosilicate Internal Curing Agent with Triisopropanolamine. Journal of the American Ceramic Society. 2019; DOI: 10.1111/jace.16458.
[4] Yang L, Hakki A, Wang FZ*, Macphee DE*. Photocatalyst efficiencies in concrete technology: The effect of photocatalyst placement. Applied Catalysis B-Environmental. 2018;222:200-8.
[5] Yang L, Hakki A, Wang FZ*, Macphee DE*. Different Roles of Water in Photocatalytic DeNOx Mechanisms on TiO2: Basis for Engineering Nitrate Selectivity? ACS Applied Materials & Interfaces. 2017;9(20):17035-42.
[6] Yang L, Wang FZ*, Hakki A, Macphee DE, Liu P, Hu SG. The influence of zeolites fly ash bead/TiO2 composite material surface morphologies on their adsorption and photocatalytic performance. Applied Surface Science. 2017;392:687-96.
[7] Yang L, Wang FZ*, Shu C, Liu P, Zhang WQ, Hu SG. TiO2/porous cementitious composites: Influences of porosities and TiO2 loading levels on photocatalytic degradation of gaseous benzene. Construction and Building Materials. 2017;150:774-80.
[8] Yang L, Wang FZ*, Du D, Liu P, Zhang WQ, Hu SG. Enhanced photocatalytic efficiency and long-term performance of TiO2 in cementitious materials by activated zeolite fly ash bead carrier. Construction and Building Materials. 2016;126:886-93.