Camargo, Magali K.; Uebel, Martin; Kurniawan, Mario; Ziegler, Karl F.; Seiler, Michael; Grieseler, Rolf; Schmidt, Udo; Barz, Andrea; Bliedtner, Jens; Bund, Andreas:
Selective metallization of polymers: surface activation of polybutylene terephthalate (PBT) assisted by picosecond laser pulses
In: Advanced engineering materials, Vol. 24 (2022), No. 4, 15 Seiten, Article 2100933
2022Journal article in JournalOA Hybrid
Technische Universität Ilmenau (1992-) » Department of Electrical Engineering and Information Technology (1992-) » Inter-departmental Institute of Materials Science and Engineering (2000-) » Fachgebiet Elektrochemie und Galvanotechnik (2015-)
Title in English:
Selective metallization of polymers: surface activation of polybutylene terephthalate (PBT) assisted by picosecond laser pulses
Author:
Camargo, Magali K.TU
Other
connected with university
corresponding author
;
Uebel, Martin
SCOPUS
56070245500
;
Kurniawan, MarioTU
GND
1204930988
ORCID
0000-0003-3171-6573ORCID iD
SCOPUS
55501684100
Other
connected with university
;
Ziegler, Karl F.
SCOPUS
57350360000
;
Seiler, Michael
SCOPUS
57188813465
;
Grieseler, RolfTU
GND
1073288803
ORCID
0000-0001-5307-7755ORCID iD
ResearcherID
D-6756-2012
SCOPUS
36767423500
Other
connected with university
;
Schmidt, UdoTU
GND
1204931372
SCOPUS
7402007244
Other
connected with university
;
Barz, Andrea
GND
1037693183
SCOPUS
6701700336
;
Bliedtner, Jens
GND
1037883314
SCOPUS
6603554575
;
Bund, AndreasTU
GND
12967477X
ORCID
0000-0001-9837-2408ORCID iD
ResearcherID
C-9907-2010
SCOPUS
55134440000
SCOPUS
6603842890
Other
connected with university
Year of publication:
2022
Open-Access-Way of publication:
OA Hybrid
Scopus ID
PPN:
Annotation:
Scopus citation-type/@code: ar
Language of text:
English
Keyword, Topic:
Fachgebiet Elektrochemie und Galvanotechnik <Ilmenau> ; copper electroless plating ; laser-assisted activation ; palladium ; picosecond laser pulses ; polybutylene terephthalate ; selective metallization
Media:
online resources
Type of resource:
Text
Licence type:
CC BY-NC-ND 4.0
Access Rights:
open access
Peer Reviewed:
Yes
Part of statistic:
Yes

Abstract in English:

The selective metallization of nonconductive polymer materials has broad applications in the fields of integrated circuit technology and metallized patterns. This work discusses a methodology to pattern metal tracks on polybutylene terephthalate substrates. The process consists of three steps: 1) surface patterning with picosecond laser pulses (1030 nm) in air, 2) Pd seeding via treatment in PdCl₂ solution, and 3) selective metallization via electroless copper deposition. Picosecond laser irradiation promotes not only surface roughening but also chemical modification to enable Pd seeding as the polymer surface acquires the ability to reduce Pd(II)-chloride species to metallic Pd. The laser parameters, as well as the PdCl₂ concentration and seeding temperature, have an influence on the polymer surface morphology, the concentration and distribution of metallic Pd, and the copper layer properties. Homogeneous copper layers with well-defined geometries, good coating-substrate adhesion, and high electrical conductivity can be obtained. This is ascribed to the synergistic effect of the chemical surface activation and roughness development (from 0.13 to ≈1.6 μm). As the patterning and surface activation are performed in air, directly on the as-received polymer substrate, this methodology shows great potential for metallization of electronic devices with 3D complex geometries.