Shyjumon Ibrahimkutty
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Explore the profile of Shyjumon Ibrahimkutty including associated specialties, affiliations and a list of published articles.
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9
Citations
64
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Recent Articles
1.
Krause B, Kuznetsov D, Yakshin A, Ibrahimkutty S, Baumbach T, Bijkerk F
J Appl Crystallogr
. 2018 Aug;
51(Pt 4):1013-1020.
PMID: 30100825
Lanthanum and lanthanum nitride thin films were deposited by magnetron sputtering onto silicon wafers covered by natural oxide. and real-time synchrotron radiation experiments during deposition reveal that lanthanum crystallizes in...
2.
Plech A, Ibrahimkutty S, Reich S, Newby G
Nanoscale
. 2017 Nov;
9(44):17284-17292.
PMID: 29090293
Photothermal reactions of metallic nanostructures, such as gold nanorods show appealing structural relaxations, such as bubble formation or particle modification. We have employed a pump-probe method to record the structural...
3.
Krause B, Abadias G, Michel A, Wochner P, Ibrahimkutty S, Baumbach T
ACS Appl Mater Interfaces
. 2016 Dec;
8(50):34888-34895.
PMID: 27998117
The kinetics of phase transitions during formation of small-scale systems are essential for many applications. However, their experimental observation remains challenging, making it difficult to elucidate the underlying fundamental mechanisms....
4.
Reich S, Schonfeld P, Wagener P, Letzel A, Ibrahimkutty S, Gokce B, et al.
J Colloid Interface Sci
. 2016 Aug;
489:106-113.
PMID: 27554174
Pulsed laser ablation in liquids (PLAL) is a multiscale process, involving multiple mutually interacting phenomena. In order to synthesize nanoparticles with well-defined properties it is important to understand the dynamics...
5.
Ibrahimkutty S, Wagener P, Rolo T, Karpov D, Menzel A, Baumbach T, et al.
Sci Rep
. 2015 Nov;
5:16313.
PMID: 26549694
Pulsed-laser assisted nanoparticle synthesis in liquids (PLAL) is a versatile tool for nanoparticle synthesis. However, fundamental aspects of structure formation during PLAL are presently poorly understood. We analyse the spatio-temporal...
6.
Ibrahimkutty S, Seiler A, Prussmann T, Vitova T, Pradip R, Bauder O, et al.
J Synchrotron Radiat
. 2014 Dec;
22(1):91-8.
PMID: 25537593
A portable ultrahigh-vacuum system optimized for in situ variable-temperature X-ray scattering and spectroscopy experiments at synchrotron radiation beamlines was constructed and brought into operation at the synchrotron radiation facility ANKA...
7.
Wagener P, Ibrahimkutty S, Menzel A, Plech A, Barcikowski S
Phys Chem Chem Phys
. 2012 Nov;
15(9):3068-74.
PMID: 23183423
The formation of nanoparticles within the laser-induced cavitation bubble is studied in situ using small angle X-ray scattering with high spatiotemporal resolution. Directly after laser ablation, two different particle fractions...
8.
Ibrahimkutty S, Issenmann D, Schleef S, Muller A, Mathis Y, Gasharova B, et al.
J Synchrotron Radiat
. 2011 Jun;
18(Pt 4):539-45.
PMID: 21685668
A high-repetition-rate pump-probe experiment is presented, based on the asynchronous sampling approach. The low-α mode at the synchrotron ANKA can be used for a time resolution down to the picosecond...
9.
Ibrahimkutty S, Kim J, Cammarata M, Ewald F, Choi J, Ihee H, et al.
ACS Nano
. 2011 Apr;
5(5):3788-94.
PMID: 21504177
Protein-coated gold nanoparticles in suspension are excited by intense laser pulses to mimic the light-induced effect on biomolecules that occur in photothermal laser therapy with nanoparticles as photosensitizer. Ultrafast X-ray...