A novel approach for the fabrication of metal coated micro- and nanoparticles by functionalization with a thin polydopamine layer followed by electroless plating is reported. The particles are initially coated with polydopamine via self-polymerization. The resulting polydopamine coated particles have a surface rich in catechols and amino groups, resulting in a high affinity toward metal ions. Thus, they provide an effective platform for selective electroless metal deposition without further activation and sensitization steps. The combination of a polydopamine-based functionalization with electroless plating ensures a simple, scalable, and cost-effective metal coating strategy. Silver-plated tungsten carbide microparticles, copper-plated tungsten carbide microparticles, and copper-plated alumina nanoparticles were successfully fabricated, showing also the high versatility of the method, since the polymerization of dopamine leads to the formation of an adherent polydopamine layer on the surface of particles of any material and size. The metal coated particles produced with this process are particularly well suited for the production of metal matrix composites, since the metal coating increases the wettability of the particles by the metal, promoting their integration within the matrix. Such composite materials are used in a variety of applications including electrical contacts, components for the automotive industries, magnets, and electromagnetic interference shielding.

Download full-text PDF

Source
http://dx.doi.org/10.1016/j.jcis.2013.08.028DOI Listing

Publication Analysis

Top Keywords

electroless plating
12
metal
9
metal deposition
8
micro- nanoparticles
8
metal coated
8
polydopamine layer
8
coated particles
8
metal coating
8
tungsten carbide
8
carbide microparticles
8

Similar Publications

Graphene-Oxide-Assisted Electroless Cu Plating on a Glass Substrate.

Langmuir

December 2024

Department of Chemistry and Materials Engineering, Faculty of Chemistry, Materials and Bioengineering, Kansai University, Suita, Osaka 564-8680, Japan.

In recent years, the advancement of high-frequency communication systems, particularly 5G and future 6G technologies, has increased the need for substrates that minimize signal loss and electromagnetic interference. Glass substrates are highly desirable for these applications due to their low dielectric constant and excellent surface smoothness. However, conventional electroless Cu plating methods struggle to achieve strong adhesion between Cu and the smooth, low-polarity surface of glass, making this an important challenge to address.

View Article and Find Full Text PDF

Gold coating is prepared by pulse electroplating on zincated aluminum alloys with electroless plated Ni-P and electroplated Ni interlayers under different zincate pretreatment conditions. The quantitative characterization of the bonding strength of coatings on aluminum alloy is conducted by bonding the coating to the face of a loading fixture with E-7 high-strength two-component epoxy adhesive in a tension normal to the bonding interface. The microstructures of coatings on aluminum alloy are investigated by means of scanning electron microscopy, energy disperse spectroscopy and X-ray diffraction.

View Article and Find Full Text PDF

Hierarchical Polyimide Nonwoven Fabric with Ultralow-Reflectivity Electromagnetic Interference Shielding and High-Temperature Resistant Infrared Stealth Performance.

Nanomicro Lett

December 2024

The Key Laboratory of Synthetic and Biological Colloids, Ministry of Education, School of Chemical and Material Engineering, International Joint Research Laboratory for Nano Energy Composites, Jiangnan University, Wuxi, 214122, Jiangsu, People's Republic of China.

Designing and fabricating a compatible low-reflectivity electromagnetic interference (EMI) shielding/high-temperature resistant infrared stealth material possesses a critical significance in the field of military. Hence, a hierarchical polyimide (PI) nonwoven fabric is fabricated by alkali treatment, in-situ growth of magnetic particles and "self-activated" electroless Ag plating process. Especially, the hierarchical impedance matching can be constructed by systematically assembling FeO/Ag-loaded PI nonwoven fabric (PFA) and pure Ag-coated PI nonwoven fabric (PA), endowing it with an ultralow-reflectivity EMI shielding performance.

View Article and Find Full Text PDF

Current collector (CC) is an indispensable constituent in lithium-ion battery (LIB). It plays an important role in supporting electrode materials and conducting electrons between the electrode materials and the external circuit. However, the density of metal CC is high and it hinders the lightweight development of LIB.

View Article and Find Full Text PDF

Electroless Ag nanoparticle deposition on TiO nanorod arrays, enhancing photocatalytic and antibacterial properties.

J Colloid Interface Sci

February 2025

School of Science, College of STEM, RMIT University, Melbourne, Victoria 3001, Australia. Electronic address:

Hypothesis: The small size of the nanoparticles used to obtain high surface area photocatalysts makes their removal from solution difficult. Producing photocatalysts on substrates would alleviate this limitation. Adding heterojunctions to photocatalysts, for example, TiO/Ag, could improve photocatalytic performance due to Schottky junction formation and introduce antibacterial properties.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!