Surface modification of graphene nanofillers to improve the thermal and mechanical properties of polybutylene succinate-graphene nanocomposites / (Record no. 7845)

MARC details
000 -LEADER
fixed length control field 05176ntm a2200373 i 4500
001 - CONTROL NUMBER
control field vtls000105346
003 - CONTROL NUMBER IDENTIFIER
control field KUKTEM
005 - DATE AND TIME OF LATEST TRANSACTION
control field 20251117113405.0
008 - FIXED-LENGTH DATA ELEMENTS--GENERAL INFORMATION
fixed length control field 181002t20182018my da f am 000 0 eng d
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
International Standard Book Number THE0000841(Local)
039 #9 - LEVEL OF BIBLIOGRAPHIC CONTROL AND CODING DETAIL [OBSOLETE]
Level of rules in bibliographic description 201905271617
Level of effort used to assign nonsubject heading access points nazirah
-- 201810021544
-- saini
040 ## - CATALOGING SOURCE
Original cataloging agency UMP
Language of cataloging eng
Transcribing agency UMP
Description conventions rda
090 ## - LOCALLY ASSIGNED LC-TYPE CALL NUMBER (OCLC); LOCAL CALL NUMBER (RLIN)
Classification number (OCLC) (R) ; Classification number, CALL (RLIN) (NR) FKKSA .A55 2018 r Thesis
100 0# - MAIN ENTRY--PERSONAL NAME
Personal name Anis Sakinah Zainal Abidin,
Relator term author.
245 10 - TITLE STATEMENT
Title Surface modification of graphene nanofillers to improve the thermal and mechanical properties of polybutylene succinate-graphene nanocomposites /
Statement of responsibility, etc. Anis Sakinah Zainal Abidin
264 #1 - PRODUCTION, PUBLICATION, DISTRIBUTION, MANUFACTURE, AND COPYRIGHT NOTICE
Place of production, publication, distribution, manufacture Kuantan, Pahang :
Name of producer, publisher, distributor, manufacturer UMP,
Date of production, publication, distribution, manufacture, or copyright notice 2018
264 #4 - PRODUCTION, PUBLICATION, DISTRIBUTION, MANUFACTURE, AND COPYRIGHT NOTICE
Date of production, publication, distribution, manufacture, or copyright notice © 2018
300 ## - PHYSICAL DESCRIPTION
Extent xxi, 208 pages :
Other physical details illustrations (some color), charts ;
Dimensions 30 cm. +
Accompanying material 1 CD-ROM
336 ## - CONTENT TYPE
Content type term text
Source rdacontent
336 ## - CONTENT TYPE
Content type term text
Source rdacontent
337 ## - MEDIA TYPE
Media type term unmediated
Source rdamedia
337 ## - MEDIA TYPE
Media type term computer
Source rdamedia
338 ## - CARRIER TYPE
Carrier type term volume
Source rdacarrier
338 ## - CARRIER TYPE
Carrier type term computer disc
Source rdacarrier
347 ## - DIGITAL FILE CHARACTERISTICS
File type text file
Encoding format PDF
Source rda
500 ## - GENERAL NOTE
General note Faculty of Chemical and Natural Resources Engineering
502 ## - DISSERTATION NOTE
Dissertation note Thesis (Doctor of Philosophy in Chemical Engineering) -- Universiti Malaysia Pahang – 2018
504 ## - BIBLIOGRAPHY, ETC. NOTE
Bibliography, etc. note Includes bibliographical references
520 3# - SUMMARY, ETC.
