Here we report a novel hard-templating strategy for the synthesis of mesoporous monocrystalline Pt nanopartides (NPs) with uniform shapes and sizes. Mesoporous Pt NPs were successfully prepared through controlled chemical reduction using ascorbic acid by employing 3D bicontinuous mesoporous silica (KIT-6) and 2D mesoporous silica (SBA-15) as a hard template. The particle size could be controlled by changing the reduction time. Interestingly, the Pt replicas prepared from KIT-6 showed polyhedral morphology. The single crystallinity of the Pt fcc structure coherently extended over the whole particle.close715
Platinum nanocrystals with a fine control of the crystal domain size in the range 1.0–2.2 nm are pro...
International audienceSupported nanocrystals of original shapes are highly desirable for the develop...
Platinum nanoparticles are widely known for their numerous electrochemical and catalytic application...
Here we report a novel hard-templating strategy for the synthesis of mesoporous monocrystalline Pt n...
Well-ordered mesoporous Pt nanoparticles (MPNs) with uniform olive shapes are synthesized by using t...
制度:新 ; 報告番号:甲3721号 ; 学位の種類:博士(工学) ; 授与年月日:2012/9/15 ; 早大学位記番号:新6091Waseda Universit
In this research a high yield, homogenous and fast bottom-up wet-chemical method has been carried ou...
Two-dimensional hexagonally ordered mesoporous Pt particles are prepared by Pt deposition in the aqu...
Hollow mesoporous silica (HMS) decorated with fine Pt nanoparticles is directly prepared through a d...
© 2018 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim Dendritic Pt nanospheres of 20 nm diameter are syn...
Platinum (Pt) is widely applied for electrochemical catalysis, thus creating porosity in Pt-based ma...
Metal species have a relatively high mobility inside mesoporous silica; thus, it is difficult to int...
A platinum star performance: Quasi-single-crystalline Pt nanoparticles with peculiar morphologies—cu...
Controlled growth of far-from-equilibrium-shaped nanoparticles with size selection is essential for ...
A liquid-phase reducing method of synthesizing Pt nanocrystals was demonstrated, and dendrite-, cube...
Platinum nanocrystals with a fine control of the crystal domain size in the range 1.0–2.2 nm are pro...
International audienceSupported nanocrystals of original shapes are highly desirable for the develop...
Platinum nanoparticles are widely known for their numerous electrochemical and catalytic application...
Here we report a novel hard-templating strategy for the synthesis of mesoporous monocrystalline Pt n...
Well-ordered mesoporous Pt nanoparticles (MPNs) with uniform olive shapes are synthesized by using t...
制度:新 ; 報告番号:甲3721号 ; 学位の種類:博士(工学) ; 授与年月日:2012/9/15 ; 早大学位記番号:新6091Waseda Universit
In this research a high yield, homogenous and fast bottom-up wet-chemical method has been carried ou...
Two-dimensional hexagonally ordered mesoporous Pt particles are prepared by Pt deposition in the aqu...
Hollow mesoporous silica (HMS) decorated with fine Pt nanoparticles is directly prepared through a d...
© 2018 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim Dendritic Pt nanospheres of 20 nm diameter are syn...
Platinum (Pt) is widely applied for electrochemical catalysis, thus creating porosity in Pt-based ma...
Metal species have a relatively high mobility inside mesoporous silica; thus, it is difficult to int...
A platinum star performance: Quasi-single-crystalline Pt nanoparticles with peculiar morphologies—cu...
Controlled growth of far-from-equilibrium-shaped nanoparticles with size selection is essential for ...
A liquid-phase reducing method of synthesizing Pt nanocrystals was demonstrated, and dendrite-, cube...
Platinum nanocrystals with a fine control of the crystal domain size in the range 1.0–2.2 nm are pro...
International audienceSupported nanocrystals of original shapes are highly desirable for the develop...
Platinum nanoparticles are widely known for their numerous electrochemical and catalytic application...