 “ dark –axis” 10g/l ob-H 2 Pc Pen Writing A P Au (Electrode) CuPc (Electron Donor) PTCDA (Electron Acceptor) ZnO (Hole Blocking Layer) ITO (Transparent.

Slides:



Advertisements
Similar presentations
Jason D. Myers, Sang-Hyun Eom, Vincent Cassidy, and Jiangeng Xue
Advertisements

Surface Modification of Indium-Tin Oxide Electrodes With Gold Nanoparticles and Its Effect on Organic Photovoltaic Performance Diogenes Placencia and Neal.
Bandgap Engineering of UV-Luminescent Nanomaterials Leah Bergman, University of Idaho, DMR CAREER One of the main advantages of a nanomaterial.
LECTURE- 5 CONTENTS  PHOTOCONDUCTING MATERIALS  CONSTRUCTION OF PHOTOCONDUCTING MATERIALS  APPLICATIONS OF PHOTOCONDUCTING MATERIALS.
2012 Transfer-to-Excellence Research Experiences for Undergraduates Program (TTE REU) Characterization of layered gallium telluride (GaTe) Omotayo O Olukoya.
Optical methods for semiconductor characterization Guillaume von Gastrow.
Structural Properties of Electron Beam Deposited CIGS Thin Films Author 1, Author 2, Author 3, Author 4 a Department of Electronics, Erode Arts College,
GOALI: Growth-dependent identification and control of defects and dopants in ZnO – DMR L. J. Brillson and D. C. Look A major objective of this.
Influence of Acceptor Structure on Barriers to Charge Separation in Organic Photovoltaic Materials Ryan D. Pensack†, Changhe Guo‡, Kiarash Vakhshouri‡,
Coulomb Interaction in quantum structures - Effects of
Substantially Conductive Polymers Part 02. Usually, soliton is served as the charge carrier for a degenerated conducting polymer (e.g. PA) whereas.
Utilizing Carbon Nanotubes to Improve Efficiency of Organic Solar Cells ENMA 490 Spring 2006.
Coupled optoelectronic simulation of organic bulk-heterojunction solar cells: Parameter extraction and sensitivity analysis R. Häusermann,1,a E. Knapp,1.
Fei Yu and Vikram Kuppa School of Energy, Environmental, Biological and Medical Engineering College of Engineering and Applied Science University of Cincinnati.
EXPERIMENTAL PROCEDURE MAJOR FINDINGS & DISCUSSIONS
© Imperial College London 1 Photovoltaics: Research at Imperial College Jenny Nelson Department of Physics Imperial College London Grantham Climate Change.
Nathan Duderstadt, Chemical Engineering, University of Cincinnati Stoney Sutton, Electrical Engineering, University of Cincinnati Kate Yoshino, Engineering.
PREPARATION OF ZnO NANOWIRES BY ELECTROCHEMICAL DEPOSITION
Direct Imaging of Crystallite Morphology in High Efficiency Organic Solar Cells Alan J. Heeger, University of California-Santa Barbara, DMR Solution-Processed.
Growth and Analysis of MOCVD Grown Crystalline GaAs Andrew Howard, Dr. S. Phillip Ahrenkiel SDSM&T Nanoscience Department NSF REU Grant # Objectives.
Optical Characterization of GaN-based Nanowires : From Nanometric Scale to Light Emitting Devices A-L. Bavencove*, E. Pougeoise, J. Garcia, P. Gilet, F.
Alternative Energy Sources Organic Photovoltaic (OPV) Timothy McLeod Summer 2006.
CEAS REU Project 4 Synthesis of Solar Cell Materials, and Fabrication of Novel Polymer-Based Solar Cells Nathan Duderstadt, Chemical Engineering, University.
Solar cell efficiency, self-assembly and dipole-dipole interactions of isomorphic narrow bandgap molecules Alan J. Heeger, University of California-Santa.
In this study, it has been found that annealing at ambient air at 500 ˚C of DC sputtered Mo bilayer produce MoO x nanobelts. Evolution of MoO x nanobelts.
.Abstract Field effect gas sensors based on zinc oxide were fabricated. In order to increase gas sensor’s sensitivity to carbon monoxide, Au nanoparticles.
“Electron dynamics in organic semiconductors and at organic metal interfaces” Xiaoyang Zhu, University of Minnesota, NSF DMR March 1 st,
The Hot Charge Transfer (CT) Exciton Mechanism in Organic Photovoltaics Xiaoyang Zhu, University of Minnesota-Twin Cities, DMR A charge transfer.
Mechanisms of ultra-smoothing induced by ion beam erosion Randall L. Headrick, University of Vermont, DMR Ion erosion of solid surfaces is known.
Fullerene Derivatives Kirsten Parratt, Loo Lab, 11/9/2010
“Bottom-Up” Design of Nanostructured Conducting Polymer Thin Films Evgueni E. Nesterov, Louisiana State University & Agricultural and Mechanical College,
1 Materials Science Laboratory, Department of Physics, College of Science, Az Zulfi, Majmaah University, KSA.
