Follow
Naike Shi
Title
Cited by
Cited by
Year
Negative thermal expansion in framework structure materials
N Shi, Y Song, X Xing, J Chen
Coordination Chemistry Reviews 449, 214204, 2021
712021
Negative thermal expansion in magnetic materials
Y Song, N Shi, S Deng, X Xing, J Chen
Progress in Materials Science 121, 100835, 2021
712021
Strong Negative Thermal Expansion in a Low-Cost and Facile Oxide of Cu2P2O7
N Shi, A Sanson, Q Gao, Q Sun, Y Ren, Q Huang, DO de Souza, X Xing, ...
Journal of the American Chemical Society 142 (6), 3088-3093, 2020
682020
Large isotropic negative thermal expansion in water-free Prussian blue analogues of ScCo (CN) 6
Q Gao, Y Sun, N Shi, R Milazzo, S Pollastri, L Olivi, Q Huang, H Liu, ...
Scripta Materialia 187, 119-124, 2020
342020
Tunable Thermal Expansion from Negative, Zero, to Positive in Cubic Prussian Blue Analogues of GaFe(CN)6
Q Gao, N Shi, A Sanson, Y Sun, R Milazzo, L Olivi, H Zhu, SH Lapidus, ...
Inorganic Chemistry 57 (22), 14027-14030, 2018
342018
Low-Frequency Phonon Driven Negative Thermal Expansion in Cubic GaFe(CN)6 Prussian Blue Analogues
Q Gao, N Shi, Q Sun, A Sanson, R Milazzo, A Carnera, H Zhu, ...
Inorganic Chemistry 57 (17), 10918-10924, 2018
342018
Negative thermal expansion in cubic FeFe (CN) 6 Prussian blue analogues
N Shi, Q Gao, A Sanson, Q Li, L Fan, Y Ren, L Olivi, J Chen, X Xing
Dalton Transactions 48 (11), 3658-3663, 2019
332019
Negative and zero thermal expansion in α-(Cu 2− x Zn x) V 2 O 7 solid solutions
N Shi, A Sanson, A Venier, L Fan, C Sun, X Xing, J Chen
Chemical Communications 56 (73), 10666-10669, 2020
212020
Design of zero thermal expansion and high thermal conductivity in machinable xLFCS/Cu metal matrix composites
X Pang, Y Song, N Shi, M Xu, C Zhou, J Chen
Composites Part B: Engineering 238, 109883, 2022
192022
Strong Negative Thermal Expansion of Cu2PVO7 in a Wide Temperature Range
N Shi, A Sanson, Q Sun, L Fan, A Venier, D Oliveira de Souza, X Xing, ...
Chemistry of Materials 33 (4), 1321-1329, 2021
192021
Negative thermal expansion and the role of hybridization in perovskite-type PbTiO 3-Bi (Cu 0.5 Ti 0.5) O 3
L Fan, Q Li, L Zhang, N Shi, H Liu, Y Ren, J Chen, X Xing
Inorganic Chemistry Frontiers 7 (5), 1190-1195, 2020
102020
Tuning thermal expansion from strong negative to zero to positive in Cu2-xZnxP2O7 solid solutions
N Shi, A Sanson, A Venier, L Fan, Y Ren, DO de Souza, L Olivi, Y Song, ...
Scripta Materialia 207, 114289, 2022
72022
A new method to enhance the magnetocaloric effect in (Sc, Ti) Fe2 via magnetic phase separation
Y Song, M Xu, X Zheng, C Zhou, N Shi, Q Huang, S Wang, Y Jiang, ...
Journal of Materials Science & Technology 147, 102-111, 2023
62023
Realization of high thermal conductivity and tunable thermal expansion in the ScF3@ Cu core-shell composites
N Xiao, YQ Qiao, NK Shi, YZ Song, SQ Deng, J Chen
Science China Technological Sciences 64 (9), 2057-2065, 2021
62021
Giant uniaxial negative thermal expansion in FeZr2 alloy over a wide temperature range
M Xu, Q Li, Y Song, Y Xu, A Sanson, N Shi, N Wang, Q Sun, C Wang, ...
Nature Communications 14 (1), 4439, 2023
42023
High-Temperature Zero Thermal Expansion in HfFe2+δ from Added Ferromagnetic Paths
M Xu, Y Song, Y Xu, Q Sun, F Long, N Shi, Y Qiao, C Zhou, Y Ren, J Chen
Chemistry of Materials 34 (21), 9437-9445, 2022
42022
Giant negative thermal expansion in Zn2-xCuxP2O7 ceramics via microstructure effect
N Shi, Y Song, C Zhou, L Fan, J Chen
Ceramics International 49 (1), 294-300, 2023
32023
High-density, spontaneous magnetic biskyrmions induced by negative thermal expansion in ferrimagnets
Y Song, T Xu, G Zhao, Y Xu, Z Zhong, X Zheng, N Shi, C Zhou, Y Hao, ...
Science Advances 9 (36), eadi1984, 2023
22023
Biaxial negative thermal expansion in Zn [N (CN) 2] 2
Y Zhang, A Sanson, Y Song, L Olivi, N Shi, L Wang, J Chen
Inorganic Chemistry Frontiers 9 (9), 2036-2042, 2022
22022
Observation of near-zero thermal expansion in CrVMoO7
N Shi, X Kong, A Sanson, N Wang, A Venier, DO de Souza, J Chen
Scripta Materialia 235, 115597, 2023
12023
The system can't perform the operation now. Try again later.
Articles 1–20