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Consultant
dc.contributor.advisor
Varga, Zoltán
Author
dc.contributor.author
Aqeel Karam Al-Khafaji, Mohammed 
Availability Date
dc.date.accessioned
2023-06-05T12:45:53Z
Availability Date
dc.date.available
2023-06-05T12:45:53Z
Release
dc.date.issued
2022
uri
dc.identifier.uri
http://hdl.handle.net/10831/67191
Language
dc.language
angolhu_HU
Title
dc.title
Preparation and surface modification of porous hollow organosilica particles for biomedical applicationshu_HU
Type
dc.type
doktori dolgozathu_HU
Language
dc.language.rfc3066
eng
Language
dc.language.rfc3066
eng
Rights
dc.rights.holder
A doktori disszertációk szerzői jogvédelem alatt állnak, csak a szerzői jogok maradéktalan tiszteletben tartásával használhatók.hu_HU
Scope
dc.format.page
111hu_HU
Doi ID
dc.identifier.doi
10.15476/ELTE.2022.076
MTMT ID
dc.identifier.mtmt
33991788
Opac ID
dc.identifier.opac
https://opac.elte.hu/Record/opac-EUL01-1108198
Language
dc.language.other
angolhu_HU
Discipline Discipline +
dc.subject.discipline
Természettudományok/Kémiai tudományokhu_HU
Keyword English
dc.subject.en
silica nanoparticle
Keyword English
dc.subject.en
porous hollow organosilica
Keyword English
dc.subject.en
aminopropyl surface modification
Keyword English
dc.subject.en
fluorescent labelling
Keyword English
dc.subject.en
microfluidic resistive pulse sensing
Keyword English
dc.subject.en
spICP-MS
Keyword English
dc.subject.en
flow cytometry
Graduate schools / programs
dc.subject.prog
Kémia D. I./Analitikai, kolloid-és környezetkémia, elektrokémiahu_HU
Class
dc.type.genre
phdhu_HU
Type
dc.type.resrep
Tudományoshu_HU
Author
dc.contributor.inst
ELTE TTK PHD/Kémia D. I.hu_HU
Goalkeeping Day
dc.date.defended
2023-01-04
Type
dc.type.type
doktori dolgozathu_HU
Resolution dated
dc.date.decreedate
2023-02-23
date of submission
dc.date.presented
2022-05-16


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Preparation and surface modification of porous hollow organosilica particles for biomedical applications
Preparation and surface modification of porous hollow organosilica particles for biomedical applications
Preparation and surface modification of porous hollow organosilica particles for biomedical applications
 

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