Daniel Jacobsson
Overview
Explore the profile of Daniel Jacobsson including associated specialties, affiliations and a list of published articles.
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Articles
30
Citations
194
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Recent Articles
1.
Andersen C, Andersen C, Lehmann S, Tornberg M, Tornberg M, Maliakkal C, et al.
Nanotechnology
. 2025 Jan;
36(13).
PMID: 39854775
Developing a reliable procedure for the growth of III-V nanowires (NW) on silicon (Si) substrates remains a significant challenge, as current methods rely on trial-and-error approaches with varying interpretations of...
2.
Rambaran M, Rambaran M, Jacobsson D, Lehmann S, Dick K
Chemistry
. 2025 Jan;
31(12):e202404417.
PMID: 39833119
Lead-based piezoceramics are the dominant materials used in electronic devices, despite the known toxicity of lead. Developing safer piezoelectric materials has inspired the pursuit of lead-free piezoceramics, however some challenges...
3.
Andersen C, Tornberg M, Lehmann S, Jacobsson D, Dick K, Molhave K
Small Methods
. 2024 Sep;
9(1):e2400728.
PMID: 39308195
Crystal Phase Quantum Dots (CPQDs) offer promising properties for quantum communication. How CPQDs can be formed in Au-catalyzed GaAs nanowires using different precursor flows and temperatures by in situ environmental...
4.
Sjokvist R, Tornberg M, Marnauza M, Jacobsson D, Dick K
ACS Nanosci Au
. 2023 Apr;
2(6):539-548.
PMID: 37101854
Au-seeded semiconductor nanowires have classically been considered to only grow in a layer-by-layer growth mode, where individual layers nucleate and grow one at a time with an incubation step in...
5.
Tornberg M, Sjokvist R, Kumar K, Andersen C, Maliakkal C, Jacobsson D, et al.
ACS Nanosci Au
. 2023 Apr;
2(1):49-56.
PMID: 37101516
With the increased demand for controlled deterministic growth of III-V semiconductors at the nanoscale, the impact and interest of understanding defect formation and crystal structure switching becomes increasingly important. Vapor-liquid-solid...
6.
Seifner M, Hu T, Snellman M, Jacobsson D, Deppert K, Messing M, et al.
ACS Nano
. 2023 Apr;
17(8):7674-7684.
PMID: 37017472
Metal-semiconductor nanoparticle heterostructures are exciting materials for photocatalytic applications. Phase and facet engineering are critical for designing highly efficient catalysts. Therefore, understanding processes occurring during the nanostructure synthesis is crucial...
7.
Marnauza M, Tornberg M, Martensson E, Jacobsson D, Dick K
Nanoscale Horiz
. 2023 Jan;
8(2):291-296.
PMID: 36621012
Lateral dimensions of III-V nanowires are known to affect the growth dynamics and crystal structure. Investigations into size effects have in the past relied on theoretical models and post growth...
8.
Maliakkal C, Tornberg M, Jacobsson D, Lehmann S, Dick K
Nanoscale Adv
. 2022 Sep;
3(20):5928-5940.
PMID: 36132677
Semiconductor nanowires are promising material systems for coming-of-age nanotechnology. The usage of the vapor-solid-solid (VSS) route, where the catalyst used for promoting axial growth of nanowires is a solid, offers...
9.
Tornberg M, Maliakkal C, Jacobsson D, Wallenberg R, Dick K
Microsc Microanal
. 2022 Jun;
:1-9.
PMID: 35644630
The world of environmental microscopy provides the possibility to study and analyze transformations and reactions during realistic conditions to understand the processes better. We report on the design and development...
10.
Seifner M, Snellman M, Makgae O, Kumar K, Jacobsson D, Ek M, et al.
J Am Chem Soc
. 2021 Dec;
144(1):248-258.
PMID: 34949090
Earth-abundant transition metal phosphides are promising materials for energy-related applications. Specifically, copper(I) phosphide is such a material and shows excellent photocatalytic activity. Currently, there are substantial research efforts to synthesize...