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首页> 外文期刊>Materials Chemistry Frontiers >Synthesis and multifaceted use of phosphorylated graphene oxide: growth of titanium dioxide clusters, interplay with gold nanoparticles and exfoliated sheets in bioplastics
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Synthesis and multifaceted use of phosphorylated graphene oxide: growth of titanium dioxide clusters, interplay with gold nanoparticles and exfoliated sheets in bioplastics

机译:合成和多方面的磷酸化的使用石墨烯氧化物:二氧化钛的增长集群、与金纳米粒子的相互作用清新负债表生物塑料

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摘要

Five different functional phosphorus motifs were trivially installed within graphene oxide (GO) sheets to provide water-dispersible and thermally-stable phosphorus graphene oxide materials (PGO). The presence of exogenous phosphorus heteroatoms on the surface of the tiny carbon sheets was harnessed for the anchoring and growth of metal oxide clusters, exemplified herein by titanium dioxide, and for the chelation and stabilization of small gold nanoparticles. Unexpectedly, both GO and PGO promoted crystallization in a low-temperature liquid-phase medium without thermal annealing treatment. However, the fingerprint of the surface chemistry is illustrated through the formation of different species; while discrete anatase nanoparticles were selectively formed on the surface of GO sheets, a biphasic mixture of anatase and rutile was grown on PGO. The latter provides a more stable material owing to the robustness of the interfacial P–O–Ti bridges. Strong coordination to gold nano- particles was also observed for PGO due to the presence of PQO(OH)2 fragments, compared to the weakly coordinating oxygenated functions in GO. Lastly, the possible delamination of PGO sheets associated with their improved thermal stability renders them promising nanosized fillers for carbohydrate- based bioplastics.
机译:五个不同的功能性磷图案平凡地安装在氧化石墨烯(去)表提供水分散和耐热磷氧化石墨烯材料(PGO)。磷杂原子表面的很小表用于锚固和碳金属氧化物的增长集群,作为例证二氧化钛在此,螯合和稳定的金纳米粒子。出人意料地,去PGO晋升在低温液相结晶中没有热退火处理。然而,表面化学的指纹通过不同的形成说明吗物种;有选择性地形成表面上的去吗表,锐钛矿和金红石的两相的混合物在PGO种植。稳定的材料由于的健壮性界面P-O-Ti桥梁。黄金纳米粒子为PGO也观察到但由于存在PQO (OH) 2片段,相比弱协调充氧函数中去。分层的PGO表与他们有关改善热稳定性呈现他们承诺基于纳米填料对碳水化合物生物塑料。

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