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Modulation of the morphology, surface energy and wettability of malachite through a S,O,O-ligand surfactant: Mechanism and hydrophobization

机译:通过S,O,O配体表面活性剂调节孔雀石的形态,表面能和润湿性:机理和疏水化

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摘要

The modulation of solid surface properties via surfactants has a wide application in surface engineering. In this study, a novel S,O,O-ligand surfactant N-[(4-hydroxyamino)-4-butoxyl]-S-hexyl-dithiocarbamate (HABHTC) was first introduced to hydrophobize malachite surface. AFM morphology image clearly displayed that the dense HABHTC aggregates adsorbed on the whole surface of malachite, which increased its contact angle, decreased its surface energy, hydrophilicity index and interaction free energy with bubble. HABHTC exhibited stronger hydrophobization to malachite than calcite and quartz. FTIR and XPS recommended that HABHTC acted as a S,O,O-ligand to bond surface Cu atoms of malachite via building Cu-S and Cu-O bonds. The S,O,O-coordination enhanced the stability of Cu-HABHTC surface species on malachite and rendered HABHTC to possess better flotation specificity toward malachite versus calcite than octyl-hydroxamic acid (OHA). The C6H11-S-C=N-C3H6- configuration of HABHTC dramatically strengthened its hydrophobization toward malachite surface, resulted in a preferable hydrophobic flotation of malachite particles by using HABHTC as a collector.
机译:通过表面活性剂调节固体表面性质在表面工程中具有广泛的应用。在这项研究中,一种新型的S,O,O-配体表面活性剂N-[((4-羟基氨基)-4-丁氧基] -S-己基-二硫代氨基甲酸酯(HABHTC)被首次引入以疏水化孔雀石表面。 AFM形态图像清楚地表明,孔雀石整个表面上吸附的致密HABHTC聚集体增加了其接触角,降低了其表面能,亲水性指数以及与气泡的相互作用自由能。与方解石和石英相比,HABHTC对孔雀石的疏水性更强。 FTIR和XPS建议HABHTC作为S,O,O配体,通过建立Cu-S和Cu-O键来键合孔雀石表面的Cu原子。 S,O,O配位增强了孔雀石上Cu-HABHTC表面物种的稳定性,并使HABHTC对孔雀石比方解石具有比辛基异羟肟酸(OHA)更好的浮选特异性。 HABHTC的C6H11-S-C = N-C3H6-构型显着增强了其向孔雀石表面的疏水化作用,通过使用HABHTC作为捕收剂,可较好地疏水化了孔雀石颗粒。

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