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Keith Porter, 1956
Keith R. Porter. The submicroscopic morphology of protoplasm Lecture delivered March 15, 1956 Posted with permission
Published by: Academic Press
High fidelity analysis to predict failure in T-joints
Composite T-joints and similar skin-stiffener joints have a central role in aerospace structures. However, their accurate numerical analysis is still a great challenge due to their complex geometry and stress state during...
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High fidelity analysis to predict failure in T-joints
Composite T-joints and similar skin-stiffener joints have a central role in aerospace structures. However, their accurate numerical analysis is still a great challenge due to their complex geometry and stress state during...
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Extracellular Lactate
Following activation, T cells rapidly divide and acquire effector functions. This energetically demanding process depends upon the ability of T cells to undergo metabolic remodeling from oxidative phosphorylation to aerobic...
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Morphological control of band offsets for transparent bipolar heterojunctions
Keith T. Butler
Jul 01, 2015

Cuprous iodide is an important transparent p-type semiconductor, it has an illustrious history, and has recently enjoyed a renaissance. In this work, we investigate the electronic band structure and absolute electron energies...

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Butler enables rapid cloud-based analysis of thousands of human genomes.
We present Butler, a computational tool that facilitates large-scale genomic analyses on public and academic clouds. Butler includes innovative anomaly detection and self-healing functions that improve the efficiency of data...
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Morphological control of band offsets for transparent bipolar heterojunctions
Keith T. Butler
Jul 01, 2015

Cuprous iodide is an important transparent p-type semiconductor, it has an illustrious history, and has recently enjoyed a renaissance. In this work, we investigate the electronic band structure and absolute electron energies...

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Prediction of electron energies in metal oxides
Aron Walsh, Keith T. Butler
Feb 18, 2014
The ability to predict energy levels in metal oxides is paramount to developinguseful materials, such as in the development of water photolysis catalysts and efficient photovoltaic cells. The binding energy of electrons in...
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Ultra-thin oxide films for band engineering
Keith T. Butler, Aron Walsh
May 30, 2014
The alignment of band energies between conductive oxides and semiconductors is crucial for the further development of oxide contacting layers in electronic devices. The growth of ultra thin films on the surface of an oxide...
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Ultra-thin oxide films for band engineering
Keith T. Butler, Aron Walsh
May 30, 2014
The alignment of band energies between conductive oxides and semiconductors is crucial for the further development of oxide contacting layers in electronic devices. The growth of ultra thin films on the surface of an oxide...
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Prediction of electron energies in metal oxides
Aron Walsh, Keith T. Butler
Feb 18, 2014
The ability to predict energy levels in metal oxides is paramount to developinguseful materials, such as in the development of water photolysis catalysts and efficient photovoltaic cells. The binding energy of electrons in...
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Analysis of electrostatic stability and ordering in quaternary perovskite solid solutions

There are three distinct classes of perovskite structured metal oxides, defined by the charge states of the cations: AIBVO3,AIIBIVO3, and AIIIBIIIO3. We investigated the stability of cubic quaternary solid solutions...

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Band alignment of the hybrid halide perovskites CH3NH3PbCl3, CH3NH3PbBr3 and CH3NH3PbI3
Organic–inorganic halide perovskites efficiently convert sunlight to electricity in solar cells. The choice of halide (Cl, Br or I) can be used to chemically tune the spectral response of the materials and the positions of the...
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Band alignment of the hybrid halide perovskites CH3NH3PbCl3, CH3NH3PbBr3 and CH3NH3PbI3
Organic–inorganic halide perovskites efficiently convert sunlight to electricity in solar cells. The choice of halide (Cl, Br or I) can be used to chemically tune the spectral response of the materials and the positions of the...
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Electronic structure modulation of metal-organic frameworks for hybrid devices

The study of metal-organic frameworks has largely been motivated by their structural and chemical diversity; however, these materials also possess rich physics, including optical, electronic, and magnetic activity. If these...

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Analysis of electrostatic stability and ordering in quaternary perovskite solid solutions

There are three distinct classes of perovskite structured metal oxides, defined by the charge states of the cations: AIBVO3,AIIBIVO3, and AIIIBIIIO3. We investigated the stability of cubic quaternary solid solutions...

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Theory of ionization potentials of nonmetallic solids

Since the ionization potential (IP) is one of the fundamental quantities in a solid, ruling the physical and chemical properties and electronic device performances, many researchers have quantified the IPs using...

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Theory of ionization potentials of nonmetallic solids

Since the ionization potential (IP) is one of the fundamental quantities in a solid, ruling the physical and chemical properties and electronic device performances, many researchers have quantified the IPs using...

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Tra Pirandello e Judith Butler
Adalgisa Giorgio
May 22, 2008
This article sets itself a number of challenges:
1. to make a daring comparison between the notions of identity and subjectivity held by Italian modernist author Luigi Pirandello and contemporary American feminist theorist...
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Electronic structure modulation of metal-organic frameworks for hybrid devices

The study of metal-organic frameworks has largely been motivated by their structural and chemical diversity; however, these materials also possess rich physics, including optical, electronic, and magnetic activity. If these...

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Ferroelectric materials for solar energy conversion
The application of ferroelectric materials (i.e. solids that exhibit spontaneous electric polarisation) in solar cells has a long and controversial history. This includes the first observations of the anomalous photovoltaic...
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Ferroelectric materials for solar energy conversion
The application of ferroelectric materials (i.e. solids that exhibit spontaneous electric polarisation) in solar cells has a long and controversial history. This includes the first observations of the anomalous photovoltaic...
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Relativistic quasiparticle self-consistent electronic structure of hybrid halide perovskite photovoltaic absorbers

Solar cells based on a light absorbing layer of the organometal halide perovskite CH3NH3PbI3 have recently surpassed 15% conversion efficiency, though how these materials work remains largely unknown. We analyze the...

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