A Study of the Interactions of Polar Organic Molecules with Metal and Metal Oxide Surfaces

A Study of the Interactions of Polar Organic Molecules with Metal and Metal Oxide Surfaces
Title A Study of the Interactions of Polar Organic Molecules with Metal and Metal Oxide Surfaces PDF eBook
Author Anthony Vincent Fraioli
Publisher
Pages 150
Release 1956
Genre Metallic oxides
ISBN

Download A Study of the Interactions of Polar Organic Molecules with Metal and Metal Oxide Surfaces Book in PDF, Epub and Kindle

Dynamics of Molecule-Surface Interactions on Metal Oxides

Dynamics of Molecule-Surface Interactions on Metal Oxides
Title Dynamics of Molecule-Surface Interactions on Metal Oxides PDF eBook
Author
Publisher
Pages 0
Release 2000
Genre
ISBN

Download Dynamics of Molecule-Surface Interactions on Metal Oxides Book in PDF, Epub and Kindle

The interactions of vibrationally excited HCI(v =2) with MgO(100) surfaces have been examined in detail, with scattered HCI(v =2) detected state selectively by resonance enhanced multiphoton ionization (REMPI). Simulations using a random walk model and 'best estimates' for activation energies for desorption and hopping suggest that deactivation probably occurs at steps. In parallel, a new apparatus has been designed and built for a next generation of studies of molecular interactions on insulating oxide surfaces. Specifically, FTIR will be used to determine geometries and adsorption, and TPD, REMPI and other laser-based spectroscopies will be used to interrogate interactions of molecules and radicals with the surface and with other adsorbates.

Organic Molecules on Metal and Oxide Semiconductor Substrates

Organic Molecules on Metal and Oxide Semiconductor Substrates
Title Organic Molecules on Metal and Oxide Semiconductor Substrates PDF eBook
Author Charles M. Ruggieri
Publisher
Pages 175
Release 2016
Genre Photoelectron spectroscopy
ISBN

Download Organic Molecules on Metal and Oxide Semiconductor Substrates Book in PDF, Epub and Kindle

Modern devices such as organic light emitting diodes use organic/oxide and organic/metal interfaces for crucial processes such as charge injection and charge transfer. Understanding fundamental physical processes occurring at these interfaces is essential to improving device performance. The ultimate goal of studying such interfaces is to form a predictive model of interfacial interactions, which has not yet been established. To this end, this thesis focuses on obtaining a better understanding of fundamental physical interactions governing molecular self-assembly and electronic energy level alignment at organic/metal and organic/oxide interfaces. This is accomplished by investigating both the molecular adsorption geometry using scanning tunneling microscopy, as well as the electronic structure at the interface using direct and inverse photoemission spectroscopy, and analyzing the results in the context of first principles electronic structure calculations. First, we study the adsorption geometry of zinc tetraphenylporphyrin (ZnTPP) molecules on three noble metal surfaces: Au(111), Ag(111), and Ag(100). These surfaces were chosen to systematically compare the molecular self-assembly and adsorption behavior on two metals of the same surface symmetry and two surface symmetries of one metal. From this investigation, we improve the understanding of self-assembly at organic/metal interfaces and the relative strengths of competing intermolecular and molecule-substrate interactions that influence molecular adsorption geometry. We then investigate the electronic structure of the ZnTPP/Au(111), Ag(111), and Ag(100) interfaces as examples of weakly-interacting systems. We compare these cases to ZnTPP on TiO2(110), a wide-bandgap oxide semiconductor, and explain the intermolecular and molecule-substrate interactions that determine the electronic energy level alignment at the interface. Finally we study tetracyanoquinodimethane (TCNQ), a strong electron acceptor, on TiO2(110), which exhibits chemical hybridization accompanied by molecular distortion, as well as extreme charge transfer resulting in the development of a space charge layer in the oxide. Thus, we present a broad experimental and theoretical perspective on the study of organic/metal and organic/oxide interfaces, elucidating fundamental physical interactions that govern molecular organization and energy level alignment.

American Doctoral Dissertations

American Doctoral Dissertations
Title American Doctoral Dissertations PDF eBook
Author
Publisher
Pages 776
Release 2001
Genre Dissertation abstracts
ISBN

Download American Doctoral Dissertations Book in PDF, Epub and Kindle

The Surface Science of Metal Oxides

The Surface Science of Metal Oxides
Title The Surface Science of Metal Oxides PDF eBook
Author Victor E. Henrich
Publisher
Pages 464
Release 1994
Genre Science
ISBN 9780521443890

Download The Surface Science of Metal Oxides Book in PDF, Epub and Kindle

The first book to give a comprehensive account of the fundamental properties of metal-oxide surfaces.

Dissertation Abstracts

Dissertation Abstracts
Title Dissertation Abstracts PDF eBook
Author
Publisher
Pages 238
Release 1958
Genre Dissertations, Academic
ISBN

Download Dissertation Abstracts Book in PDF, Epub and Kindle

Masters Theses and Doctoral Dissertations in the Pure and Applied Sciences ... Accepted by Colleges and Universities of the United States

Masters Theses and Doctoral Dissertations in the Pure and Applied Sciences ... Accepted by Colleges and Universities of the United States
Title Masters Theses and Doctoral Dissertations in the Pure and Applied Sciences ... Accepted by Colleges and Universities of the United States PDF eBook
Author
Publisher
Pages 528
Release 1959
Genre Chemistry
ISBN

Download Masters Theses and Doctoral Dissertations in the Pure and Applied Sciences ... Accepted by Colleges and Universities of the United States Book in PDF, Epub and Kindle