Synthesis of Catalytic Microswimmers Based on Anisotropic Platinum Sorption on Melamine Barbiturate Supramolecular Structures

Author:

Alabusheva Varvara S.1,Shilovskikh Vladimir V.2,Bridenko Liubov A.1,Gurzhiy Vladislav V.2,Skorb Ekaterina V.1ORCID

Affiliation:

1. Infochemistry Scientific Center of ITMO University 9 Lomonosova str. Saint Petersburg 191002 Russia

2. St. Petersburg State University 7-9 Universitetskaya Nab. St. Petersburg 199034 Russia

Abstract

Herein, a straightforward synthesis approach for the formation of anisotropic microswimmers is proposed as an alternative to a top–down fabrication for asymmetric artificial swimmers. Melamine barbiturate (MBA)–self‐assembled supramolecular crystals are utilized as an asymmetric matrix for selective chemical platinum deposition. Surface functional groups of prevalent crystallographic planes for platinum sorption are presented by acidic sites of the assembly. The formed platinum catalytic layer is separated from the bulk MBA and investigated using X‐Ray photoelectron spectroscopy and scanning electron microscope energy‐dispersive X‐Ray spectroscopy analysis. Both methods confirm platinum adsorption and reduction of platinum ions during the deposition process. The MBA asymmetric swimmers show directional motion in a fuel environment, proved by the mean‐squared displacement study. Previously reported pH‐dependency and encapsulation capacity of MBA opens wide opportunities for functional materials formation.

Funder

Ministry of Science and Higher Education of the Russian Federation

Publisher

Wiley

Subject

General Medicine

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