Journal of Industrial and Engineering Chemistry, Vol.77, 355-364, September, 2019
Rapid bacterial disinfection using low frequency piezocatalysis effect
E-mail:
The present work is the systematic study of ferrocatalysis, ferro-photocatalysis, piezocatalysis and piezophotocatalysis effects for bacterial degradation. The investigation revealed the ferrocatalysis driven bacterial degradation rate can be improved with incorporation of light of suitable wavelength, vibration and combination of both. Complete bacterial disinfection was achieved through piezo-photocatalysis effect using poled BaTiO3 (BT) ceramic within 30 min of exposure. Bacterial degradation was observed using surface potential generated on the surface of BT during mechanical vibration. Interestingly, it was found that lower frequency (8 Hz) was able to develop sufficient voltage to trigger bactericidal effect. Scanning electron microscopy was used to study effect of catalytic processes on the morphology of bacterial cells.
- Bowen CR, Kim HA, Weaver PM, Dunn S, Energy Environ. Sci., 25 (2014).
- Wang ZL, J. Phys. Chem. Lett., 1(9), 1388 (2010)
- Mahdi RI, Abd Majid WH, RSC Adv., 6(84), 81296 (2016)
- Saito Y, Takao H, Tani T, Nonoyama T, Takatori K, Homma T, Nagaya T, Nakamura M, Nature, 432(7013), 84 (2004)
- Zhang Y, Yan XQ, Yang Y, Huang YH, Liao QL, Qi JJ, Adv. Mater., 24(34), 4647 (2012)
- Pan C, Yu R, Niu S, Zhu G, Wang ZL, ACS Nano, 7(2), 1803 (2013)
- Li H, Sang Y, Chang S, Huang X, Zhang Y, Yang R, Jiang H, Liu H, Wang ZL, Nano Lett., 15(4), 2372 (2015)
- Lee KM, Lai CW, Ngai KS, Juan C, Water Res., 428 (2016).
- Wu JM, Sun YG, Chang WE, Lee JT, Nano Energy, 46, 372 (2018)
- Nguyen M, Mathews N, Wong LH, Batabyal SK, Pramana SS, Tran PD, Graetzel M, Lee RL, Nanoscale, 5(4), 1479 (2013)
- Ju L, Dai Y, Wei W, Li M, Liang Y, Huang B, Phys. Chem. Chem. Phys., 20(3), 1904 (2018)
- Nguyen HPT, Wang Q, Chowdhury FA, Guo H, Kibria MG, Zhao S, Trudeau ML, Mi Z, Nat. Commun., 5(1) (2014)
- Wu J, Qin N, Bao D, Nano Energy, 45, 44 (2018)
- Bao D, Qin N, Yuan B, Lin E, Wu J, ACS Appl. Nano Mater., 1(9), 5119 (2018)
- Lin E, Wu J, Qin N, Yuan B, Bao D, Catal. Sci. Technol., 8(18), 4788 (2018)
- Liu YL, Wu JM, Nano Energy, 56(Novembe), 74 (2019)
- Qifeng L, Jingjun M, Sharma M, Vaish R, J. Am. Ceram. Soc. (2019).
- Li J, Zhang L, Li Y, Yu Y, Nanoscale, 6(1), 167 (2014)
- Li L, Salvador PA, Rohrer GS, Nanoscale, 6(1), 24 (2014)
- Cui Y, Briscoe J, Dunn S, Chem. Mater., 25(21), 4215 (2013)
- Stock M, Dunn S, J. Phys. Chem. C, 116(39), 20854 (2012)
- Chong MN, Jin B, Chow CWK, Saint C, Water Res., 2997 (2010).
- Zhao J, Yang X, Build. Environ., 38(5), 645 (2003)
- Blossey R, Nat. Mater., 2(5), 301 (2003)
- Seeni A, Kaus NHM, Sirelkhatim A, Mohamad D, Mahmud S, Bakhori SKM, Ann LC, Hasan H, Nano-Micro Lett, 219 (2015).
- He H, Yin J, Li Y, Zhang Y, Qiu H, Xu J, Xu T, Wang C, Appl. Catal. B: Environ., 156-157, 35 (2014)
- Li J, Cai LJ, Shang J, Yu Y, Zhang LZ, Adv. Mater., 28(21), 4059 (2016)
- Zeng G, Yuan X, Xiao T, Tu W, Wang H, Wu Y, Sun Y, Chew JW, Li S, Appl. Catal. B: Environ., 227(2010), 530 (2018)
- Wu JM, Chang WE, Chang YT, Chang CK, Adv. Mater., 28(19), 3718 (2016)
- Wu MH, Lee JT, Chung YJ, Srinivaas M, Wu JM, Nano Energy, 40, 369 (2017)
- Lan S, Feng J, Xiong Y, Tian S, Liu S, Kong L, Environ. Sci. Technol., 51(11), 6560 (2017)
- Su Y, Zhang L, Wang W, Li X, Zhang Y, Shao D, J. Mater. Chem. A, 6(25), 11909 (2018)
- Wang Q, Xing L, Zhang Y, Deng P, Zang W, Wang ZL, Xue X, Nano Energy, 13, 414 (2015)
- Huang H, Tu S, Zeng C, Zhang T, Reshak AH, Zhang Y, Angew. Chem.-Int. Edit., 56(39), 11860 (2017)
- Tan CF, Ong WL, Ho GW, ACS Nano, 9(7), 7661 (2015)
- Liang Z, Yan CF, Rtimi S, Bandara J, Appl. Catal. B: Environ., 241, 256 (2019)
- Huang HW, Tu SC, Du X, Zhang YH, J. Colloid Interface Sci., 509, 113 (2018)
- Tu SC, Huang HW, Zhang TR, Zhanga YH, Appl. Catal. B: Environ., 219, 550 (2017)
- Kumar S, Sharma M, Powar S, Kabachkov EN, Vaish R, J. Eur. Ceram. Soc. (2019).
