TY - JOUR
T1 - Triisopropylsilylethynyl-functionalized graphene-like fragment semiconductors
T2 - Synthesis, crystal packing, and density functional theory calculations
AU - Zhang, Lei
AU - Fonari, Alexandr
AU - Zhang, Yue
AU - Zhao, Guangyao
AU - Coropceanu, Veaceslav
AU - Hu, Wenping
AU - Parkin, Sean
AU - Brédas, Jean Luc
AU - Briseno, Alejandro L.
PY - 2013/12/23
Y1 - 2013/12/23
N2 - Tri-isopropylsilylethynyl (TIPS)-functionalized polycyclic aromatic hydrocarbon (PAH) molecules incorporate structural components of graphene nanoribbons and represent a family of model molecules that form organic crystal semiconductors for electronic devices. Here, we report a series of TIPS-functionalized PAHs and discuss their electronic properties and crystal packing features. We observe that these soluble compounds easily form one-dimensional (1 D) packing arrangements and allow a direct evolution of the π stacking by varying the geometric shape. We find that the aspect ratio between length and width plays an important role on crystal packing. Our result indicates that when the PAH molecules have zigzag edges, these can provide enough volume for the molecules to rotate and reorient, alleviating the unfavorable electrostatic interactions found in perfectly cofacial π-π stacking. Density functional theory calculations were carried out to provide insights into how the molecular geometric shape influences the electronic structure and transport properties. The calculations indicate that, among the compounds studied here, "brick-layer" stacks provide the highest hole mobility. Top TIPS: A series of triisopropylsilylethynyl (TIPS) functionalized polycyclic aromatic hydrocarbons (PAHs) were synthesized (see figure). There is a direct evolution of the π-stacking arrangements from "cofacial" stacks to "slipped" and "brick-layer" stacks by varying the geometric shape. These compounds easily form low-dimensional charge-transport systems.
AB - Tri-isopropylsilylethynyl (TIPS)-functionalized polycyclic aromatic hydrocarbon (PAH) molecules incorporate structural components of graphene nanoribbons and represent a family of model molecules that form organic crystal semiconductors for electronic devices. Here, we report a series of TIPS-functionalized PAHs and discuss their electronic properties and crystal packing features. We observe that these soluble compounds easily form one-dimensional (1 D) packing arrangements and allow a direct evolution of the π stacking by varying the geometric shape. We find that the aspect ratio between length and width plays an important role on crystal packing. Our result indicates that when the PAH molecules have zigzag edges, these can provide enough volume for the molecules to rotate and reorient, alleviating the unfavorable electrostatic interactions found in perfectly cofacial π-π stacking. Density functional theory calculations were carried out to provide insights into how the molecular geometric shape influences the electronic structure and transport properties. The calculations indicate that, among the compounds studied here, "brick-layer" stacks provide the highest hole mobility. Top TIPS: A series of triisopropylsilylethynyl (TIPS) functionalized polycyclic aromatic hydrocarbons (PAHs) were synthesized (see figure). There is a direct evolution of the π-stacking arrangements from "cofacial" stacks to "slipped" and "brick-layer" stacks by varying the geometric shape. These compounds easily form low-dimensional charge-transport systems.
KW - graphene
KW - organic electronics
KW - polycyclic aromatic hydrocarbon
KW - single crystals
UR - http://www.scopus.com/inward/record.url?scp=84891005317&partnerID=8YFLogxK
U2 - 10.1002/chem.201303308
DO - 10.1002/chem.201303308
M3 - Article
AN - SCOPUS:84891005317
SN - 0947-6539
VL - 19
SP - 17907
EP - 17916
JO - Chemistry - A European Journal
JF - Chemistry - A European Journal
IS - 52
ER -