[1]
K. Korniejenko, E. Frączek, E. Pytlak, dan M. Adamski, Mechanical Properties of Geopolymer Composites Reinforced with Natural Fibers,, Procedia Engineering, vol. 151, hlm. 388–393, (2016).
DOI: 10.1016/j.proeng.2016.07.395
Google Scholar
[2]
T. Lin, D. Jia, M. Wang, P. He, dan D. Liang, Effects of fibre content on mechanical properties and fracture behaviour of short carbon fibre reinforced geopolymer matrix composites,, Bulletin of Materials Science, vol. 32, no. 1, hlm. 77–81, Feb (2009).
DOI: 10.1007/s12034-009-0011-2
Google Scholar
[3]
T. Lin dan D. Jia, Mechanical Properties And Fracture Behavior Of Electroless Ni -Plated Short Carbon Fiber Reinforced Geopolymer Matrix Composites,, International Journal of Modern Physics B, vol. 23, no. 06n07, hlm. 1371–1376, Mar (2009).
DOI: 10.1142/s0217979209060968
Google Scholar
[4]
M. V. Diamanti, B. Del Curto, M. Ormellese, dan M. P. Pedeferri, Photocatalytic and self-cleaning activity of colored mortars containing TiO2,, Construction and Building Materials, vol. 46, hlm. 167–174, Sep (2013).
DOI: 10.1016/j.conbuildmat.2013.04.038
Google Scholar
[5]
S. Naskar dan A. K. Chakraborty, Effect of nano materials in geopolymer concrete,, Perspectives in Science, vol. 8, hlm. 273–275, Sep (2016).
DOI: 10.1016/j.pisc.2016.04.049
Google Scholar
[6]
D. Syamsidar, Nurfadilla, dan Subaer, The Properties of Nano TiO 2 -Geopolymer Composite as a Material for Functional Surface Application,, MATEC Web of Conferences, vol. 97, hlm. 01013, (2017).
DOI: 10.1051/matecconf/20179701013
Google Scholar
[7]
N. Kusuma Wardani, A. Ikhsan Maulana, Nurfadilla, dan Subaer, Development of Nano TiO 2 –Geopolymer Functional Composite as Antifouling Bricks,, MATEC Web of Conferences, vol. 97, hlm. 01008, (2017).
DOI: 10.1051/matecconf/20179701008
Google Scholar
[8]
W. Sangchay, The Self-cleaning and Photocatalytic Properties of TiO2 Doped with SnO2 Thin Films Preparation by Sol-gel Method,, Energy Procedia, vol. 89, hlm. 170–176, Jun (2016).
DOI: 10.1016/j.egypro.2016.05.023
Google Scholar
[9]
A. Strini dkk., TiO2-Based Photocatalytic Geopolymers for Nitric Oxide Degradation,, Materials, vol. 9, no. 7, hlm. 513, Jun (2016).
Google Scholar
[10]
Subaer, A. Haris, Nurhayati, A. Irhamsyah, dan J. J. Ekaputri, The Influence of Si:Al and Na:Al on the Physical and Microstructure Characters of Geopolymers Based on Metakaolin,, Materials Science Forum, vol. 841, hlm. 170–177, Jan (2016).
DOI: 10.4028/www.scientific.net/msf.841.170
Google Scholar
[11]
Nurfadilla, M. Dzulkifli, F. Ramli, dan Subaer, The Potential of Geopolymer as High Quality Refractory,, Materials Science Forum, vol. 841, hlm. 21–25, Jan (2016).
DOI: 10.4028/www.scientific.net/msf.841.21
Google Scholar
[12]
A. Nazari, A. Maghsoudpour, dan J. G. Sanjayan, Flexural strength of plain and fibre-reinforced boroaluminosilicate geopolymer,, Construction and Building Materials, vol. 76, hlm. 207–213, Feb (2015).
DOI: 10.1016/j.conbuildmat.2014.12.002
Google Scholar
[13]
A. Noushini, M. Hastings, A. Castel, dan F. Aslani, Mechanical and flexural performance of synthetic fibre reinforced geopolymer concrete,, Construction and Building Materials, vol. 186, hlm. 454–475, Okt (2018).
DOI: 10.1016/j.conbuildmat.2018.07.110
Google Scholar