One of our recent research efforts focuses on the synthesis of Mg x Zn 1-x O nanoalloys and on studies concerning their optical and material properties.
Novel Real Time Optics for Thin Film Materials Research - I Robert W. Collins The Pennsylvania State University, DMR New optical spectroscopies.
Note! The following is excerpted from a lecture found on-line. The original author is Professor Peter Y. Yu Department of Physics University of California.
NIRT: Molecular Nanomagnets D.G. Naugle, G. Agnolet, F.A. Cotton, K.R. Dunbar, V. Pokrovsky, J.H. Ross, Jr. Texas A&M University — DMR : Fig. BFig.
Fiber optic networks –must be fast-acting –must integrate into fiber systems –must operate at infrared wavelengths Eye protection –scope sights –binoculars.
Electronic Properties of Thin Film Organic Superconductors studied using Synchrotron Radiation-based Soft X-Ray Spectroscopies Kevin E. Smith, Boston University,
1 um We seek to understand the electrical and optical properties of single organic semiconducting molecules contacted on either end by metal electrodes.
The use of polymer layers in light emitting devices has many applications in flexible devices and electronics, and relies on the ability of these polymers.
Negative Capacitance Devices to Enable Low- Voltage/Low-Power Switching In Electronic Devices John G. Ekerdt, University of Texas at Austin, DMR
Study of Small-Molecule Thin Organic Films Deposited on Porous Silicon Substrates Zbigniew Łukasiak Andrzej Korcala, Przemysław Płóciennik, Anna Zawadzka.
Organic Photovoltaic Cell
J.Vaitkus IWORID6, Glasgow,
1 Enhanced efficiency of GaN-based light-emitting diodes with periodic textured Ga-doped ZnO transparent contact layer 指導教授 : 管 鴻 (Hon Kuan) 老師 學生 : 李宗育.
M.S. Hossain, N.A. Khan, M. Akhtaruzzaman, A. R. M. Alamoud and N. Amin Solar Energy Research Institute (SERI) Universiti Kebangsaan Malaysia (UKM) Selangor,
Theoretical Solid State Physics Marvin L. Cohen and Steven G. Louie, University of California at Berkeley, DMR Carbon nanotubes possess novel properties.
Existing Proposal: (1) SF in pentacene-C 60 (PEN:C 60 ) solar cells generates two PEN triplets at energy E T 1 from a single optical singlet at energy.
HUI LIU, JINJUN LIU, Department of Chemistry, HEMANT M. SHAH and BRUCE W. ALPHENAAR, Department of Electrical & Computer Engineering, University of Louisville.
Electronic devices which are  Optically transparent  See-through  Invisibly light in weight  Transparent in visible portion of the Electromagnetic.
A bottom-up rationale for OPV architecture Fabrication Performance Challenges Research opportunities Research Methods in PV: Organic photovoltaic devices.
Characterization of mixed films
Date of download: 6/23/2016 Copyright © 2016 SPIE. All rights reserved. (a) Schematic of the dye sensitized solar cell (DSSC) design consists of multilayer.
ZnO Nanostructures Grown by Pulsed Laser Deposition
ZnO and Mg x Zn 1-x O are technologically promising materials for luminescence applications in the ultraviolet (UV) range. ZnO has a bandgap ~3.3 eV, while.
Organic solar cells based on CuPc and C 60 B. Delgertsetseg, G. Erdene-Ochir, R. Galbadrakh, D. Dorj and C. Ganzorig Department of Chemical Technology,
Saifful Kamaluddin bin Muzakir
THE EFFECT OF SPIN COATING RATE ON MICROSTRUCTURES OF CUPROUS OXIDE THIN FILM PREPARED BY SOL-GEL TECHNIQUE DEWI SURIYANI BT CHE HALIN School of Material.
Single-molecule transistors: many-body physics and possible applications Douglas Natelson, Rice University, DMR (a) Transistors are semiconductor.
Strong infrared electroluminescence from black silicon
Synthesis and Characterization of ZnO-CdS Core-Shell Nanohybrids by Thermal Decomposition Method and Studies on Their Charge Transfer Characteristics Rama.
Triplet Excitons in Hybrid Perovskites
Shafi Ullah, Miguel Mollar, Bernabé Mari
Utilizing Carbon Nanotubes to Improve Efficiency of Organic Solar Cells ENMA 490 Spring 2006.
E. Kheirandish, T. Hosseini, N. Yavarishad, N. Kouklin Dept
DOI: /anie Angew. Chem. Int. Ed. 2012, 51, 3837 –3841 Yuna Kim
Exciton Fission in Solid Tetracene and Related Materials: a Possible Strategy for High Efficiency Organic Solar Cells Increasing the yield of charge carriers.
Anisotropic Polarized Emission from ReS2
Main Text Figures.
Fabrication of SnS/SnS2 heterostructures
Presentation transcript:

