Efficient surface functionalization with polydopamine (PDA) films can be easily achieved on virtually any object via single immersion in slightly basic dopamine solutions. In such conditions, however, poor homogeneity, low thickness, and long time of reaction are usually the major limitations. Herein, we report a rational entry to the control of PDA deposition via chemical oxidation under slightly acidic conditions (pH 5.0) ensuring inhibition of uncontrolled autoxidation processes to gain insight about the reaction mechanism and the impact of oxidation conditions on PDA structure. Comparative chemical analysis of dopamine oxidation with three different oxidants (ammonium peroxodisulfate, sodium periodate, and copper sulfate) revealed signi...
The facile preparation of conformal polydopamine (PDA) films on broad classes of materials has promp...
Polydopamine (PDA) films have attracted a rapidly increasing research attention during the last yea...
Despite extensive investigations over the past decade, the chemical basis of the extraordinary under...
Efficient surface functionalization with polydopamine (PDA) films can be easily achieved on virtuall...
Efficient surface functionalization with polydopamine (PDA) films can be easily achieved on virtuall...
Efficient surface functionalization with polydopamine (PDA) films can be easily achieved on virtuall...
Efficient surface functionalization with polydopamine (PDA) films can be easily achieved on virtuall...
<p>The oxidation of dopamine in aqueous solutions deposits thin conformal films on a wide variety of...
The oxidation of dopamine in aqueous solutions deposits thin conformal films on a wide variety of ma...
Polydopamine (PDA) films allow to functionalize almost all materials with a conformal and chemically...
Mussel-inspired polydopamine (PDA) coatings have received widespread concern due to the advantages o...
The facile preparation of conformal polydopamine (PDA) films on broad classes of materials has promp...
Polydopamine (PDA) deposition, obtained from the oxidation of dopamine and other catecholamines, is ...
Polydopamine (PDA) deposition, obtained from the oxidation of dopamine and other catecholamines, is ...
Polydopamine (PDA) deposition, obtained from the oxidation of dopamine and other catecholamines, is ...
The facile preparation of conformal polydopamine (PDA) films on broad classes of materials has promp...
Polydopamine (PDA) films have attracted a rapidly increasing research attention during the last yea...
Despite extensive investigations over the past decade, the chemical basis of the extraordinary under...
Efficient surface functionalization with polydopamine (PDA) films can be easily achieved on virtuall...
Efficient surface functionalization with polydopamine (PDA) films can be easily achieved on virtuall...
Efficient surface functionalization with polydopamine (PDA) films can be easily achieved on virtuall...
Efficient surface functionalization with polydopamine (PDA) films can be easily achieved on virtuall...
<p>The oxidation of dopamine in aqueous solutions deposits thin conformal films on a wide variety of...
The oxidation of dopamine in aqueous solutions deposits thin conformal films on a wide variety of ma...
Polydopamine (PDA) films allow to functionalize almost all materials with a conformal and chemically...
Mussel-inspired polydopamine (PDA) coatings have received widespread concern due to the advantages o...
The facile preparation of conformal polydopamine (PDA) films on broad classes of materials has promp...
Polydopamine (PDA) deposition, obtained from the oxidation of dopamine and other catecholamines, is ...
Polydopamine (PDA) deposition, obtained from the oxidation of dopamine and other catecholamines, is ...
Polydopamine (PDA) deposition, obtained from the oxidation of dopamine and other catecholamines, is ...
The facile preparation of conformal polydopamine (PDA) films on broad classes of materials has promp...
Polydopamine (PDA) films have attracted a rapidly increasing research attention during the last yea...
Despite extensive investigations over the past decade, the chemical basis of the extraordinary under...