Summary, etc. This study investigated the reinforcing effects of alkylated graphene oxide on polybutylene succinate (PBS) matrix to promote homogeneous dispersion and increase the interfacial adhesion between graphene oxide (GO) and nonpolar polymer matrix. Therefore, GO was fabricated and functionalised with octadecylamine (ODA) prior to the incorporation with PBS matrix. The fabrication of GO was realised by oxidation of graphite using different graphite precursors via Hummer’s or Tour’s methods. Amount and types of oxygen-containing functional groups were characterised using X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), thermal gravimetric analysis (TGA), Fourier transform infrared spectroscopy (FTIR), and Raman spectroscopy. A predictive technique for estimating oxidised carbon ratio from Raman spectra was also developed. In this study, the oxidation of expanded graphite via Hummer’s method (KGO) was chosen for further functionalisation with octadecylamine due to higher percentage of oxidised carbon. The modification of GO with ODA was done via sonochemical reaction. The structure and morphology of the produced graphene oxide/octadecylamine (GOODA) was analysed using atomic force microscopy (AFM), field emission scanning electron microscopy (FESEM), XRD, transmission electron microscopy (TEM), and water contact angle. The successful functionalisation between GO and ODA was further confirmed via XPS, FTIR, and Raman analyses while the thermal properties were investigated with TGA analysis. The analyses showed that the modification of GO was proven successful with the insertion of amine group on GO planes. PBS matrix was grafted with graphene oxide/octadecylamine (GOODA) to produce PBS/GOODA via solution intercalation method. The distribution of filler and morphology was studied via FESEM and XRD. The thermal properties and degree of crystallinity of the nanocomposite were monitored by differential scanning calorimetry (DSC) and TGA. In addition, FTIR was performed for further understanding of the chemical interaction between the GOODA filler and PBS matrix. GOODA did not profoundly affect the crystallinity of PBS/GOODA nanocomposite but interestingly improved the mechanical and thermal properties. The addition of low loading GOODA content in PBS/GOODA nanocomposite exhibit a significant increment of tensile strength and Young’s modulus up to 50% and 58.9%, respectively at 0.1 wt% GOODA loading. The in situ reduction of GOODA by thermal treatment in PBS matrix was also done to study the effect of reduction and restoration of graphene plane on functionalised GO. Thermally treated PBS/GOODA (TTPBS/GOODA) showed a sharp increase in tensile strength and Young’s modulus exhibiting an increment of up to 78% and 96%, respectively from pristine PBS at 0.3 wt% GOODA loading. The improvement in strength and thermal behaviour of both PBS/GOODA and TTPBS/GOODA nanocomposite were attributed to the effective interfacial interaction between PBS and GOODA nanofiller. Design Expert software was used to optimise the filler loading and processing condition on tensile strength of TTPBS/GOODA nanocomposite. Processing parameters interaction was also investigated. The optimum condition was reported at 31 min of heating time, 0.11 wt% of GOODA loading, and 120 min of dispersion time with 38.78 MPa of tensile strength. In summary, the results obtained showed that the incorporation of GOODA in PBS matrix and in situ reduction of GOODA brought significant improvement in mechanical and thermal properties of both PBS/GOODA and TTPBS/GOODA nanocomposite.
610 20 - SUBJECT ADDED ENTRY--CORPORATE NAME
Corporate name or jurisdiction name as entry element Faculty of Chemical & Natural Resources Engineering
General subdivision Dissertations
650 #0 - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical term or geographic name entry element Universities and colleges
General subdivision Disertations
650 #0 - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical term or geographic name entry element Theses
Holdings
Withdrawn status Lost status Source of classification or shelving scheme Damaged status Not for loan Home library Current library Date acquired Total checkouts Full call number Barcode Date last seen Copy number Price effective from Koha item type
  Not lost Library of Congress Classification   Not for loan UMPLIB GAMBANG UMPLIB GAMBANG 04/09/2019   FKKSA .A55 2018 r Thesis 0000125080 04/09/2019 1 04/09/2019 Thesis
  Not lost Library of Congress Classification   Not for loan UMPLIB GAMBANG UMPLIB GAMBANG 04/09/2019   CD 11628 | FKKSA .A55 2018 r Thesis 0000125081 04/09/2019 1 04/09/2019 Thesis

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