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        <identifier>oai:researchdata.tuwien.ac.at:r3y5c-wwj67</identifier>
        <datestamp>2026-03-24T07:29:40Z</datestamp>
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              <identifier identifierType="DOI">10.48436/r3y5c-wwj67</identifier>
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              <creators>
                <creator>
                  <creatorName nameType="Personal">Baudis, Stefan</creatorName>
                  <givenName>Stefan</givenName>
                  <familyName>Baudis</familyName>
                  <nameIdentifier nameIdentifierScheme="ORCID">0000-0002-5390-0761</nameIdentifier>
                  <affiliation>TU Wien</affiliation>
                </creator>
                <creator>
                  <creatorName nameType="Personal">Bogdanovic, Danijela</creatorName>
                  <givenName>Danijela</givenName>
                  <familyName>Bogdanovic</familyName>
                  <nameIdentifier nameIdentifierScheme="ORCID">0009-0000-0003-468X</nameIdentifier>
                  <affiliation>TU Wien</affiliation>
                </creator>
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              <titles>
                <title>Data from PhD thesis by Danijela Bogdanovic "Towards a new Era of Fracture Fixation - Photopolymerizable Bone Adhesives based on Thiol-Ene Chemistry"</title>
              </titles>
              <publisher>TU Wien</publisher>
              <publicationYear>2025</publicationYear>
              <subjects>
                <subject>bone adhesives</subject>
                <subject>photopolymers</subject>
                <subject>regenerative medicine</subject>
                <subject>bioadhesives</subject>
              </subjects>
              <dates>
                <date dateType="Issued">2025-12-16</date>
                <date dateType="Updated">2026-03-24</date>
              </dates>
              <language>eng</language>
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                <relatedIdentifier relatedIdentifierType="DOI" relationType="Documents" resourceTypeGeneral="JournalArticle">10.1039/D4LP00094C</relatedIdentifier>
                <relatedIdentifier relatedIdentifierType="DOI" relationType="Documents" resourceTypeGeneral="Text">10.34726/hss.2026.129388</relatedIdentifier>
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              <descriptions>
                <description descriptionType="Abstract">Context and methodology

This data was collected within the framework of the PhD thesis by Danijela Bogdanovic. The thesis has been deposited in TU Wien's reposiTUm . The data is currently restricted. The thesis aimed for further exploration and optimization of photopolymerizable bone adhesives, particularly with regard to their degradability and biocompatibility. 

The thesis comprises three main chapters, which describe in the following order: 1.) the improvement of the adhesion strength under wet conditions; 2.) the enhancement of the biodegradability of the matrix monomers; and 3.) the improvement of biocompatibility through the establishment of porous structures.

The first chapter covers the synthesis of new primer molecules as well as experimental data obtained from shear-bond-strength measurements. The second chapter describes the synthesis of alternative ene- monomers and the evaluation of their potential as degradable monomers in the final bone adhesive formulation. The third chapter describes the process of producing porous bone adhesives. 

Technical details

The data set is organized in several files/folders as described below.

PPTX file “Artwork_Danijela_Bogdanovic” contains all created images used in the abstract, introduction and summary of the thesis.

PPTX file “Visualized_data_Danijela_Bogdanovic” contains all processed and visualized data.

PPTX file “Compounds_Danijela_Bogdanovic” contains all synthesized substances and their shortcuts for easier assignment of the NMR files and other datasets.

Folder “NMR_raw_data” (ZIP) contains raw data of the substances referenced in the PPTX file “Compounds_Danijela_Bogdanovic” in following subfolders:

·       “Primer molecule” (substances from chapter 1.1)

·       “Wet adhesion” (substances from chapter 1.4)

·       “Degradable matrix ene-monomers” (substances from chapter 2.1 and 2.2)

Folder “Raw_data” (ZIP) contains the following data sets:

·       XLSX file “SBS_measurements_raw_data” contain all data sets (single measurements) from performed SBS-measurements from chapters 1,2 and 3.

·       XLSX file “Degradation_raw_data” contains the raw data from the performed degradation study, described in chapter 3.2.

·       XLSX file “Photorheo_raw_data” contains the data sets from photorheology studies described in chapter 2.2.

Folder “SEM_images” (ZIP) contains images in following subfolders:

·       “BoneAdh_Matrix_fiber_interaction” contains all SEM-images performed for evaluation of the fiber-matrix interface

·       “ES_PVA_and_PVA_Norb_20%” contains all SEM-images performed for visualization of electrospun PVA and PVA-Norb fibers from a 20 wt% aqu. solution

·       “ES_PVA_and_PVA_Norb_25%” contains all SEM-images performed for visualization of electrospun PVA and PVA-Norb fibers from a 25 wt% aqu. solution

·       “SBS_pins_nofiber” contains all SEM-images performed for visualization of the pin surface of the bone adhesive after SBS-measurement

·       “SBS_pins_with fibers” contains all SEM-images of the pin surface of the bone adhesive containing electrospun PVA-Norb fibers after SBS-measurement

·       “specimens_with_fibers” contains SEM-images of bone adhesives containing PLA and PVA-fibers

File types:

·       Bruker NMR raw data directories (pdata, acqu, shimvalues, etc.): processable with MestreNova or Bruker TopSpin</description>
              </descriptions>
              <fundingReferences>
                <fundingReference>
                  <funderName>Christian Doppler Research Association</funderName>
                  <funderIdentifier funderIdentifierType="ROR">00mv8h305</funderIdentifier>
                  <awardTitle>Christian Doppler Laboratory for Advanced Polymers for Biomaterials and 3D Printing</awardTitle>
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