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Pd nanocones supported on g-C_3N_4: An efficient photocatalyst for boosting catalytic reduction of hexavalent chromium under visible-light irradiation

机译:负载在g-C_3N_4上的Pd纳米锥:一种有效的光催化剂,可在可见光照射下促进六价铬的催化还原

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Herein, a facile poly-L-lysine (PLL)-mediated one-pot hydrothermal approach was developed for large-scaled synthesis of Pd nanocones enclosed by the {1 1 1} facets, followed by uniformly dispersing them on graphitic carbon nitride (g-C3N4). The Pd nanocones/g-C3N4 demonstrated dramatic enhancement for photocatalytic transformation of Cr(VI) to Cr(III) via the dehydrogenation pathway under visible-light irradiation, which outperforms the {1 0 0} facets enclosed Pd nanocubes/g-C3N4, Pd black/g-C3N4, and bare g-C3N4 catalysts. Meanwhile, the as-prepared nanocomposite showed dramatically enhanced conversion up to 99.9% and improved reusable ability via the recycling test. It would advance the development of largely efficient g-C3N4 supported Pd nanocatalysts via morphology-and composition-engineering.
机译:本文中,开发了一种简便的聚L赖氨酸(PLL)介导的一锅水热法,用于大规模合成被{1 1 1}面包围的Pd纳米锥,然后将它们均匀分散在石墨氮化碳上(g -C3N4)。 Pd纳米锥/ g-C3N4表现出在可见光照射下通过脱氢途径将Cr(VI)转化为Cr(III)的光催化转化的显着增强,其性能优于{1 0 0}面所包围的Pd纳米立方体/ g-C3N4,钯黑/ g-C3N4和裸露的g-C3N4催化剂。同时,通过再循环测试,所制备的纳米复合材料显示出高达99.9%的显着提高的转化率,并提高了可重复使用能力。它将通过形态学和组成工程技术来促进高效g-C3N4负载的钯纳米催化剂的开发。

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