[1] M. Kumar, B.P. Tripathi, A. Saxena, et al., Electrochemical membrane reactor:Synthesis of quaternary ammonium hydroxide from its halide by in situ ion substitution, Electrochim. Acta 54(5) (2009) 1630-1637. [2] T.H. Goswami, B. Nandan, S. Alam, et al., A selective reaction of polyhydroxy fullerene with cycloaliphatic epoxy resin in designing ether connected epoxy star utilizing fullerene as a molecular core, Polymer 44(11) (2003) 3209-3214. [3] I. Zubel, M. Kramkowska, K. Rola, Silicon anisotropic etching in TMAH solutions containing alcohol and surfactant additives, Sensors Actuators A Phys. 178(2012) 126-135. [4] K.-H. Jun, B.-J. Kim, J.-S. Kim, Effect of additives on the anisotropic etching of silicon by using a TMAH based solution, Electron. Mater. Lett. 11(5) (2015) 871-880. [5] J. Sun, D.R. Macfarlane, M. Forsyth, Novel alkaline polymer electrolytes based on tetramethyl ammonium hydroxide, Electrochim. Acta 48(14) (2003) 1971-1976. [6] D.J. Kim, C.H. Park, S.Y. Nam, Characterization of a soluble poly(ether ether ketone) anion exchange membrane for fuel cell application, Int. J. Hydrog. Energy 41(18) (2016) 7649-7658. [7] B. Marler, P. Daniels, J. Sañéi Muné, Synthesis and structure of RUB-35, a disordered material of the EUO-NES-NON family, Microporous Mesoporous Mater. 64(1-3) (2003) 185-201. [8] T. Geng, X.-G. Teng, Q.-X. Li, et al., Synthesis and properties of long-chain quaternary ammonium hydroxides, Chin. Chem. Lett. 24(6) (2013) 494-496. [9] J.N. Shen, J. Yu, J. Huang, et al., Preparation of highly pure tetrapropyl ammonium hydroxide using continuous bipolar membrane electrodialysis, Chem. Eng. J. 220(2013) 311-319. [10] Y. Li, S. Shi, H. Cao, et al., Bipolar membrane electrodialysis for generation of hydrochloric acid and ammonia from simulated ammonium chloride wastewater, Water Res. 89(2015) 201-209. [11] C. Jiang, Q. Wang, Y. Zhang, et al., Separation of methionine from the mixture with sodium carbonate using bipolar membrane electrodialysis, J. Membr. Sci. 498(2016) 48-56. [12] M. Reig, C. Valderrama, O. Gibert, et al., Selectrodialysis and bipolar membrane electrodialysis combination for industrial process brines treatment:Monovalentdivalent ions separation and acid and base production, Desalination 399(2016) 88-95. [13] T. Xu, Development of bipolar membrane-based processes, Desalination 140(3) (2001) 247-258. [14] J. Jaimeferrer, E. Couallier, P. Viers, et al., Three-compartment bipolar membrane electrodialysis for splitting of sodium formate into formic acid and sodium hydroxide:Role of diffusion of molecular acid, J. Membr. Sci. 325(2) (2008) 528-536. [15] J. Balster, I. Pünt, D.F. Stamatialis, et al., Electrochemical acidification of milk by whey desalination, J. Membr. Sci. 303(1-2) (2007) 213-220. [16] F. Lin Teng Shee, L. Bazinet, Cationic balance and current efficiency of a threecompartment bipolar membrane electrodialysis system during the preparation of chitosan oligomers, J. Membr. Sci. 341(1-2) (2009) 46-50. [17] M.-L. Lameloise, R. Lewandowski, Recovering l-malic acid from a beverage industry waste water:Experimental study of the conversion stage using bipolar membrane electrodialysis, J. Membr. Sci. 403-404(2012) 196-202. [18] D. Baş, İ.H. Boyacı, Modeling and optimization I:Usability of response surface methodology, J. Food Eng. 78(3) (2007) 836-845. [19] Z. Kong, M. Li, J. Chen, et al., Processing factors of triadimefon and triadimenol in barley brewing based on response surface methodology, Food Control 64(2016) 81-86. [20] X. Qin, Y. Wang, C. Lu, et al., Structural acoustics analysis and optimization of an enclosed box-damped structure based on response surface methodology, Mater. Des. 103(2016) 236-243. [21] G. Zhao, H. Wang, G. Liu, et al., Box-Behnken response surface design for the optimization of electrochemical detection of cadmium by square wave anodic stripping voltammetry on bismuth film/glassy carbon electrode, Sensors Actuators B Chem. 235(2016) 67-73. |