Paulina Ratajczyk, Szymon Sobczak, Michał Andrzejewski, Francesco Marin, Marianna Marchini, Lucia Maini and Andrzej Katrusiak
{"title":"压力和温度驱动的正己基取代苝二亚胺(PDI-C6)晶体的转变和构象转换","authors":"Paulina Ratajczyk, Szymon Sobczak, Michał Andrzejewski, Francesco Marin, Marianna Marchini, Lucia Maini and Andrzej Katrusiak","doi":"10.1039/D5TC00809C","DOIUrl":null,"url":null,"abstract":"<p >Perylene diimides (PDIs) are organic semiconductors with properties suitable for applications in electronic devices. This study presents a comprehensive investigation of <strong>PDI-C<small><sub>6</sub></small></strong>, a perylene diimide modified with an <em>n</em>-hexyl alkyl chain at the imide position, under non-ambient conditions, with a focus on the rich diagram of structurally varying phases and their anisotropic strain. Five distinct polymorphs of <strong>PDI-C<small><sub>6</sub></small></strong> have been found. The ambient phase I transforms to phase II at 465 K, which at 521 K transforms to phase III. The perylene cores arranged in parallel stacks in phase I rotate in the scissor-opening motion by 33° in phase II. Under high pressure, phase I transforms to phase IV at 1.22 GPa and to phase V at 1.50 GPa. The transitions between phases I, IV and V stepwise modify the conformation of the <em>n</em>-hexyl substituents. Surprisingly, all five polymorphs are of space-group type <em>P</em><img>, which is unprecedented as the symmetry of phases usually involves the space-group changes. These findings significantly enhance our understanding of the structural transformations of next-generation electronic materials and highlight the role of crystal engineering in constructing novel organic semiconductors with high sensitivity to environmental stimuli.</p>","PeriodicalId":84,"journal":{"name":"Journal of Materials Chemistry C","volume":" 26","pages":" 13509-13518"},"PeriodicalIF":5.1000,"publicationDate":"2025-06-04","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://pubs.rsc.org/en/content/articlepdf/2025/tc/d5tc00809c?page=search","citationCount":"0","resultStr":"{\"title\":\"Pressure- and temperature-driven transitions and conformational conversions of n-hexyl substituted perylene diimide (PDI-C6) crystals†\",\"authors\":\"Paulina Ratajczyk, Szymon Sobczak, Michał Andrzejewski, Francesco Marin, Marianna Marchini, Lucia Maini and Andrzej Katrusiak\",\"doi\":\"10.1039/D5TC00809C\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p >Perylene diimides (PDIs) are organic semiconductors with properties suitable for applications in electronic devices. This study presents a comprehensive investigation of <strong>PDI-C<small><sub>6</sub></small></strong>, a perylene diimide modified with an <em>n</em>-hexyl alkyl chain at the imide position, under non-ambient conditions, with a focus on the rich diagram of structurally varying phases and their anisotropic strain. Five distinct polymorphs of <strong>PDI-C<small><sub>6</sub></small></strong> have been found. The ambient phase I transforms to phase II at 465 K, which at 521 K transforms to phase III. The perylene cores arranged in parallel stacks in phase I rotate in the scissor-opening motion by 33° in phase II. Under high pressure, phase I transforms to phase IV at 1.22 GPa and to phase V at 1.50 GPa. The transitions between phases I, IV and V stepwise modify the conformation of the <em>n</em>-hexyl substituents. Surprisingly, all five polymorphs are of space-group type <em>P</em><img>, which is unprecedented as the symmetry of phases usually involves the space-group changes. 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Pressure- and temperature-driven transitions and conformational conversions of n-hexyl substituted perylene diimide (PDI-C6) crystals†
Perylene diimides (PDIs) are organic semiconductors with properties suitable for applications in electronic devices. This study presents a comprehensive investigation of PDI-C6, a perylene diimide modified with an n-hexyl alkyl chain at the imide position, under non-ambient conditions, with a focus on the rich diagram of structurally varying phases and their anisotropic strain. Five distinct polymorphs of PDI-C6 have been found. The ambient phase I transforms to phase II at 465 K, which at 521 K transforms to phase III. The perylene cores arranged in parallel stacks in phase I rotate in the scissor-opening motion by 33° in phase II. Under high pressure, phase I transforms to phase IV at 1.22 GPa and to phase V at 1.50 GPa. The transitions between phases I, IV and V stepwise modify the conformation of the n-hexyl substituents. Surprisingly, all five polymorphs are of space-group type P, which is unprecedented as the symmetry of phases usually involves the space-group changes. These findings significantly enhance our understanding of the structural transformations of next-generation electronic materials and highlight the role of crystal engineering in constructing novel organic semiconductors with high sensitivity to environmental stimuli.
期刊介绍:
The Journal of Materials Chemistry is divided into three distinct sections, A, B, and C, each catering to specific applications of the materials under study:
Journal of Materials Chemistry A focuses primarily on materials intended for applications in energy and sustainability.
Journal of Materials Chemistry B specializes in materials designed for applications in biology and medicine.
Journal of Materials Chemistry C is dedicated to materials suitable for applications in optical, magnetic, and electronic devices.
Example topic areas within the scope of Journal of Materials Chemistry C are listed below. This list is neither exhaustive nor exclusive.
Bioelectronics
Conductors
Detectors
Dielectrics
Displays
Ferroelectrics
Lasers
LEDs
Lighting
Liquid crystals
Memory
Metamaterials
Multiferroics
Photonics
Photovoltaics
Semiconductors
Sensors
Single molecule conductors
Spintronics
Superconductors
Thermoelectrics
Topological insulators
Transistors