4–7 Jul 2023
Padua, Italy
Europe/Rome timezone

Program


Participants list in alphabetical order 

 

Aistė Miliūtė

Bundesanstalt für Materialforschung und -prüfung, Berlin, Germany

High-quality zirconium vanadate samples for negative thermal expansion analysis

 

Alessandro Venier

University of Padova, Italy

Tuning the phonon contribution to control thermal expansion

 

Andrea Sanson

University of Padova, Italy

 

Andrew Goodwin                         

Department of Chemistry, University of Oxford, UK

 

Angel J. Ross

IGG - National Research Council, Italy

EosFit: a tool for fitting thermal expansion data and phase transitions

 

Angus P. Wilkinson

Georgia Institute of Technology, USA

Inserting Helium into ReO3-type fluorides which display negative thermal expansion

 

Ashish Chainani 

National Synchrotron Radiation Research Center, Hsinchu, Taiwan

Dual Kondo effect coupled charge ordering and zero thermal expansion in a correlated intermetallic YbPd

 

Ayan Datta

Indian Association for the Cultivation of Science, Kolkata, India

Negative thermal expansion in two-dimensional monoatomically thin layers: T-graphene, Tri-graphene and graphyne

 

Carl P. Romao

ETH Zurich, Switzerland

Data mining and machine learning of NTE materials from the ICSD

 

Chang Zhou

University of Science and Technology Beijing, China

Design of zero thermal expansion and high thermal conductivity in machinable xLFCS/Cu metal matrix composites

 

Chunyan Wang 

Zhoukou Normal University, China

Spatial modulation and thermal-induced spin phase transition on the negative thermal expansion of ScF3 with metal dopants

 

Cong Wang

Beihang University, Beijing, China

Isotropic negative/zero thermal expansion in a broad temperature range in antiperovskite Mn3XN(C)

 

Dmitry Bocharov

Institute of Solid State Physics, University of Latvia, Riga, Latvia

Exploring the mechanisms of negative thermal expansion in scandium trifluoride: a combined theoretical and experimental analysis

 

Eliza K. Dempsey 

School of Chemistry, University of Edinburgh, UK

Metal oxyfluorides: a new area for novel, tunable NTE materials

 

Elodie Harbourne

Department of Chemistry, University of Oxford, UK

Local structure of NTE Prussian blue analogues

 

Feiran Shen

Institute of High Energy Physics, Chinese Academy of Sciences, Beijing, China 

Magnetic ordering dominated giant negative thermal expansion in Fe-doped MnNiGe compounds      

 

Feixiang Long

University of Science and Technology Beijing, China

Strong negative thermal expansion induced by magnetic field in La(Fe,Al)13

 

Feiyu Qin

Xi’an Jiaotong University, China

Enhanced thermoelectric performance and low thermal conductivity in Cu2GeTe3 with identified localized symmetry breakdown    

 

Filomena Forte

Consiglio Nazionale delle Ricerche, CNR-SPIN, Italy

Spin-orbital mechanisms for negative thermal expansion in Ca2RuO4

 

Frederico Alabarse

Elettra Synchrotron Trieste, Italy

Tuning negative thermal expansion properties by high pressure insertion of guest molecules               

 

Götz Schuck

Helmholtz-Zentrum Berlin für Materialien und Energie, 14109 Berlin, Germany

Apparent shrinkage of [PbX6] octahedra with increasing temperature and anharmonicity of the lead−halide bond in chlorine-substituted MAPbI3      

 

Hao Lu

University of Science and Technology Beijing, China 

Lightweight and near-zero thermal expansion ZrW2O8-SiCnw/Al hybrid composites           

 

Hena Das

Tokyo Institute of Technology & Kanagawa Institute of Industrial Science and Technology (KISTEC), Japan

Understanding the mechanisms responsible for the anisotropic thermal expansion in Ca2RuO4 ruthenates through quantum mechanical calculations        

 

Hisashi Kino

Tohoku University, Japan

Developments of negative-thermal-expansion gate electrode formed from manganese nitride compound for transistor performance enhancement

 

Hu Zhang

University of Science and Technology Beijing, China

Tunable negative thermal expansion in La(Fe, Si)13/resin composites with high mechanical property and long-term cycle stability  

 

Igor Zaliznyak

Condensed Matter Physics and Materials Science Division, Brookhaven National Laboratory, USA

Negative thermal expansion, entropic elasticity, and colossal softening in ScF3-type empty perovskites  

 

Jason Hancock

Department of Physics, University of Connecticut, USA

Strain soliton generation in negative thermal expansion materials      

 

Jiazheng Hao

Spallation Neutron Source Science Center (SNSSC), China 

Realization of ultra-low thermal expansion over a broad temperature interval in (R,R’)(Fe,Co)2 compounds       

 

Joao Horta Belo

Institute of Physics of Advanced Materials, Nanotechnology and Nanophotonics (IFIMUP), University of Porto, Portugal

Optimizing thermal expansion in 3d-printed mortar

 

John S. O. Evans

University of Durham, UK

 

Juan Guo                           

Zhengzhou University, China

 

Julien Haines     

University of Montpellier & CNRS, France

 

Jun Chen

University of Science and Technology Beijing, China 

Design of ferroelectric and magnetic functional materials inspired by negative thermal expansion                          

 

Koshi Takenaka 

Department of Applied Physics, Nagoya University, Japan 

Negative thermal expansion and related volumetric functionality of pyro-vanadate-phosphates    

 

Kun Lin 

University of Science and Technology Beijing, China 

Chemical heterogeneity modulated zero thermal expansion alloy over super-wide temperature range          

 

Lei Hu

Xi’an Jiaotong University, China 

Negative thermal expansion in metallic framework oxide Cd2Re2O7 with ultralow thermal conductivity    

