語系:
繁體中文
English
說明(常見問題)
回圖書館首頁
手機版館藏查詢
登入
回首頁
切換:
標籤
|
MARC模式
|
ISBD
Exploring exciton and trap state rec...
~
Woodall, Danielle Louise.
FindBook
Google Book
Amazon
博客來
Exploring exciton and trap state recombination dynamics in cadmium sulfide quantum dots.
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Exploring exciton and trap state recombination dynamics in cadmium sulfide quantum dots./
作者:
Woodall, Danielle Louise.
面頁冊數:
166 p.
附註:
Source: Dissertation Abstracts International, Volume: 76-11(E), Section: B.
Contained By:
Dissertation Abstracts International76-11B(E).
標題:
Nanoscience. -
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=3711406
ISBN:
9781321876147
Exploring exciton and trap state recombination dynamics in cadmium sulfide quantum dots.
Woodall, Danielle Louise.
Exploring exciton and trap state recombination dynamics in cadmium sulfide quantum dots.
- 166 p.
Source: Dissertation Abstracts International, Volume: 76-11(E), Section: B.
Thesis (Ph.D.)--The University of North Carolina at Charlotte, 2015.
Colloidal semiconducting quantum dots (QDs) are ideal candidates for optoelectronic devices such as solar cells and LEDs because of their high photoluminescence (PL) quantum yields and photostability. In order to improve device efficiencies, we must understand how QD surfaces affect charge dynamics within the QD. In this work we demonstrate that CdS is an excellent model system for studying QD carrier dynamics for two principle reasons: (i) they produce both exciton and surface-localized trap state emission and (ii) their surface chemistry is simplified by the presence of only one ligand species.
ISBN: 9781321876147Subjects--Topical Terms:
587832
Nanoscience.
Exploring exciton and trap state recombination dynamics in cadmium sulfide quantum dots.
LDR
:02899nmm a2200289 4500
001
2066800
005
20160204121824.5
008
170521s2015 ||||||||||||||||| ||eng d
020
$a
9781321876147
035
$a
(MiAaPQ)AAI3711406
035
$a
AAI3711406
040
$a
MiAaPQ
$c
MiAaPQ
100
1
$a
Woodall, Danielle Louise.
$3
3181650
245
1 0
$a
Exploring exciton and trap state recombination dynamics in cadmium sulfide quantum dots.
300
$a
166 p.
500
$a
Source: Dissertation Abstracts International, Volume: 76-11(E), Section: B.
500
$a
Adviser: Marcus Jones.
502
$a
Thesis (Ph.D.)--The University of North Carolina at Charlotte, 2015.
520
$a
Colloidal semiconducting quantum dots (QDs) are ideal candidates for optoelectronic devices such as solar cells and LEDs because of their high photoluminescence (PL) quantum yields and photostability. In order to improve device efficiencies, we must understand how QD surfaces affect charge dynamics within the QD. In this work we demonstrate that CdS is an excellent model system for studying QD carrier dynamics for two principle reasons: (i) they produce both exciton and surface-localized trap state emission and (ii) their surface chemistry is simplified by the presence of only one ligand species.
520
$a
First we, use temperature-dependent time-resolved photoluminescence (TRPL) to measure both exciton and trap recombination dynamics and find that an activated trapping process influences exciton dynamics while trap dynamics are dominated by non-radiative recombination. We propose a model to explain the exciton dynamics in which electron transfer from the exciton state to the deep emissive trap state occurs via a temperature-dependent multi-step process requiring multiple non-emissive trap state distributions. Second, we identify the nature of the trap state using excitation-dependent TRPL, and demonstrate for the first time that trap excited state lifetimes are up to four times longer when influenced by the exciton state compared to direct excitation. Finally, we attempt to control trap emission by altering the amount of native ligand, oleic acid on the QD surface. We present evidence that the ligand coverage on the QD surface and in solution affects not only trap emission but also exciton emission, and suggest that oleic acid plays a more complicated role in QD emission than previously expected. By developing CdS as a model system for trapping dynamics, we further our understanding of these dynamics and enable the development of new technologies that take advantage of the trap state benefits such as broad emission and long-lived charge separated states.
590
$a
School code: 0694.
650
4
$a
Nanoscience.
$3
587832
650
4
$a
Physical chemistry.
$3
1981412
690
$a
0565
690
$a
0494
710
2
$a
The University of North Carolina at Charlotte.
$b
Nanoscale Science.
$3
2096805
773
0
$t
Dissertation Abstracts International
$g
76-11B(E).
790
$a
0694
791
$a
Ph.D.
792
$a
2015
793
$a
English
856
4 0
$u
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=3711406
筆 0 讀者評論
館藏地:
全部
電子資源
出版年:
卷號:
館藏
1 筆 • 頁數 1 •
1
條碼號
典藏地名稱
館藏流通類別
資料類型
索書號
使用類型
借閱狀態
預約狀態
備註欄
附件
W9299668
電子資源
11.線上閱覽_V
電子書
EB
一般使用(Normal)
在架
0
1 筆 • 頁數 1 •
1
多媒體
評論
新增評論
分享你的心得
Export
取書館
處理中
...
變更密碼
登入