We report the design of a series of nonhalogenated and halogenated molecular crystals with specific structural features, which are essential for pronounced elasticity. These features involve (a) isotropic weak and dispersive interactions, and (b) corrugated molecular packing with interlocked structures. The effects of intermolecular interactions on the elastic properties of the crystals are ascertained using nano-scale mechanical characterization methods
Crystal engineering is widely applied in the design of new solids with desired physical and chemical...
Mechanically adaptable molecular crystals have potential applications in flexible smart materials an...
A general, computationally easy method for minimizing the steric energy of a molecule, polymer, surf...
The discovery of molecular single crystals that display interesting elastic behaviour has generated ...
Distinct macroscopic mechanical responses of the three crystals of naphthalene diimide derivatives, ...
CONSPECTUS: Mechanical properties of organic molecular crystals have been noted and studied over the...
The intermolecular interactions and structural features in crystals of seven halogenated N-benzylide...
The current emphasis of crystal engineering, which has evolved over the past three decades through c...
Distinct macroscopic mechanical responses of the three crystals of naphthalene diimide derivatives, ...
Organic single crystals that combine mechanical flexibility and optical properties are important for...
Organic single crystals that combine mechanical flexibility and optical properties are important for...
Controlling mechanical properties of ordered organic materials remains a formidable challenge, despi...
We herein report the tuning of mechanical plasticity of a series of 2-benzylidene-1-indanone derivat...
Nanoindentation is a technique for measuring the elastic modulus and hardness of small amounts of ma...
Designing elastic crystals is a difficult task and is of relevance in potential applications from ma...
Crystal engineering is widely applied in the design of new solids with desired physical and chemical...
Mechanically adaptable molecular crystals have potential applications in flexible smart materials an...
A general, computationally easy method for minimizing the steric energy of a molecule, polymer, surf...
The discovery of molecular single crystals that display interesting elastic behaviour has generated ...
Distinct macroscopic mechanical responses of the three crystals of naphthalene diimide derivatives, ...
CONSPECTUS: Mechanical properties of organic molecular crystals have been noted and studied over the...
The intermolecular interactions and structural features in crystals of seven halogenated N-benzylide...
The current emphasis of crystal engineering, which has evolved over the past three decades through c...
Distinct macroscopic mechanical responses of the three crystals of naphthalene diimide derivatives, ...
Organic single crystals that combine mechanical flexibility and optical properties are important for...
Organic single crystals that combine mechanical flexibility and optical properties are important for...
Controlling mechanical properties of ordered organic materials remains a formidable challenge, despi...
We herein report the tuning of mechanical plasticity of a series of 2-benzylidene-1-indanone derivat...
Nanoindentation is a technique for measuring the elastic modulus and hardness of small amounts of ma...
Designing elastic crystals is a difficult task and is of relevance in potential applications from ma...
Crystal engineering is widely applied in the design of new solids with desired physical and chemical...
Mechanically adaptable molecular crystals have potential applications in flexible smart materials an...
A general, computationally easy method for minimizing the steric energy of a molecule, polymer, surf...