An increase or modification of structural order in the vicinity of a solid substrate is known for a wide range of materials. For molecular materials crystallizing on a solid surface it has been observed that new polymorphic forms may exist near the interface with the substrate, which have structures different to those observed in the bulk. Such phases are termed as substrate-induced phases (SIPs). The presence of an SIP in a compound or a class of materials can be of crucial significance in terms of their physical properties. However, the factors that drive such a process are not clearly understood or studied in depth. In this feature article, we review the current state of understanding concerning SIPs, giving examples of systems where SIP...
The origin of unknown polymorphic phases within thin films is still not well understood. This work r...
Substrate-induced phases (SIPs) are polymorphic phases that are found in thin films of a material an...
The origin of unknown polymorphic phases within thin films is still not well understood. This work r...
The issue of polymorphism in molecular crystals is discussed, taking into account the substrate-medi...
The presence of substrate-induced phases in thin films is an intriguing phenomenon with the physical...
Organic semiconductors (OSCs) are promising materials for costeffective production of electronic dev...
The origins of specific polymorphic phases within thin films are still not well understood. The poly...
AbstractThe origins of specific polymorphic phases within thin films are still not well understood. ...
Pentacene, one of the most studied organic semiconductors, crystallizes in different structures depe...
The architecture of the contacting interface between organic molecular semiconductors and metallic o...
Understanding crystal polymorphism is a long-standing challenge relevant to many fields, such as pha...
The architecture of the contacting interface between organic molecular semiconductors and metallic o...
Substrate-induced phases (SIPs) are polymorphic phases that are found in thin films of a material an...
The structural organization and evolution of the organic semiconducting molecule 2,7-dioctyloxy[1]be...
Polymorphism is the ability for a compound to adopt multiple crystalline packing states. In molecula...
The origin of unknown polymorphic phases within thin films is still not well understood. This work r...
Substrate-induced phases (SIPs) are polymorphic phases that are found in thin films of a material an...
The origin of unknown polymorphic phases within thin films is still not well understood. This work r...
The issue of polymorphism in molecular crystals is discussed, taking into account the substrate-medi...
The presence of substrate-induced phases in thin films is an intriguing phenomenon with the physical...
Organic semiconductors (OSCs) are promising materials for costeffective production of electronic dev...
The origins of specific polymorphic phases within thin films are still not well understood. The poly...
AbstractThe origins of specific polymorphic phases within thin films are still not well understood. ...
Pentacene, one of the most studied organic semiconductors, crystallizes in different structures depe...
The architecture of the contacting interface between organic molecular semiconductors and metallic o...
Understanding crystal polymorphism is a long-standing challenge relevant to many fields, such as pha...
The architecture of the contacting interface between organic molecular semiconductors and metallic o...
Substrate-induced phases (SIPs) are polymorphic phases that are found in thin films of a material an...
The structural organization and evolution of the organic semiconducting molecule 2,7-dioctyloxy[1]be...
Polymorphism is the ability for a compound to adopt multiple crystalline packing states. In molecula...
The origin of unknown polymorphic phases within thin films is still not well understood. This work r...
Substrate-induced phases (SIPs) are polymorphic phases that are found in thin films of a material an...
The origin of unknown polymorphic phases within thin films is still not well understood. This work r...