2017
DOI: 10.1088/1361-6528/aa8da9
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Fabricating TiO2nanocolloids by electric spark discharge method at normal temperature and pressure

Abstract: In this study, TiO nanocolloids were successfully fabricated in deionized water without using suspending agents through using the electric spark discharge method at room temperature and under normal atmospheric pressure. This method was exceptional because it did not create nanoparticle dispersion and the produced colloids contained no derivatives. The proposed method requires only traditional electrical discharge machines (EDMs), self-made magnetic stirrers, and Ti wires (purity, 99.99%). The EDM pulse on tim… Show more

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Cited by 15 publications
(8 citation statements)
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“…Lastly, how short-circuit rate is related to particle analysis, zeta potential, and absorbance was explored [16][17][18][19]. Applying ESDM in combination with EDM, the research team of this study successfully prepared several kinds of nanocolloid, including nano-Au, nano-TiO 2 , nano-Al, and nanographene colloids [11][12][13][14]. Because traditional EDM equipment is outdated and difficult to maintain, micro-EDM equipment was developed.…”
Section: Introductionmentioning
confidence: 99%
“…Lastly, how short-circuit rate is related to particle analysis, zeta potential, and absorbance was explored [16][17][18][19]. Applying ESDM in combination with EDM, the research team of this study successfully prepared several kinds of nanocolloid, including nano-Au, nano-TiO 2 , nano-Al, and nanographene colloids [11][12][13][14]. Because traditional EDM equipment is outdated and difficult to maintain, micro-EDM equipment was developed.…”
Section: Introductionmentioning
confidence: 99%
“…The evaporated steam is rapidly cooled by DW and condensed into TiO 2 NPs. The crystal structure of the sample prepares by ESDM was measured by XRD, which contained both titanium oxide and Ti simultaneously [ 14 ]. Figure 1 shows the ESDM process [ 15 ].…”
Section: Introductionmentioning
confidence: 99%
“…Ayrıca, TiO 2 nano partiküllerinin mükemmel oksidasyon yetenekleri sayesinde organik kirleri ve bakterileri çürütebilme özellikleri mevcut olduğu için sağlık alanında sıkça kullanılmaktadır. Yine, TiO 2 malzemesinin bunlar haricinde birçok alanda farklı uygulamaları da mevcuttur [37]. TiO 2 malzemesinin EEİ alanındaki uygulamalarına bakıldığında; Baseri ve arkadaşları, H13 çeliği işparçaları ve 200 dev/min hızla dönen bakır elektrotlar kullanarak gaz yağı dielektrik içerisine 0-1-2-3 g/l oranlarında nano boyutta TiO 2 tozu katkısıyla 2,5-6-9 A boşalım akımı ve 35-50-100 µs vurum süreleri değerleriyle deneysel çalışmalar gerçekleştirmişlerdir.…”
Section: Introductionunclassified