Cu<sub>2</sub>O microcrystals (MCs) and nanocrystals (NCs) of various shapes were potentiostatically deposited on Ti substrates by exploiting the capping effects of differently charged surfactants on certain surfaces. Positively charged hexamethylenetetramine was adsorbed onto the {111} and {100} planes of the Cu<sub>2</sub>O crystals (copper- and oxygen-terminated surface) while negatively charged poly(vinylpyrrolidone) was adsorbed onto the {111} planes (Cu-terminated surface due to Coulombic interaction). The difference in the adsorption behaviors of the two surfactants resulted in the synthesis of differently shaped Cu<sub>2</sub>O MCs. We were also able to systematically control the shape evolution of Cu<sub>2</sub>O NCs synthesized ...
Tailoring the morphology of nanocrystals is a promising way to enhance their catalytic performance. ...
Unique physical-chemical properties of nanostructured materials are explained by the crystal structu...
Abstract Controlling the crystallization of Metal–Organic Frameworks (MOFs) at the nanoscale is curr...
Cu2O microcrystals (MCs) and nanocrystals (NCs) of various shapes were potentiostatically deposited ...
Cu2O microcrystals (MCs) and nanocrystals (NCs) of various shapes were potentiostatically deposited ...
In this paper, we systemically studied the evolution rules of morphologies of the extraordinary patt...
Copper(I) oxide nanoparticles (NPs) are emerging as a technologically important material, with appli...
Epitaxial cuprous oxide, Cu₂O, nanocrystals are deposited electrochemically onto n-InP(001). The lat...
Crystals with different shapes consist of different atomic arrangements on the surface (e.g. surface...
Cathodic reduction of Cu(II) lactate complex in the presence of hexadecyltrimethylammonium bromide r...
Crystal growth of a second metal oxide with controllable facets on the surface of a primary metal ox...
Herein we report a simple electrochemical route for the controlled synthesis of a Cu2O microcrystal ...
This work discovers that Cu2O nanocrystals with controllable structures can be synthesized on surfac...
Nanometer-to-micron sized cuprous oxide (Cu 2O) single crystals were fabricated on Au/Pd sputter-coa...
Nanoparticles/nanocrystals have been recognized by their remarkable and technologically attractive p...
Tailoring the morphology of nanocrystals is a promising way to enhance their catalytic performance. ...
Unique physical-chemical properties of nanostructured materials are explained by the crystal structu...
Abstract Controlling the crystallization of Metal–Organic Frameworks (MOFs) at the nanoscale is curr...
Cu2O microcrystals (MCs) and nanocrystals (NCs) of various shapes were potentiostatically deposited ...
Cu2O microcrystals (MCs) and nanocrystals (NCs) of various shapes were potentiostatically deposited ...
In this paper, we systemically studied the evolution rules of morphologies of the extraordinary patt...
Copper(I) oxide nanoparticles (NPs) are emerging as a technologically important material, with appli...
Epitaxial cuprous oxide, Cu₂O, nanocrystals are deposited electrochemically onto n-InP(001). The lat...
Crystals with different shapes consist of different atomic arrangements on the surface (e.g. surface...
Cathodic reduction of Cu(II) lactate complex in the presence of hexadecyltrimethylammonium bromide r...
Crystal growth of a second metal oxide with controllable facets on the surface of a primary metal ox...
Herein we report a simple electrochemical route for the controlled synthesis of a Cu2O microcrystal ...
This work discovers that Cu2O nanocrystals with controllable structures can be synthesized on surfac...
Nanometer-to-micron sized cuprous oxide (Cu 2O) single crystals were fabricated on Au/Pd sputter-coa...
Nanoparticles/nanocrystals have been recognized by their remarkable and technologically attractive p...
Tailoring the morphology of nanocrystals is a promising way to enhance their catalytic performance. ...
Unique physical-chemical properties of nanostructured materials are explained by the crystal structu...
Abstract Controlling the crystallization of Metal–Organic Frameworks (MOFs) at the nanoscale is curr...