论文著作:
[1] Investigation of the properties of high-porosity cement foams based on ternary Portland cement-metakaolin-silica fume blends. Constr. Build. Mater., 2016,107:181-190.
[2] Study on the preparation and properties of high-porosity foamed concretes based on ordinary Portland cement. Materials and Design, 2016, 92: 949-959.
[3] One-step facile synthesis of bulk zeolite A through metakaolin-based geopolymer gels. J. Porous Mater., 2015, 22(6):1519-1526.
[4] Effect of Cs content on K1-xCsxAlSi2O6 ceramic solidification forms,Journal of Nuclear Materials, 2018 (499):144-154
[5] Stearic acid coating on circulating fluidized bed combustion fly ashes and its effect on the mechanical performance of polymer composites. Applied Surface Science. 2013,279:109-115
[6]From Te nanotubes to CoTe2 nanotubes: A general strategy for the formation of 1D metal telluride nanostructures. Journal of Crystal Growth. 2009, 311: 4467-4472.
[7]Synthesis of CdSe micro/nanocrystals with controllable multiform morphologies and crystal phases. Journal of Alloys and Compounds. 2010, 497:390.
[8] Effect of nano-SiO2 on early hydration of natural hydraulic lime, Construction and Building Materials, 216(20) ,2019, 119-127.
[9] Facile preparation and hardened properties of porous geopolymer-supported zeolite based on swelled bentonite, Construction and Building Materials, 228(20), 2019, 117040.
[10] Preparation and hardened properties of lightweight gypsum plaster based on pre-swelled bentonite, Construction and Building Materials, 215,(10), 2019, 360-370.
[11] Preparation and properties of nanopore-rich lightweight cement paste based on swelled bentonite, Construction and Building Materials, 199,(28) 2019, 72-81.
[12] Hollow-structured pollucite microspheres and the formation mechani**, Microporous and Mesoporous Materials, 282,(1) 2019, 228-236.
[13] Effect of nanoparticles on foaming agent and the foamed concrete, Construction and Building Materials, 227(10), 2019, 116698.
[14] Effect of Na/Al on formation, structures and properties of metakaolin based Na-geopolymer, Construction and Building Materials, 226(30),2019, 250-258.
发明专利:
[1]利用循环流化床固硫灰渣制备特种水泥的方法(专利)ZL201010237033.X
[2]一种现浇用承重型自保温墙体及其制备方法(专利)ZL201110125727.9
[3]用电石渣制备超细碳酸钙的方法(专利)ZL200510020830.1
[4]含有金属氧合物的膨胀阻燃材料及其制备方法(专利)ZL200810046406.8
[5]装配式建筑用防水型保温挂板及其应用,ZL201510056962.3
[6]超细固硫灰及其制备方法和应用,ZL201310215678.7;
[7]用于制备混凝土的组合物和混凝土的制备方法,ZL201310215676.8;
[8]一种用于混凝土中的复合改性高钛矿渣微粉及其混凝土的制备方法,ZL201410572459.9;
[9]一种固硫灰和高钛矿渣复合稳定路面基层材料,ZL201410171525.1
[10]一种微晶铯榴石的制备方法,ZL201410735155.X;
[11]一种碱激发高钛矿渣免烧陶粒及其制备方法, ZL201610355938
[12]一种采用道路沥青改性剂的改性道路沥青及其制备方法,ZL201610067523.7
科研项目:
[1]“十三五”国家重点研发计划,2016YFC0701004,利用膨润土等地域性原材料制备绿色建筑材料关键技术研究与应用,子课题“膨润土制备绿色建材用矿物外加剂的研究与应用”,2016/07-2020/06,150万元,在研,主持
[2] 国家自然科学基金青年基金项目,51402246,铯榴石型微晶地聚合物及其137Cs固化行为研究,2015/01-2017/12,25万元,已结题,参加
[3] 国家科技支撑计划,2011BAA04B04,燃煤电厂固硫灰渣高效利用成套技术,2011/01-2014/12,1080万元,已结题,主持
[4] 国家自然科学基金面上项目,10976023,铀在陶瓷固化体中的赋存状态研究,2010/01-2012/12,38万元,已结题,主持
[5] 国家自然科学基金面上项目,10376030,磁性掺杂的激光聚变靶丸材料研究,2004/01-2006/12,30万元,已结题,主持
[6] 西南科技大学建材行业能源效率培训计划的实施(G-1103-13862),美国能源基金会,77.53万元
[8] 西南科技大学工业节能减排中心建立及能力建设(G-1004-12430),美国能源基金会,70万元