Platinum naturally crystalizes into a three-dimensional crystal due to its highly symmetrical fcc lattice, with a metallic bond which is non-directional and highly isotropic. This inherently means ultimately that 2D crystals of a few atoms thick growth are hardly available in this material. Here, we discovered that a combinative effect of formic acid reductant and hexamethylenetetramine surfactant during the reduction of their metal ions precursor can realize an ultimate thin 2D crystal growth in platinum. High-resolution transmission electron microscopy and filed-emission electron microscopy analysis have also discovered that the 2D crystal of Pt has 111 facets with a lateral dimension that can be up to more than 5 μm × 2 μm. The thickness...
The ability to grow crystals of desired dimensions is an important aspect of the design of new funct...
The synthesis of transition metal dichalcogenides (TMDs) has been a primary focus for 2D nanomateria...
The construction of functional noble metal nanocrystals has received increasing interest because the...
In this work, we successfully prepare two-dimensional ultrathin single-crystalline platinum nanodend...
A liquid-phase reducing method of synthesizing Pt nanocrystals was demonstrated, and dendrite-, cube...
The dynamics of structural transformations of Pt aggregates in the “quantum size” range where their ...
Supported Pt crystallites were prepared by two different methods, physical deposition by vacuum evap...
The ability to predict the morphology of crystals formed by chemical reactions is of fundamental imp...
International audience2D ultrathin metal nanostructures are emerging materials displaying distinct p...
Platinum nanocrystals with a fine control of the crystal domain size in the range 1.0–2.2 nm are pro...
This is a video of a "large" (16384 atoms) Pt nanoparticle solidifying from 3000 K down to 300 K ove...
A simple, surfactant-free solvothermal method is reported for the preparation of <10 nm shape-contro...
We have investigated the growth of Pt on Ge(1 1 0) using scanning tunneling microscopy and spectrosc...
Platinum-based nanoparticles play a crucial role as catalysts, and solvothermal synthesis methods ar...
In our facile synthesis method, poly(vinylpyrrolidone)-protected Pt and Pt–Pd bimetallic nanopartic...
The ability to grow crystals of desired dimensions is an important aspect of the design of new funct...
The synthesis of transition metal dichalcogenides (TMDs) has been a primary focus for 2D nanomateria...
The construction of functional noble metal nanocrystals has received increasing interest because the...
In this work, we successfully prepare two-dimensional ultrathin single-crystalline platinum nanodend...
A liquid-phase reducing method of synthesizing Pt nanocrystals was demonstrated, and dendrite-, cube...
The dynamics of structural transformations of Pt aggregates in the “quantum size” range where their ...
Supported Pt crystallites were prepared by two different methods, physical deposition by vacuum evap...
The ability to predict the morphology of crystals formed by chemical reactions is of fundamental imp...
International audience2D ultrathin metal nanostructures are emerging materials displaying distinct p...
Platinum nanocrystals with a fine control of the crystal domain size in the range 1.0–2.2 nm are pro...
This is a video of a "large" (16384 atoms) Pt nanoparticle solidifying from 3000 K down to 300 K ove...
A simple, surfactant-free solvothermal method is reported for the preparation of <10 nm shape-contro...
We have investigated the growth of Pt on Ge(1 1 0) using scanning tunneling microscopy and spectrosc...
Platinum-based nanoparticles play a crucial role as catalysts, and solvothermal synthesis methods ar...
In our facile synthesis method, poly(vinylpyrrolidone)-protected Pt and Pt–Pd bimetallic nanopartic...
The ability to grow crystals of desired dimensions is an important aspect of the design of new funct...
The synthesis of transition metal dichalcogenides (TMDs) has been a primary focus for 2D nanomateria...
The construction of functional noble metal nanocrystals has received increasing interest because the...