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Spatially confined redox chemistry in periodic mesoporous hydridosilica-nanosilver grown in reducing nanopores

机译:还原性纳米孔中生长的周期性介孔氢化硅-纳米银的空间受限氧化还原化学

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摘要

Periodic mesoporous hydridosilica, PMHS, is shown for the first time to function as both a host and a mild reducing agent toward noble metal ions. In this archetypical study, PMHS microspheres react with aqueous Ag(I) solutions to form Ag(0) nanoparticles housed in different pore locations of the mesostructure. The dominant reductive nucleation and growth process involves SiH groups located within the pore walls and yields molecular scale Ag(0) nanoclusters trapped and stabilized in the pore walls of the PMHS microspheres that emit orange-red photoluminescence. Lesser processes initiated with pore surface SiH groups produce some larger spherical and worm-shaped Ag(0) nanoparticles within the pore voids and on the outer surfaces of the PMHS microspheres. The intrinsic reducing power demonstrated in this work for the pore walls of PMHS speaks well for a new genre of chemistry that benefits from the mesoscopic confinement of Si-H groups. © 2011 American Chemical Society.
机译:周期性的介孔氢化硅,PMHS,首次显示出对贵金属离子既是主体又是温和的还原剂的作用。在此原型研究中,PMHS微球与Ag(I)水溶液反应形成Ag(0)纳米粒子,该纳米粒子位于介孔结构的不同孔位置。占主导地位的还原成核和生长过程涉及位于孔壁内的SiH基团,并产生捕获并稳定在发出橙红色光致发光的PMHS微球孔壁中的分子级Ag(0)纳米团簇。由孔表面SiH基团引发的较小过程在孔空隙内以及PMHS微球的外表面上产生了一些较大的球形和蠕虫状Ag(0)纳米颗粒。在这项工作中证明的PMHS孔壁的固有还原能力很好地说明了一种新型的化学方法,该方法受益于Si-H基的介观限制。 ©2011美国化学学会。

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