Effect of ionic liquids in compatibility with PCE and cement paste containing clay
暂无分享,去创建一个
Dan He | Zhengping Liu | Guoxing Sun | Zeyu Lu | Ruihua Liang | Juan Zhao
[1] C. Leung,et al. Using graphene oxide to strengthen the bond between PE fiber and matrix to improve the strain hardening behavior of SHCC , 2019 .
[2] R. François,et al. Determination of chloride threshold initiating corrosion: A new set-up taking the localized aspect of corrosion into account , 2019, Cement and Concrete Research.
[3] Ran Yin,et al. A green approach for the reduction of graphene oxide by the ultraviolet/sulfite process. , 2019, Journal of colloid and interface science.
[4] J. Plank,et al. Novel concrete superplasticizers based on phosphate esters , 2019, Cement and Concrete Research.
[5] Bo Wu,et al. Adsorption properties of poly(carboxylate ether) to negatively charged surfaces in high-salt conditions , 2019, Cement and Concrete Research.
[6] A. Aguado,et al. Influence of experimental procedure on d-spacing measurement by XRD of montmorillonite clay pastes containing PCE-based superplasticizer , 2019, Cement and Concrete Research.
[7] P. Monteiro,et al. Modification of poly(ethylene glycol) on the microstructure and mechanical properties of calcium silicate hydrates , 2019, Cement and Concrete Research.
[8] D. Hou,et al. Comparative evaluation on the dispersion and stability of graphene oxide in water and cement pore solution by incorporating silica fume , 2018, Cement and Concrete Composites.
[9] B. Middendorf,et al. In-situ investigation of superplasticizers: From fluorescence microscopy to concrete rheology , 2018, Cement and Concrete Research.
[10] Zi-ming Wang,et al. Synthesis, characterization and working mechanism of a novel polycarboxylate superplasticizer for concrete possessing reduced viscosity , 2018 .
[11] B. Ma,et al. Improvement in compatibility of polycarboxylate superplasticizer with poor-quality aggregate containing montmorillonite by incorporating polymeric ferric sulfate , 2018 .
[12] Yunsheng Zheng,et al. Novel designs of polycarboxylate superplasticizers for improving resistance in clay-contaminated concrete , 2017 .
[13] B. Ma,et al. Improvement of Polyethylene Glycol in Compatibility with Polycarboxylate Superplasticizer and Poor-Quality Aggregates Containing Montmorillonite , 2017 .
[14] Wenjun Zhou,et al. The review of early hydration of cement-based materials by electrical methods , 2017 .
[15] Dan He,et al. The synthesis of poly(phenylene sulfide sulfone) in ionic liquids at atmospheric pressure , 2017 .
[16] Li-ping Qin,et al. Are Ionic Liquids Chemically Stable? , 2017, Chemical reviews.
[17] L. Xin,et al. Mechanism of intercalation of polycarboxylate superplasticizer into montmorillonite , 2016 .
[18] Etsuo Sakai,et al. Chemical admixtures — Chemistry, applications and their impact on concrete microstructure and durability , 2015 .
[19] Shenmei Sun,et al. β-Cyclodextrin as Pendant Groups of a Polycarboxylate Superplasticizer for Enhancing Clay Tolerance , 2015 .
[20] R. Atkin,et al. Structure and nanostructure in ionic liquids. , 2015, Chemical reviews.
[21] Zongjin Li,et al. Determination of adsorption mechanism of polycarboxylate-ether based superplasticizers using crystallization, thermal and mass spectrometry methods , 2014 .
[22] Moncef L. Nehdi,et al. Clay in cement-based materials: Critical overview of state-of-the-art , 2014 .
[23] L. Lei,et al. Synthesis and Properties of a Vinyl Ether-Based Polycarboxylate Superplasticizer for Concrete Possessing Clay Tolerance , 2014 .
[24] T. Maschmeyer,et al. Structural features of ionic liquids: consequences for material preparation and organic reactivity , 2013 .
[25] H. Gunaratne,et al. Production of polyetheretherketone in ionic liquid media , 2013 .
[26] Serina Ng,et al. Interaction mechanisms between Na montmorillonite clay and MPEG-based polycarboxylate superplasticizers , 2012 .
[27] J. Plank,et al. Study on the foaming behaviour of allyl ether-based polycarboxylate superplasticizers , 2012 .
[28] L. Lei,et al. Synthesis, working mechanism and effectiveness of a novel cycloaliphatic superplasticizer for concrete☆ , 2012 .
[29] Ueli Angst,et al. Critical Chloride Content in Reinforced Concrete: A Review , 2009 .
[30] M. Xanthos,et al. Functionalization of nanoclays with ionic liquids for polypropylene composites , 2009 .
[31] Zhengping Liu,et al. Syntheses of high molecular weight aliphatic polyesters in 1-alkyl-3-methylimidazolium ionic liquids , 2008 .
[32] S. Mallakpour,et al. Efficient combination of ionic liquids and microwave irradiation as a green protocol for polycondensation of 4-(3-hydroxynaphthalene)-1,2,4 -triazolidine -3,5 -dione with diisocyanates , 2007 .
[33] Frank Winnefeld,et al. Effects of the molecular architecture of comb-shaped superplasticizers on their performance in cementitious systems , 2007 .