2012
DOI: 10.1016/j.carbon.2012.06.063
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A one-pot method for the preparation of graphene–Bi2MoO6 hybrid photocatalysts that are responsive to visible-light and have excellent photocatalytic activity in the degradation of organic pollutants

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Cited by 128 publications
(63 citation statements)
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“…How to effectively control the growth of algae and avoid eutrophication in water bodies have become hot research issues [4][5][6]. At present, the comprehensive and in-depth studies to control algae growth are mainly physical and chemical methods [2,[7][8][9][10][11][12]. However, the common shortcomings of these two methods are high cost and short effective time.…”
Section: Introductionmentioning
confidence: 99%
“…How to effectively control the growth of algae and avoid eutrophication in water bodies have become hot research issues [4][5][6]. At present, the comprehensive and in-depth studies to control algae growth are mainly physical and chemical methods [2,[7][8][9][10][11][12]. However, the common shortcomings of these two methods are high cost and short effective time.…”
Section: Introductionmentioning
confidence: 99%
“…For the Bi 2 MoO 6 /CP nanohybrids, the electrons in Bi 2 MoO 6 are excited to the CB under visible light irradiation, and subsequently transfer to the CP at a lower energy level. A similar process occurred for the Bi 2 MoO 6 /graphene hybrids [30]. The CP itself can also be excited to provide electrons, and the slight photodegradation of RhB on CP (Figs.…”
Section: Wavelength (Nm)mentioning
confidence: 71%
“…4 and 5) clarifies this. The electrons can react with the adsorbed oxygen to form the superoxide radical ( • O 2 − ) [29,30] which is an efficient oxidant. Holes are left in the valence band (VB) of Bi 2 MoO 6 , and they can transfer to the surface of the catalysts to oxidize the organic pollutants.…”
Section: Wavelength (Nm)mentioning
confidence: 99%
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“…,催化氧化丙烯 等碳氢化合物、选择性氧化和氨解氧化石蜡 [3] 和可见 光光解水等 [4] 。较多的文献报道具有可见光降解有机 染料的性能 [5][6][7] 。γ-Bi 2 MoO 6 制备方法主要有:固相合 成法 [8] 、水热法 [9][10][11][12] 、微波水热法 [2,13] 、溶剂热法 [14,15] 、 燃烧法 [16] 、共沉淀法 [17] 、熔盐法 [18] 和喷雾法 [19] 等。不 同的合成方法对于产物的形貌、结构乃至性能等有较 大影响,文献报道的形貌有片状 [2,18] 、带状 [14] 、空心 管状 [20] 、花状 [15] 、空心球状 [19,21] 等。迄今为止,文献 对于混合溶剂热法制备的 …”
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