- Singh S, Khare N, Nano Energy, 38, 335 (2017)
- Mushtaq F, Pellicer E, Chen X, Sort J, Torlakcik H, Nelson BJ, Hoop M, Gattinoni C, Pane S, IScience, 4, 236 (2018)
- Feng J, Fu Y, Liu X, Tian S, Lan S, Xiong Y, ACS Sustain. Chem. Eng., 6(5), 6032 (2018)
- Kumar S, Vaish R, Powar S, J. Appl. Phys., 124(1) (2018)
- Kim HS, Kim JH, Kim J, Int. J. Precis. Eng. Manuf., 12(6), 1129 (2011)
- Buscaglia MT, Bassoli M, Buscaglia V, J. Am. Ceram. Soc., 88(9), 2374 (2005)
- Shi Z, Neoh KG, Kang ET, Wang W, Biomaterials, 27(11), 2440 (2006)
- Trinei M, Giorgio M, Cicalese A, Barozzi S, Ventura A, Migliaccio E, Milia E, et al., Oncogene, 21(24), 3872 (2002)
- Wood S, O'Connor D, Jones CW, Claverley JD, Blakesley JC, Giusca C, Castro FA, Sol. Energy Mater. Sol. Cells, 161, 89 (2017)
- Winn KR, Søgaard EG, Graumann T, Pillai SC, Baudys M, Zlamal M, et al., J. Photochem. Photobiol. A-Chem., 272, 18 (2013)
- Khan SUM, Al-Shahry IM, Ingler WB, Science, 297(5590), 2243 (2002)
- Tan G, Wang S, Zhu Y, Zhou L, Yu P, Wang X, He T, Chen J, Mao C, Ning C, ACS Appl. Mater. Interfaces, 8(37), 24306 (2016)
- Li H, Tian C, Deng ZD, Appl. Phys. Rev., 1(4), 50 (2014)
- Yang GX, Yin HB, Liu WH, Yang YP, Zou Q, Luo LL, Li HP, Huo YP, Li H, Appl. Catal. B: Environ., 224, 175 (2018)
- Seil JT, Taylor EN, Webster TJ, Bioengineering, Proceedings of the Northeast Conference, (2009).
- Masimukku S, Hu YC, Lin ZH, Chan SW, Chou TM, Wu JM, Nano Energy, 46, 338 (2018)
- Chou TM, Chan SW, Lin YJ, Yang PK, Liu CC, Lin YJ, Wu JM, Lee JT, Lin ZH, Nano Energy, 57, 14 (2019)
- Soni KA, Balasubramanian AK, Beskok A, Pillai SD, Curr. Microbiol., 56(1), 93 (2008)
- Neu JC, Krassowska W, Phys. Rev. E: Stat. Phys. Plasmas Fluids Relat. Interdiscip. Top. 59 (3), 3471 (1999).
- Tarek M, Biophys. J., 88(6), 4045 (2005)
- Weaver JC, Smith KC, Esser AT, Son RS, Gowrishankar TR, Bioelectrochemistry, 87, 236 (2012)
- Sun H, Li G, Nie X, Shi H, Wong PK, Zhao H, An T, Environ. Sci. Technol., 48, 9412 (2014)
- Kumar A, Pandey AK, Singh SS, Shanker R, Dhawan A, Free Radic. Biol. Med., 51(10), 1872 (2011)
- Cabiscol E, Tamarit J, J. Ros, Int. Microbiol., 3(1), 3 (2000)
- Xue R, Liu Y, Zhang Q, Liang C, Qin H, Liu P, Wang K, Zhang X, Chen L, Wei Y, Appl. Environ. Microbiol., 82(15), 4663 (2016)
- Wang X, Kafizas A, Li X, Moniz SJA, Reardon PJT, Tang J, Parkin IP, Durrant JR, J. Phys. Chem. C, 119(19), 10439 (2015)
- Mills A, McFarlane M, Catal. Today, 129(1-2), 22 (2007)
- Mills A, Wang JS, McGrady M, J. Phys. Chem. B, 110(37), 18324 (2006)