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首页> 外文期刊>Applied Surface Science >Heterolayered TiO_2@layered double hydroxide-MoS_2 nanostructure for simultaneous adsorption-photocatalysis of co-existing water contaminants
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Heterolayered TiO_2@layered double hydroxide-MoS_2 nanostructure for simultaneous adsorption-photocatalysis of co-existing water contaminants

机译:用于同时吸附 - 光催化的共同吸附 - 光催化的异粮双氢氧化物-2纳米结构

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The highly ordered heterolayered-nanostructure TiO2@Layered double hydroxide/Molybdenum disulfide (TiO2@LDH/MoS2; T@L/M) is formed by electrostatically-driven self-assembly of positively charged TiO2-dispersed-LDH layers (T@L) and negatively charged MoS2 nanosheets. TiO2 are incorporated in-situ across the LDH during synthesis yielding exfoliated TiO2-dispersed-LDH layers (T@L). Prior to MoS2 assembly, its interlayer spacing is enlarged and defects are created in basal-plane exposing sulfur-rich sites. Visible-light-active MoS2 and TiO2 synthesized heterostructure extending the T@L/M photoactivity in visible spectrum (2.92 eV) for enhanced degradation capacity. This enables a strong adsorptive-photocatalytic dual modality removal of both cationic and anionic organic dyes (97-99%) that usually cannot be achieved using one material facilitating visible-light-driven self-regeneration of exhausted adsorption sites. While dye removal efficiency varies within (4-7) % of the first cycle over 5 repeated uses, it simultaneously enables excellent affinity and selectivity for heavy metal ions (distribution coefficient similar to 10(7) mL/g for Ag+, Pb2+) with enormous adsorption capacity for single metal ion 421.8 mg/g (Ag+) which is at the top of materials known for such removal. It rapidly lowers toxic Pb2+ (from 10 mg/L to = 0.8 mu g/L) well below the standard drinking water limit. The self-regenerating heterostructure for targeting and removing multiple water pollutants of diverse physicochemical properties has not been reported until now.
机译:通过静电驱动的TiO2分散-LDH层(T @ L)通过静电驱动的自组装(T @ L)形成高度有序的异氢纳米结构TiO 2(TiO2 @ LDH / MOL2; T @ L / M),由带正电荷的TiO2分散-LDH层(T @ L)形成和带负电荷的纳米片二硫化钼。在合成期间,TiO 2在LDH上以原位掺入,产生剥离的TiO2分散-LDH层(T @ L)。在MOS2组件之前,其层间间隔扩大,并且在富含硫的位点的基面上产生缺陷。可见光活性MOS2和TiO2合成异质结构在可见光谱(2.92eV)中延伸T @ L / M光活性,以提高降解能力。这使得能够强烈的吸附 - 光催化双重模型去除阳离子和阴离子有机染料(97-99%),其通常不能使用一种促进排气吸附位点的可见光自再生的一种材料来实现的。虽然染料去除效率超过5对重复使用所述第一循环的(4-7)%范围内变化时,它能够同时对重金属离子优良亲和力和选择性与(类似于10(7)毫升/克为Ag +和Pb2 +的分配系数)单金属离子的巨大吸附能力421.8mg / g(Ag +),其位于用于此类除去的材料顶部。它迅速降低毒性PB2 +(从10mg / L至0.8μmg / l)远低于标准饮用水限制。目前尚未报道用于靶向和除去多种物理化学性质的多种水污染物的自再生异质结构。

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