Conference Agenda

Overview and details of the sessions of this conference. Please select a date or location to show only sessions at that day or location. Please select a single session for detailed view (with abstracts and downloads if available).

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Session Overview
Session
MS-100: Stimuli-responsive crystalline compounds
Time:
Saturday, 21/Aug/2021:
2:45pm - 5:10pm

Session Chair: Chiara Massera
Session Chair: Ivan Halasz
Location: Club B

50 1st floor

Invited: Tomce Runcevski (USA)Helena Shepherd (UK) 


Session Abstract

Stimuli-responsive crystalline compounds are dynamic materials which respond to external solicitations such as electric, mechanical and thermal ones. They are extensively studied for their possible practical applications as molecular machines and switches, breathing porous frameworks for guest encapsulation and catalysis, or smart magnetic materials. The rational design of such compounds, endowed with desired physical properties, is a challenging task which involves both the synthesis of suitable building blocks assembled through crystal engineering, and mastering of molecular and supramolecular interactions in the solid state. This MS is open to all original research, both fundamental and applied, highlighting recent developments in this highly multidisciplinary field.


Introduction
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Presentations
2:45pm - 2:50pm
ID: 1827 / MS-100: 1
Introduction
Oral/poster

Introduction to session

Chiara Massera, Ivan Halasz



2:50pm - 3:20pm
ID: 718 / MS-100: 2
Chemical crystallography, crystal structures
Invited lecture to session
MS: Stimuli-responsive crystalline compounds
Keywords: thermochromism; powder diffraction; Rietveld

Structural Insights into the Temperature-induced Color Changes of [(CH3)2NH2]2NiCl4

Tomce Runcevski

Southern Methodist University, Dallas, United States of America

External Resource:
Video Link


3:20pm - 3:50pm
ID: 1052 / MS-100: 3
Chemical crystallography, crystal structures
Invited lecture to session
MS: Stimuli-responsive crystalline compounds
Keywords: Switchable molecular materials

Smart Molecular Materials: Synthesis, Structure and Properties

Helena Shepherd

University of Kent, Canterbury, United Kingdom

External Resource:
Video Link


3:50pm - 4:10pm
ID: 756 / MS-100: 4
All topics
Oral/poster
MS: Stimuli-responsive crystalline compounds
Keywords: Crystal Engineering, Molecular Rotors and Switches, Molecular Dynamics, MOFs

Ultra-Fast Rotors and Light Emitting Ligands in Metal-Organic Frameworks

Angiolina Comotti, Silvia Bracco, Jacopo Perego, Charl X. Bezuidenhout, Sergio Piva, Piero Sozzani

University of Milano Bicocca, Milano, Italy

External Resource:
Video Link


4:10pm - 4:30pm
ID: 160 / MS-100: 5
Chemical crystallography, crystal structures
Oral/poster
MS: Solid state reactions and dynamics, Stimuli-responsive crystalline compounds, Polymorphism and structural transformation of organic crystals from synthesis to characterization
Keywords: bending crystals, crystal structure, molecular crystals, phase transition, polymorphism

Shape-memory effects in molecular crystals

Ejaz Ahmed1, Durga Prasad Karothu1, Mark Warren2, Pance Naumov1

1New York University, Abu Dhabi, United Arab Emirates; 2Diamond Light Source, Didcot, Oxfordshire, OX11 0DE, United Kingdom

External Resource:
Video Link


4:30pm - 4:50pm
ID: 1156 / MS-100: 6
Chemical crystallography, crystal structures
Oral/poster
MS: Stimuli-responsive crystalline compounds
Keywords: Azobenzene; Light-responsive; Cocrystal; Halogen bonding

Low-power photo-carving of dye-volatile cocrystals: The sublime cutting edge of light-responsive materials

Tristan Hermann Borchers, Filip Topic, Tomislav Friščić, Christopher John Barrett

McGill University, Montréal, Canada

External Resource:
Video Link


4:50pm - 5:10pm
ID: 1252 / MS-100: 7
Chemical crystallography, crystal structures
Oral/poster
MS: Solid state reactions and dynamics, Stimuli-responsive crystalline compounds
Keywords: mechanical crystals, locomotion, photo-triggered phase transition, salicylideneamine

Crystal locomotion driven by photo-triggered phase transition

Yuki Hagiwara1, Akifumi Takanabe1, Toru Asahi1,2, Hideko Koshima2

1Graduate school of Advanced Science and Engineering, Waseda University, Tokyo, Japan; 2Research Organization for Nano & Life Innovation, Waseda University, Tokyo, Japan

External Resource:
Video Link


 
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