Negative thermal expansion materials: technological key for control of thermal expansion

K Takenaka - Science and technology of advanced materials, 2012 - iopscience.iop.org
Most materials expand upon heating. However, although rare, some materials contract upon
heating. Such negative thermal expansion (NTE) materials have enormous industrial merit …

Designs of conductive polymer composites with exceptional reproducibility of positive temperature coefficient effect: A review

L Chen, J Zhang - Journal of Applied Polymer Science, 2021 - Wiley Online Library
Conductive polymer composites with positive temperature coefficient (PTC) effect have
gained intensive attention for the potential application in the smart heating field. The PTC …

Computational investigation of inverse perovskite SbPX3 (X= Mg, Ca, and Sr) structured materials with applicability in green energy resources

U Rani, PK Kamlesh, TK Joshi, R Singh… - Computational …, 2023 - Elsevier
With the exchange of ionic positions, antiperovskites (inverse perovskites) have maintained
the perovskite crystal structure. Inverse perovskites offer interesting photovoltaic applications …

Magnetovolume effects in manganese nitrides with antiperovskite structure

K Takenaka, M Ichigo, T Hamada… - … and technology of …, 2014 - iopscience.iop.org
Magnetostructural correlations in antiperovskite manganese nitrides were investigated
systematically for stoichiometric and solid solution Mn 3 Cu 1− x A x N (A= Co, Ni, Zn, Ga …

Smart conducting polymer composites having zero temperature coefficient of resistance

K Chu, SC Lee, S Lee, D Kim, C Moon, SH Park - Nanoscale, 2015 - pubs.rsc.org
Zero temperature coefficient of resistance (TCR) is essential for the precise control of
temperature in heating element and sensor applications. Many studies have focused on …

Multifunctional nanostructured NiTi alloy with Invar, Elinvar and Rinvar properties

Z Deng, Q Li, Y Onuki, Q Sun - Journal of Alloys and Compounds, 2022 - Elsevier
A multifunctional NiTi alloy with Invar (dimension-invariant), Elinvar (elastic modulus-
invariant) and Rinvar (resistivity-invariant) properties over the temperature range from 125 K …

The structure, magnetic properties, magnetotransport and temperature coefficient of resistivity of hexagonal 4H-SrMnO3 manganite

H Wang, G Lu, W Tan, H Wang - Journal of Alloys and Compounds, 2024 - Elsevier
The perovskite hexagonal SrMnO 3 manganite with four layers (4H-SrMnO 3) have been
one of the hot topics in materials science due to the physical characteristics of …

Near zero temperature coefficient of resistivity in antiperovskite Mn3Ni1− xCuxN

L Ding, C Wang, L Chu, J Yan, Y Na, Q Huang… - Applied Physics …, 2011 - pubs.aip.org
The near zero temperature coefficient of resistivity (NZ-TCR) in Mn-based antiperovskite
Mn3Ni1ÀxCuxN is reported. The temperature range of NZ-TCR is controllable by changing …

Mn-based antiperovskite functional materials: Review of research

P Tong, BS Wang, YP Sun - Chinese Physics B, 2013 - iopscience.iop.org
Our recent research on the Mn-based antiperovskite functional materials AXMn 3 (A: metal
or semiconducting elements; X: C or N) is outlined. Antiperovskite carbides (eg, AlCMn 3) …

Fully-dense Mn3Zn0. 7Ge0. 3N/Al composites with zero thermal expansion behavior around room temperature

C Zhou, Q Zhang, X Tan, S Deng, K Shi, G Wu - Materialia, 2019 - Elsevier
Abstract Mn 3 Zn 0.7 Ge 0.3 N/Al composites were successfully fabricated by pressure
infiltration technology. The large positive thermal expansion of Al is suppressed by adding …