Toward lanthanide containing coordination polymers and nanomaterials

File
Publisher
Florida Atlantic University
Date Issued
2012
Description
The focus of this thesis is to develop lanthanide (Ln) luminescent materials through the exploration of coordination polymers and nanomaterials. Herein, dimethyl-3,4- furanedicarboxylate acid undergoes hydrolysis under hydrothermal conditions to form coordination polymers with lanthanide ions. The resulting coordination polymers exhibited luminescent properties, with quantum yields and lifetimes for the Eu-and Tb-CP of 1.14+-0.32% and 0.387=-0.0001 mx, and 3.33=-0.82% and 0.769=-0.006 ms, respectively. While the incorporation of lanthanides was not achieved in this work, progress toward the production of pure phase InP in the nanoregime has been made, using a low-cost, hydrothermal method. Through SEM and PXRD conflict, it is believed that pure INP particles with a size range of 58-81 nm were successfully synthesized.
Note

by Natalie E. Greig.

Language
Type
Extent
xi, 61 p. : ill. (some col.)
Identifier
829393708
OCLC Number
829393708
Additional Information
by Natalie E. Greig.
Thesis (M.S.)--Florida Atlantic University, 2012.
Includes bibliography.
Mode of access: World Wide Web.
System requirements: Adobe Reader.
Date Backup
2012
Date Text
2012
Date Issued (EDTF)
2012
Extension


FAU
FAU
admin_unit="FAU01", ingest_id="ing14768", creator="creator:NBURWICK", creation_date="2013-03-11 10:45:13", modified_by="super:FAUDIG", modification_date="2013-03-11 11:27:57"

IID
FADT3358558
Issuance
monographic
Person Preferred Name

Greig, Natalie E.
Graduate College
Physical Description

electronic
electronic resource
xi, 61 p. : ill. (some col.)
Title Plain
Toward lanthanide containing coordination polymers and nanomaterials
Use and Reproduction
http://rightsstatements.org/vocab/InC/1.0/
Origin Information


Boca Raton, Fla.

2012
monographic
Florida Atlantic University
Physical Location
FBoU FAUER
Place

Boca Raton, Fla.
Title
Toward lanthanide containing coordination polymers and nanomaterials
Other Title Info

Toward lanthanide containing coordination polymers and nanomaterials