Construction of Highly Efficient Photocatalyst with Core-Shell Au@Ag/C@SiO2 Hybrid Structure towards

来源 :中国化学(英文版) | 被引量 : 0次 | 上传用户:clarrencewarren
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Herein,we report a rational construction of Au@Ag/C@SiO2 system with Au@Ag core-shell nanoparticles (NPs) as a promising pho-tocatalyst based on the plasmonic coupling effect for the first time towards the photoreduction of nitroaromatic compounds under visible light.The combination and elaborate construction of Au@Ag NPs,carbon microspheres and mesoporouS SiO2 shell can endow this system with several outstanding features towards photocatalytic reaction.Firstly,the broadband light harvesting across ultravio-let-visible-near infrared (UV-vis-NIR) region can be achieved due to the comprehensive effect of surface plasmonic resonance (SPR)coupling model of Au and Ag,near-field scattering light of carbon microspheres and light reflecting effect of SiO2 shell,resulting in the production of more electrons for phororeduction reaction.Secondly,the carbon microspheres in Au@Ag/C@SiO2 system possess electron-rich property due to their strong electron-withdrawing ability,which can act as the Lewis acid and Lewisbasic site,and pro-mote the stepwise hydrogenation of nitrobenzene.Thirdly,Au@Ag/C@SiO2 exhibits excellent reusability because of the protection of SiO2 shell,which restricts metal NPs inside the spheres and protects them from aggregation and being lost during reaction process.Our present work demonstrates the significance of construction of hybrid nanostructures based on the plasmonic coupling effect,which can be a promising approach to design efficient photocatalyst towards organic synthesis under visible light.
其他文献
The application of lithium-ion batteries in cold climates has been hindered due to the decline in performance at low temperatures.The increased de-solvation energy and formation of Li dendrites at the anode surface emerge as the major challenges,which rel
Styrene polymerization catalyzed by the half-titanocenes CpTiCl2[1,3-R2(CH2N)2C=N](6b:R=2,6-Me2C6H3,T4:R =2,4,6-Me3C6H2;T5:R=2,6-iPr2C6H3) was carried out in the presence of methylaluminoxane (MAO).Compared to the styrene conversion (31%) and syndio-speci
A new Rh(Ⅲ)-catalyzed direct C-H alkenylation of 2,3-unsubstitued indoles with alkenyl borates through C-H activation followed by transmetallation was described.This protocol provides an efficient method for the synthesis of terminal C2-alkenylindoles und
Four new N-methoxyindolediketopiperazines (acrozines D-G,1-4) and six known congeners (5-10) were purified from the organic extract of Acrostalagmus luteoalbus TK-43,which was a marine algal-derived fungus obtained from Codium fragile.Their structures wer
Fluorescent intelligent materials have attracted wide attention because of their great potential applications.One major hurdle for the development and application of fluorescent intelligent materials is the aggregation-caused quenching effect in the solid
A catalyst PdxCuv/NC in which Pd-Cu alloy nanoparticles are superficially embeded in shell of surface-porousN-doped carbon nano-sphere was successfully devised for p-chloronitrobenzene (p-CNB) selective hydrogenation.Bimetal ions were loaded inshell of a
Steric bulk plays a significantly paramount role in late transition metal promoted olefin (co)polymerization in terms of polymer mo-lecular weight and catalyst thermal stability.Numerous sterically encumbered nickel and palladium catalysts have been devel
We report the design,synthesis,structure,and properties of two complex layered phosphide nitrides,AkTh2Mn4P4N2 (Ak =Rb,Cs),which contain anti-fluorite-type[Mn2P2]bilayers separated by fluorite-type[Th2N2]layers as a result of the intergrowth between AkMn2
Block copolymers not only combine properties of different segments but also generate new application prospects.Poly(α-amino ac-id)-b-poly(tetrahydrofuran)-b-poly(α-amino acid) (PAA-PTHF-PAA) is one of the copolymers.In this contribution,di-hydroxyl-ended
Nanoporous (NP) Ge/Ag composite is controllably fabricated via one simple dealloying method under mild conditions.After corroding the well-designed Ge9Ag1Al90 source alloy,the resulting Ge/Ag consists of the three dimensional (3D) interconnected Ge networ