 

Liam McKinlay

University of New South Wales, Sydney, Australia

The phase transitions of a zero thermal expansion material under pressure

 

Masahito Mochizuki

Waseda University, Tokyo, Japan

Theory of magnetism-induced negative thermal expansion in inverse perovskite antiferromagnets            

 

Masaki Azuma

Tokyo Institute of Technology, Japan

 

Meng Xu

University of Science and Technology Beijing, China 

High-temperature zero thermal expansion in HfFe2+δ from added ferromagnetic paths       

 

Mihee Lee

TANIOBIS GmbH, Germany

 

Minjun Ai 

University of Science and Technology Beijing, China 

Unconventional magnetovolume effect induced negative thermal expansion                    

 

Naike Shi

University of Science and Technology Beijing, China 

Abundant negative thermal expansion in A2M2O7 family

 

Nikita Zhadnov

Lebedev Physical Institute, Russian Academy of Sciences, Moscow, Russia

Ultrastable optical cavities with natural and artificial zero thermal expansion      

 

Peixi Zhang

University of Science and Technology Beijing, China

Strain-induced ferroelectric order in nanosized SrTiO3

 

Qiang Li

University of Science and Technology Beijing, China

Chemical order-disorder nanodomains in Fe3Pt bulk alloy 

 

Qiang Sun

Zhengzhou University, China       

Influence of A/B element substitution on negative thermal expansion in AB(CN)6 (A=Al, Ga, In; B=Co, Fe, Mn, Cr, V, Ti)       

 

Qiao Li

Hong Kong University of Science and Technology, Hong Kong, China

Large tunable thermal expansion in ferroelastic alloys by stress          

 

Qilong Gao                       

Zhengzhou University, China       

 

Quentin Guéroult

Department of Chemistry, University of Oxford, UK

NTE in diamond networks: from Si to Cd(CN)2              

 

Sergii Khmelevskyi

Research Center for Computational Materials Science and Engineering, Vienna University of Technology, Austria

Accurate calculations of the spontaneous volume magnetostriction in Fe-Ni Invar alloys: impact of the spin fluctuations

 

Sihao Deng

Institute of High Energy Physics, Chinese Academy of Sciences & China Spallation Neutron Source Science Center, China

Spin dependent electronic transport properties of Mn-based antiperovskites 

 

Sofia Gonçalves

Technical University of Darmstadt, Germany & CICECO, University of Aveiro, Portugal

Tailoring negative thermal expansion via tunable induced strain in La–Fe–Si-based multifunctional material             

 

Soumya Mondal

Indian Association for the Cultivation of Science, West Bengal, India

Negative thermal expansion induced in several graphene and graphyne analogues          

 

Takashi Mizokawa

Department of Applied Physics, Waseda University, Japan 

Charge/Orbital disordered states with smaller volume and higher entropy in transition-metal oxides  

 

Takumi Nishikubo

Kanagawa Institute of Industrial Science and Technology & Tokyo Institute of Technology, Japan 

Domain structure observation and design of phase transition-type negative thermal expansion materials       

 

Takuro Katsufuji

Department of Physics, Waseda University, Japan

Novel aspects of orbital ordering in Ba-V-O with V triangular lattice           

 

Toshihiko Yokoyama

Institute for Molecular Science, Japan

Thermal vibration and expansion from the view point of local structure

 

Toshihiro Isobe

Tokyo Institute of Technology, Japan

Synthesis and properties of α-Zr2SP2O12 and related substances  

 

Xianran Xing

University of Science and Technology Beijing, China

Magnetic structure in kagomé magnets and Invar phenomenon 

 

Xingxing Jiang

Technical Institute of Physics and Chemistry, Chinese Academy of Science, China

Integration of negative, zero and positive linear thermal expansion enables light transmission in borate optical crystals to be temperature-independent     

 

Yanming Sun

University of Science and Technology Beijing, China

Structure, magnetism and low thermal expansion in Tb1-xErxCo2Mny intermetallic compounds

 

Yili Cao

University of Science and Technology Beijing, China 

Quantified zero thermal expansion in the magnetic intermetallic R2Fe17-based (R =rare earth) materials   

 

Ying Sun

School of Physics, Beihang University, Beijing, China

Strategies for obtaining negative/near zero thermal expansion materials with wide temperature range in antiperovskite compounds        

 

Yongqiang Qiao                             

Zhengzhou University, China       

 

Yu Jia

Zhengzhou University, China 

Machine learning guided discovery of new negative thermal expansion materials with open-framework structures           

 

Yue Chen

The University of Hong Kong, China 

Anharmonic lattice dynamics of materials containing diffusive constituents: a computational study based on the machine learning potential         

 

Yuki Sakai

Kanagawa Institute of Industrial Science and Technology (KISTEC) & Tokyo Institute of Technology, Japan

Systematic charge distribution change in perovskite-type Bi0.5Pb0.5MO3 (M = 3d transition metal)             

 

Yuzhu Song

University of Science and Technology Beijing, China 

Mechanism and control of negative thermal expansion in metal-based magnetic compounds    

 

Zhanning Liu

Shandong University of Science and Technology, Qingdao, China

Anomalous thermal expansion in metal-squarate frameworks     

 

Zhao Pan            

Institute of Physics, Chinese Academy of Sciences, Beijing, China

Magnetic-field-induced sign changes of thermal expansion in DyCrO4    

 

Zheshuai Lin

Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, China 

Zero thermal expansion and good optical transparence in the crystals with sodalite cage structures 

 

Zi-Kui Liu

Pennsylvania State University, USA

Theory and parameter-free prediction of positive and negative derivatives of volume to temperature and their positive and negative divergencies at critical points