 “ dark –axis” 10g/l ob-H 2 Pc Pen Writing A P Au (Electrode) CuPc (Electron Donor) PTCDA (Electron Acceptor) ZnO (Hole Blocking Layer) ITO (Transparent Electrode) Undergraduate Research on Complex Materials Dennis P. Clougherty, University of Vermont & State Agricultural College, DMR T = 5K- ObPc X(  m) Y(  m) LD   dark axis c 2c (Å)  E =E (1) -E (2) (1)- “bright” exciton (2)- “dark” exciton Davydov Splitting  E exp = 0.09 eV Figure 1. (a) Linear Dichroism (LD) and Photoluminescence (PL) microscopy of solution- deposited polycrystalline H 2 Pc films with mm- sized grains. The LD contrast at the grain boundary accounts for the different orientation of adjacent grains. Low temperature PL spectra indicates the presence of an optically-forbidden (dark) exciton ground state. (b) Schematics and current-voltage characteristic of the inverted organic photovoltaic cell (IOPV). The use of the ZnO layer allows the use of the higher work function gold electrode as a replacement for the traditional aluminum which greatly increases cell durability and lifespan. (c) Calculation of the dark-bright exciton (Davydov) splitting in an H 2 Pc quasi 1D molecular chain predicts the singlet ground state is forbidden (“dark”). (a) Erik Horak (b) Michael Durant Roy Anderson (c) In recent years organic photovoltaics (OPVs) have gained attention as devices that can be used with alternative energy sources. Although much research has shifted to polymer-based OPVs, some of the highest efficiencies to date have been recorded in cells based on small-molecule semiconductors. We investigated the electronic properties and potential for PV applications of Cu- and metal-free (H 2 )- phthalocyanine (Pc) poly-crystalline thin films. Erik Horak imaged the correlations between long range ordering and the nature of electron–hole pair exciton states using linear dichroism (LD) and photoluminescence spectroscopy (PL). He found that a low -temperature rotation of the molecular plane with respect to the crystalline c-axis is responsible for the observation of a long-lived (dark) exciton recombination, labeled as feature (2) in Figure 1(a). Roy Anderson used a simple 1D molecular crystal model first proposed by Davydov to estimate the dark- bright exciton splitting. His calculations, shown in Figure 2(c) indicate the exciton ground state is optically –dark if the angle between the molecular plane and the c-axis is larger than 54.7 o. Finally, Michael Durant fabricated a working inverted OPV device (Figure 1(b)) and characterized the effects of different parameters such as film thickness, annealing, and a modified ZnO layer on cell performance. He found the addition of the ZnO layer increases the power conversion efficiency in the inverted cell in comparison to previous geometries.

Undergraduate Research on Complex Materials Dennis P. Clougherty, University of Vermont & State Agricultural College, DMR Erik Horak: “Electronic Properties of Organic Discotic Molecules” Danica Kennedy: “Characterization and Synthesis of New Zirconium- Arsinidene Complexes” The UVM REU students give presentations at UVM physics and chemistry seminars attended by undergraduates, graduate students and faculty. The UVM REU program includes weekly cohort meetings with faculty to discuss the nature of science and research, written and oral presentation skills, NSF funding process and proposal writing, and legal and ethical issues in research.