258 results on '"Neugebauer, Helmut"'
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52. Explaining the Cyclic Voltammetry of a Poly(1,4‐phenylene‐ethynylene)‐ alt ‐poly(1,4‐phenylene‐vinylene) Copolymer upon Oxidation by using Spectroscopic Techniques
53. Bio-Electrocatalytic Application of Microorganisms for Carbon Dioxide Reduction to Methane
54. Influence of molecular designs on polaronic and vibrational transitions in a conjugated push-pull copolymer
55. Electrochemical Reduction of Carbon Dioxide to Methanol by Direct Injection of Electrons into Immobilized Enzymes on a Modified Electrode
56. Spectroscopic characterization of charge carriers of the organic semiconductor quinacridone compared with pentacene during redox reactions
57. In-situ FTIR spectro-electrochemistry of polyaniline
58. In-situ FTIR spectroscopy of iron electrodes
59. Spectroelectrochemical and Photovoltaic Characterization of a Solution-Processable n-and-p Type Dopable Pyrrole-Bearing Conjugated Polymer
60. The Role of Heteroatoms Leading to Hydrogen Bonds in View of Extended Chemical Stability of Organic Semiconductors
61. Spectroelectrochemical Studies on Quinacridone by Using Poly(vinyl alcohol) Coating as Protection Layer
62. Bio-Electrocatalytic Application of Microorganisms for Carbon Dioxide Reduction to Methane.
63. Explaining the Cyclic Voltammetry of a Poly(1,4-phenylene-ethynylene)- alt-poly(1,4-phenylene-vinylene) Copolymer upon Oxidation by using Spectroscopic Techniques.
64. Using the Alkynyl-Substituted Rhenium(I) Complex (4,4′-Bisphenyl-Ethynyl-2,2′-Bipyridyl)Re(CO)3Cl as Catalyst for CO2 Reduction—Synthesis, Characterization, and Application
65. Back Cover: A Comparison of Pyridazine and Pyridine as Electrocatalysts for the Reduction of Carbon Dioxide to Methanol (ChemElectroChem 9/2014)
66. A Comparison of Pyridazine and Pyridine as Electrocatalysts for the Reduction of Carbon Dioxide to Methanol
67. Electrocatalytic Reduction of Carbon Dioxide to Carbon Monoxide by a Polymerized Film of an Alkynyl‐Substituted Rhenium(I) Complex
68. Doping-Induced Immobile Charge Carriers in Polyazomethine: A Spectroscopic Study
69. Photosensitizing porphyrin–triazine compound for bulk heterojunction solar cells
70. Electrochemical Capture and Release of CO2in Aqueous Electrolytes Using an Organic Semiconductor Electrode
71. Comparative study of bulk and interface transport in disordered fullerene films
72. Influence of processing additives to nano-morphology and efficiency of bulk-heterojunction solar cells: A comparative review
73. Alkoxy-substituted poly(arylene-ethynylene)-alt-poly(arylene-vinylene)s: synthesis, electroluminescence and photovoltaic applications
74. Charge Carrier Lifetime and Recombination in Bulk Heterojunction Solar Cells
75. Spectroelectrochemical and Photovoltaic Characterization of a Solution‐Processable n‐and‐p Type Dopable Pyrrole‐Bearing Conjugated Polymer
76. Processable Multipurpose Conjugated Polymer for Electrochromic and Photovoltaic Applications
77. In situ FTIR spectroelectrochemical characterization of n- and p-dopable phenyl-substituted polythiophenes
78. Current filamentation and negative differential resistance in C60 diodes
79. Conjugated Polymer‐Based Organic Solar Cells
80. Solid State Dye Sensitized Solar Cells Using Poly (3-hexylthiophene) as Hole Transport Material
81. Photoinduced Electron Transfer in a New Bis(C60)—Phthalocyanine Triad.
82. Photoelectrochemical cells based on emeraldine base form of polyaniline
83. Low Band Gap Donor−Acceptor Conjugated Polymers toward Organic Solar Cells Applications
84. Photoinduced Electron Transfer in a New Bis(C60)−Phthalocyanine Triad
85. New Donor–Acceptor Materials Based on Random Polynorbornenes Bearing Pendant Phthalocyanine and Fullerene Units
86. Low-bandgap poly(thienylene vinylene) for organic solar cells: photophysics and photovoltaic performance
87. Flexible encapsulation for organic solar cells
88. Nanoporous CuInS 2 electrodes for hybrid solar cells
89. Long-Lived Photoinduced Charges in Donor−Acceptor Anthraquinone-Substituted Thiophene Copolymers
90. Spectroelectrochemistry of Poly(ethylenedithiathiophene)−the Sulfur Analogue of Poly(ethylenedioxythiophene)
91. Interfacial Effects in Organic Thin-Film Transistors
92. Extended Photocurrent Spectrum of a Low Band Gap Polymer in a Bulk Heterojunction Solar Cell
93. Stabilization of the nanomorphology of polymer–fullerene “bulk heterojunction” blends using a novel polymerizable fullerene derivative
94. Photoinduced effects in conjugated polymer/fullerene- based organic field-effect transistors (photOFETs)
95. Novel Regiospecific MDMO−PPV Copolymer with Improved Charge Transport for Bulk Heterojunction Solar Cells
96. Tuning of the photoinduced charge transfer process in donor-acceptor double-cable copolymers
97. Long-lived photoinduced charge separation for solar cell applications in phthalocyanine–fulleropyrrolidine dyad thin filmsElectronic supplementary information (ESI) available: plots of the refractive index, extinction coefficient and dielectric function of Pc-C60. See http://www.rsc.org/suppdata/jm/b2/b212621d/
98. Photophysics and Photovoltaic Device Application of Fullerene Containing Phthalocyanine Dyads
99. The effect of intermediate layers on the internal electric field in organic semiconductor devices.
100. Nanoporous CuInS2 electrodes for hybrid solar cells.
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