Search Results - "Sax, Stefan"
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Organic Non-Volatile Resistive Photo-Switches for Flexible Image Detector Arrays
Published in Advanced materials (Weinheim) (01-02-2015)“…A unique implementation of an organic image detector using resistive photo‐switchable pixels is presented. This resistive photo‐switch comprises the vertical…”
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Designed Suppression of Aggregation in Polypyrene: Toward High-Performance Blue-Light-Emitting Diodes
Published in Advanced materials (Weinheim) (05-03-2010)“…A novel non‐aggregating polypyrene, which can be synthesized via a simple three‐step chemical route from pyrene in good yields, is presented…”
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3
Integrated catheter system for continuous glucose measurement and simultaneous insulin infusion
Published in Biosensors & bioelectronics (15-02-2015)“…A new measurement system enables combination of continuous glucose monitoring (CGM) and insulin infusion. A sensor system comprising an optical glucose…”
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Efficient Blue-Light-Emitting Polymer Heterostructure Devices: The Fabrication of Multilayer Structures from Orthogonal Solvents
Published in Advanced materials (Weinheim) (11-05-2010)“…An all‐solution processed organic light‐emitting diode with enhanced device efficiency based on an additional methanol‐soluble polyfluorene layer (see figure)…”
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Inkjet printed polymer light-emitting devices fabricated by thermal embedding of semiconducting polymer nanospheres in an inert matrix
Published in Applied physics letters (05-05-2008)“…An aqueous dispersion of semiconducting polymer nanospheres was used to fabricate polymer light-emitting devices by inkjet printing in an easy-to-apply process…”
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6
Resistive switching based on filaments in metal/PMMA/metal thin film devices
Published in Japanese Journal of Applied Physics (01-12-2015)“…The working mechanism of unipolar organic resistive switching thin-film devices is investigated. On the basis of a metal/poly(methyl methacrylate)/metal model…”
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Inkjet‐Printed Resistive Switching Memory Based on Organic Dielectric Materials: From Single Elements to Array Technology
Published in Advanced electronic materials (01-02-2015)“…The development of an all inkjet‐printed unipolar organic resistive switching memory element and its application in arrays are presented. An organic dielectric…”
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Organoiridium Quinolinolate Complexes: Synthesis, Structures, Thermal Stabilities and Photophysical Properties
Published in European Journal of Inorganic Chemistry (01-09-2007)“…The syntheses, solid‐state structures, thermal properties and photophysics of a series of heteroleptic iridium(III) complexes with phenylpyridine as the…”
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Synthesis and Photophysical Properties of 3,6-Diphenyl-9-hexyl-9H-carbazole Derivatives Bearing Electron Withdrawing Groups
Published in Monatshefte für Chemie (01-03-2008)“…3,6-Diphenyl-9-hexyl-9 H -carbazole derivatives bearing electron withdrawing groups, such as the formyl or the nitro-group in 4-positions of the phenyl…”
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Directly Imprinted Surface-Emitting Distributed Feedback Structure Polymer Sensor Laser Devices for Enhanced Oxygen Sensitivity
Published in Japanese Journal of Applied Physics (01-01-2008)Get full text
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11
Inkjet-printed embedded Ag-PEDOT:PSS electrodes with improved light out coupling effects for highly efficient ITO-free blue polymer light emitting diodes
Published in Applied physics letters (06-03-2017)“…We report on solution processed polymer light emitting diodes (PLEDs) using inkjet-printed embedded and non-embedded metal grid anodes. Metal grids were…”
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12
Core, Shell, and Surface-Optimized Dendrimers for Blue Light-Emitting Diodes
Published in Journal of the American Chemical Society (09-02-2011)“…We present a novel core−shell−surface multifunctional structure for dendrimers using a blue fluorescent pyrene core with triphenylene dendrons and…”
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13
Unravelling the Nature of Unipolar Resistance Switching in Organic Devices by Utilizing the Photovoltaic Effect
Published in Advanced materials (Weinheim) (23-04-2014)“…The origin of resistive switching in organic devices is studied by photovoltaic methods and impedance spectroscopy. The results show that the most commonly…”
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14
Highly Efficient Color-Stable Deep-Blue Multilayer PLEDs: Preventing PEDOT:PSS-Induced Interface Degradation
Published in Advanced materials (Weinheim) (27-08-2013)“…Highly efficient and stable blue light emission is observed in novel copolymers that are produced from specially designed building blocks. A PEDOT:PSS‐induced…”
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Ladder-Type Pentaphenylenes and Their Polymers: Efficient Blue-Light Emitters and Electron-Accepting Materials via a Common Intermediate
Published in Journal of the American Chemical Society (09-06-2004)“…A new route to ladder-type pentaphenylenes has been developed in which both good hole-accepting p-type and electron-accepting n-type materials can be prepared…”
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Monolithically integrated organic resistive switches for luminance and emission color manipulation in polymer light emitting diodes
Published in Applied physics letters (28-09-2015)“…The rising significance of organic light emitting diodes as lighting devices puts their peripheral devices into focus as well. Here, we present an organic…”
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8-Quinolinolates as Ligands for Luminescent Cyclometalated Iridium Complexes
Published in Chemistry of materials (20-03-2007)Get full text
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18
The single-port concept: combining optical glucose measurement with insulin infusion
Published in Acta diabetologica (01-10-2014)“…The aim of this study was to develop a single-port system that combines glucose monitoring and insulin infusion. In a preclinical proof-of-concept trial, the…”
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Deep blue polymer light emitting diodes based on easy to synthesize, non-aggregating polypyrene
Published in Optics express (07-11-2011)“…Thorough analyses of the photo- and devicephysics of poly-7-tert-butyl-1,3-pyrenylene (PPyr) by the means of absorption and photoluminescence emission, time…”
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SensLED: An Electro-Optical Active Probe for Oxygen Determination
Published in Advanced materials (Weinheim) (11-09-2009)“…A novel concept for an electro‐optical active gas probe capable of oxygen detection is presented. Based on a modified organic light‐emitting device, we…”
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