Origin of Long Lifetime of Charge Carriers in Solar Cell Perovskites

Slides:



Advertisements
Similar presentations
Electrolysis Amy Jewel, Rob Larkin and Todd Haurin “Water will be the coal of the future.” -Jules Verne, 1874.
Advertisements

Chapter 5 Light and Matter: Reading Messages from the Cosmos
EE580 – Solar Cells Todd J. Kaiser
P and n type semiconductors. Semiconductors Semiconductors are also referred to as metalloids. Metalloids occur at the division between metals and non-metals.
Textbook: Electronic Devices and Circuit Theory Robert L.Boylested.
Solar Cells 3 generations of solar cells:
Electricity – Energy in Circuits
Thienothiophene based polymers for organic solar cell with highest efficiency Luping Yu, University of Chicago, DMR Efficient and cost effective.
Fig 2a: Illustration of macroscopic defects Diffusion lengths are calculated by the equation where μ is the mobility of electron with literature value.
Solar Energy - Photovoltaics UTI-111 Prof. Park Essex County College.
Efficiency Increase in Photovoltaic Solar Cells from Perovskite Semiconductor Joshua Lewis, Parsons Hall, 23 Academic Way, Durham.
Topic: Solar Energy Basics Objective: ▫ Explain availability of solar power and solar energy collection. Summary: A short presentation is provided to the.
Light-Generated Current
1 Free Electron Model for Metals Metals are very good at conducting both heat and electricity. A lattice of in a “sea of electrons” shared between all.
Electric Current AP Physics C Montwood High School R.Casao.
Wind Distribution 1. Off-shore Wind distribution 2.
Free Electron Model for Metals
Photoluminescence and Photocurrent in a Blue LED Ben Stroup & Timothy Gfroerer, Davidson College, Davidson, NC Yong Zhang, University of North Carolina.
Organic Photovoltaic Cell
Solar Energy By: Kyle McPhail. Facts Solar energy is radiant light and heat from the sun Every hour the sun beams down enough energy to power to planet.
Solar Energy - Photovoltaics UTI-111 Prof. Park Essex County College.
Topic #1: Bonding – What Holds Atoms Together?
The Adaptation of Perovskite Compounds in Photovoltaics Matt Weiss | Will Humble University of Pittsburgh SSOE SOLAR NECESSITY EFFICIENCY A SUSTAINABLE.
  By:Layan 5C Solar Energy   Solar energy is a form of energy from the sun What Is Solar Energy?
Properties of metals Metals (75% of elements) Lustrous (reflect light)
TEAK – Traveling Engineering Activity Kits
Development and studies of thin film nanocrystal based photovoltaics. By Mauricio Andrade ChE 389 Department of Chemical Engineering Summer 2007.
Nevzat AKKURT Thesis: Investigation of the Criteria for Fluid selection in an Organic Rankine Cycle based on a solar-geothermal hybrid plant Room 1337,
Presented by:- Nayanee Singh B.Tech(E.C.), 5 th sem Roll no: Banasthali University Rajasthan.
NANO SCIENCE IN SOLAR ENERGY
Hadi Maghsoudi 27 February 2015
Presentation on. Presented by  The current which flows in only one direction is called DC current  Direct current is produced by such sources as batteries,
ABSTRACT MATERIALS / METHODS CONCLUSIONS REFERENCES RESULTS OBJECTIVES
Recall that when two conducting objects at different potentials are connected by a conducting wire, charge flows from the object at a higher potential.
Solar Energy Improvement Techniques
Memory Allocation The main memory must accommodate both:
Conduction of Electricity in Solids
Hadi Maghsoudi 27 February 2015
Date of download: 10/22/2017 Copyright © ASME. All rights reserved.
Lesson 2 : What is electricity in the first place?
12.3 Portable Sources of Electrical Energy: Electric Cells
ISMS 2016 Urbana, IL Vura-Weis Group - UIUC
Speaker : Won Il Park, Ph.D
Chemistry of Photovoltaic Cells
Forms of Energy Foldable
Triplet Excitons in Hybrid Perovskites
Insulators, Semiconductors, Metals
Electric Circuits (12.2).
Electric Circuits (12.2).
12.3 Portable Sources of Electrical Energy: Electric Cells
Forms of Energy Foldable
Negative impact of solar farms and solutions
Emergence of Modern Science Electricity and Magnatism
Chapter 4 Excess Carriers in Semiconductors
Alternative Energy Sources
Photonics and Electro-Optical Engineering
What is Radiation? Energy emitted from a source is generally referred to as radiation. Can be either wave or particles… EM Wave radiation.
A review of micro radioisotopic batteries
Exciton Fission in Solid Tetracene and Related Materials: a Possible Strategy for High Efficiency Organic Solar Cells Increasing the yield of charge carriers.
Nano Optoelectronics Lab
Rhetorical Situation Audience: People interested in renewable energy; primarily, innovators and investors from energy corporations. Purpose:
bonds break atoms move around bonds reform
Perovskite Solar Cells Go Lead Free
Sources of Potential Difference
Nat. Rev. Mater. doi: /natrevmats
12.3 Portable Sources of Electrical Energy: Electric Cells
Types of Semiconductor Materials By Dr
Rui Wang, Jintao Wang, Shaun Tan, Yu Duan, Zhao-Kui Wang, Yang Yang
Conduction of Electricity in Solids
TFT – Thin Film Transsistor BIPV – Built In PV.
Presentation transcript:

Origin of Long Lifetime of Charge Carriers in Solar Cell Perovskites When sunlight shines on a semiconducting material, electrons in the material can be excited from their original states to higher energy states, forming photo-excited electrons and leaving empty states (called holes) in the original states. Usually the excited electrons and holes (charge carriers) quickly meet and annihilate each other. However if they survive long enough to be collected in an external circuit, then they can produce electricity: solar energy is transformed to electricity. Hybrid organic-inorganic perovskites (HOIPs) are among the most promising materials for next generation solar cells that combine high efficiency and low-cost. It has been shown that long lifetime of the charge carriers is what makes hybrid organic-inorganic perovskites high performance photovoltaic materials. The microscopic mechanism for the long lifetime however has been controversial. This work shows, by using a combination of optoelectronic property measurements and neutron scattering techniques, that the screening of charge carriers by rotation of organic cation molecules is a major contribution to the prolonged carrier lifetime. Thus, searching for hybrid organic-inorganic perovskites with high rotational entropy over a wide range of temperature may be a key to achieve superior solar cell performance. Tianran Chen, Wei-Liang Chen, Benjamin J. Foley, Jooseop Lee, Jacob Ruff, J. Y. Peter Ko, Craig M. Brown, Leland W. Harriger, Depei Zhang, Changwon Park, Mina Yoon, Yu-Ming Chang, Joshua J. Choi, and Seung-Hun Lee, Proceedings of the National Academy of Sciences, doi: 10.1073/pnas.1704421114 (2017).