Search Results - "Bengasi, Giuseppe"
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Conductive Fused Porphyrin Tapes on Sensitive Substrates by a Chemical Vapor Deposition Approach
Published in Angewandte Chemie International Edition (11-02-2019)“…Oxidative polymerization of nickel(II) 5,15‐diphenyl porphyrin and nickel(II) 5,15‐bis(di‐3,5‐tert‐butylphenyl) porphyrin by oxidative chemical vapor…”
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Silicon / Perovskite Tandem Solar Cells with Reverse Bias Stability down to −40 V. Unveiling the Role of Electrical and Optical Design
Published in Advanced science (01-08-2024)“…The reverse bias stability is a key concern for the commercialization and reliability of halide perovskite photovoltaics. Here, the robustness of…”
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3
Heterometallic Porphyrin Conjugated Polymer Thin Films—A Gas‐Phase Approach for the Engineering of New Fused Porphyrin Systems
Published in Advanced materials interfaces (01-02-2023)“…For the first time, the simultaneous synthesis and deposition of heterometallic porphyrin conjugated polymer thin films from a simple and scalable gas‐phase…”
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Reactivity of Nickel(II) Porphyrins in oCVD Processes—Polymerisation, Intramolecular Cyclisation and Chlorination
Published in Chemistry : a European journal (21-06-2019)“…Oxidative chemical vapour deposition of (5,15‐diphenylporphyrinato)nickel(II) (NiDPP) with iron(III) chloride as oxidant yielded a conjugated…”
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5
An innovative strategic route to the green synthesis of CsPbBr3 films on rigid and flexible substrates
Published in Applied surface science (15-06-2023)“…[Display omitted] •A versatile spray-coating deposition produced CsPbBr3 films on several substrates.•The synthetic procedure is a green process using…”
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Directly‐Fused Ni(II)Porphyrin Conjugated Polymers with Blocked meso‐Positions: Impact on Electrocatalytic Properties
Published in Chemistry : a European journal (02-07-2024)“…The oxidative coupling reaction of two Ni(II) porphyrins meso‐substituted with three and four phenyl groups, Ni(II) 5,10,15‐(triphenyl)porphyrin (NiPh3P) and…”
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Conductive Directly Fused Poly(Porphyrin) Coatings by Oxidative Chemical Vapour Deposition – From Single‐ to Triple‐Fused
Published in European journal of organic chemistry (09-04-2019)“…While the solution‐phase synthesis of directly fused porphyrin tapes has been successfully developed in recent years, the deposition of these promising…”
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8
Zirconium doped indium oxide thin films as transparent electrodes for photovoltaic applications
Published in Solar energy materials and solar cells (01-07-2024)“…In this work we report on ultra-thin Zirconium doped In2O3 transparent conductive films grown at room temperature via RF-Magnetron co-sputtering. Samples from…”
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9
Fused Metalloporphyrin Thin Film with Tunable Porosity via Chemical Vapor Deposition
Published in ACS applied materials & interfaces (19-08-2020)“…Porous and highly conjugated multiply fused porphyrin thin films are prepared from a fast and single-step chemical vapor deposition approach. While the…”
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10
Molecular Engineering of Porphyrin‐Tapes/Phthalocyanine Heterojunctions for a Highly Sensitive Ammonia Sensor
Published in Advanced electronic materials (01-12-2020)“…Modulating the interfacial charge alignments by molecular engineering in an organic heterojunction device is a smart strategy to improve its conductivity,…”
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Front Cover: Constitution and Conductivity of Metalloporphyrin Tapes (Eur. J. Inorg. Chem. 20/2020)
Published in European journal of inorganic chemistry (29-05-2020)“…The Front Cover shows the formation of multiply fused porphyrin tapes on a surface by the oxidative gas phase reaction of metalloporphyrins. The metal center…”
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12
Insights in the initiation and termination of poly(alkyl acrylates) synthesized by atmospheric pressure plasma‐initiated chemical vapor deposition (AP‐PiCVD)
Published in Plasma processes and polymers (01-05-2018)“…A comprehensive mass‐spectrometry study of a set of poly(alkyl acrylate) layers synthesized by atmospheric pressure plasma‐initiated chemical vapor deposition…”
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13
Constitution and Conductivity of Metalloporphyrin Tapes
Published in European journal of inorganic chemistry (29-05-2020)“…Metalloporphyrin tapes form in a solvent‐free oxidative chemical vapor deposition process on glass substrates. The metal center (M = NiII, CuII, ZnII, CoII,…”
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14
Highly Efficient 2D Materials Engineered Perovskite/Si Tandem Bifacial Cells Beyond 29
Published in IEEE journal of photovoltaics (01-11-2022)“…Perovskite/Silicon tandem technology represents a promising route to achieve 30% power conversion efficiency (PCE), by ensuring low levelized costs energy. In…”
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15
Molecular flattening effect to enhance the conductivity of fused porphyrin tape thin films
Published in RSC advances (17-02-2020)“…The straightforward synthesis of directly fused porphyrins (porphyrin tapes) from 5,15-diphenyl porphyrinato nickel( ii ) complexes with different substituents…”
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Fused Porphyrin Thin Films as Heterogeneous Visible-Light Active Photocatalysts with Well-Defined Active Metal Sites for Hydrogen Generation
Published in ACS applied energy materials (26-10-2020)“…Metalloporphyrin-based photocatalysts have attracted great interest due to their high extinction coefficient in the visible range coupled to a catalytically…”
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17
Highly Efficient 2D Materials Engineered Perovskite/Si Tandem Bifacial Cells Beyond 29
Published in IEEE journal of photovoltaics (2022)“…Perovskite/Silicon tandem technology represents a promising route to achieve 30% power conversion efficiency (PCE), by ensuring low levelized costs energy. In…”
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18
Conductive Fused Porphyrin Tapes on Sensitive Substrates by a Chemical Vapor Deposition Approach
Published in Angewandte Chemie (11-02-2019)“…Oxidative polymerization of nickel(II) 5,15‐diphenyl porphyrin and nickel(II) 5,15‐bis(di‐3,5‐tert‐butylphenyl) porphyrin by oxidative chemical vapor…”
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Journal Article -
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2T Mechanically Stacked Perovskite/Si tandem Cells Beyond 28%: the Role of 2D Materials in Perovskite Top Cells Coupled with a Commercially Available Bifacial c-Si Heterojunction Cell
Published in 2022 IEEE 49th Photovoltaics Specialists Conference (PVSC) (05-06-2022)“…Perovskite/Silicon tandem technology represents a promising route to achieve 30% power conversion efficiency, by ensuring low levelized costs energy while…”
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