TY - JOUR
T1 - The role of curvature in silica mesoporous crystals
AU - Miyasaka, Keiichi
AU - Bennett, Alfonso Garcia
AU - Han, Lu
AU - Han, Yu
AU - Xiao, Changhong
AU - Fujita, Nobuhisa
AU - Castle, Toen
AU - Sakamoto, Yasuhiro
AU - Che, Shunai
AU - Terasaki, Osamu
PY - 2012/10/6
Y1 - 2012/10/6
N2 - Silica mesoporous crystals (SMCs) offer a unique opportunity to study micellar mesophases. Replication of non-equilibrium mesophases into porous silica structures allows the characterization of surfactant phases under a variety of chemical and physical perturbations, through methods not typically accessible to liquid crystal chemists. A poignant example is the use of electron microscopy and crystallography, as discussed herein, for the purpose of determining the fundamental role of amphiphile curvature, namely mean curvature and Gaussian curvature, which have been extensively studied in various fields such as polymer, liquid crystal, biological membrane, etc. The present work aims to highlight some current studies devoted to the interface curvature on SMCs, in which electron microscopy and electron crystallography (EC) are used to understand the geometry of silica wall surface in bicontinuous and cage-type mesostructures through the investigation of electrostatic potential maps. Additionally, we show that by altering the synthesis conditions during the preparation of SMCs, it is possible to isolate particles during micellar mesophase transformations in the cubic bicontinuous system, allowing us to view and study epitaxial relations under the specific synthesis conditions. By studying the relationship between mesoporous structure, interface curvature and micellar mesophases using electron microscopy and EC, we hope to bring new insights into the formation mechanism of these unique materials but also contribute a new way of understanding periodic liquid crystal systems.
AB - Silica mesoporous crystals (SMCs) offer a unique opportunity to study micellar mesophases. Replication of non-equilibrium mesophases into porous silica structures allows the characterization of surfactant phases under a variety of chemical and physical perturbations, through methods not typically accessible to liquid crystal chemists. A poignant example is the use of electron microscopy and crystallography, as discussed herein, for the purpose of determining the fundamental role of amphiphile curvature, namely mean curvature and Gaussian curvature, which have been extensively studied in various fields such as polymer, liquid crystal, biological membrane, etc. The present work aims to highlight some current studies devoted to the interface curvature on SMCs, in which electron microscopy and electron crystallography (EC) are used to understand the geometry of silica wall surface in bicontinuous and cage-type mesostructures through the investigation of electrostatic potential maps. Additionally, we show that by altering the synthesis conditions during the preparation of SMCs, it is possible to isolate particles during micellar mesophase transformations in the cubic bicontinuous system, allowing us to view and study epitaxial relations under the specific synthesis conditions. By studying the relationship between mesoporous structure, interface curvature and micellar mesophases using electron microscopy and EC, we hope to bring new insights into the formation mechanism of these unique materials but also contribute a new way of understanding periodic liquid crystal systems.
KW - Electron crystallography
KW - Gaussian curvature
KW - Mean curvature
KW - Silica mesoporous crystals
KW - Surfactant packing parameter
UR - http://www.scopus.com/inward/record.url?scp=84865389304&partnerID=8YFLogxK
U2 - 10.1098/rsfs.2011.0098
DO - 10.1098/rsfs.2011.0098
M3 - Article
C2 - 24098848
AN - SCOPUS:84865389304
VL - 2
SP - 634
EP - 644
JO - Interface Focus
JF - Interface Focus
SN - 2042-8898
IS - 5
ER -