Facile fabrication of cross-linked n-Al/PVDF films with the tunability of reactivity and laser sensitivity

J Li, X Liu, Z Zhang, Y Wang, M Zhang, K Guo… - Journal of Alloys and …, 2023 - Elsevier
Metastable intermolecular complexes (MICs), which have exceptional energy density and
reactivity, have drawn considerable attention in the field of energetic materials. In this work …

Fabrication and characterization of highly sensitive and selective sensors based on porous NiO nanodisks

Q Zhou, A Umar, A Amine, L Xu, Y Gui… - Sensors and Actuators B …, 2018 - Elsevier
Herein, we report the synthesis, characterization and alcohol sensing applications of highly
porous NiO nanodisks (NiO-NDs). The nanodisks were synthesized via hydrothermal …

[HTML][HTML] Thermodynamics and performance of Al/CuO nanothermite with different storage time

C Wang, J Xu, Y Shen, Y Wang, T Yang, Z Zhang… - Defence …, 2021 - Elsevier
The storage stability of energetic materials is important for its application. Here, the storage
stability of Al/CuO nanothermite, which was prepared by electrospray method and stored …

[PDF][PDF] Defence Technology

CS Wang - … and properties of NiAl alloy coatings …, 2014 - imumaster-1257689502.cos.ap …
abstract The inertial navigation system (INS), which is frequently used in emergency rescue
operations and other situations, has the benefits of not relying on infrastructure, high …

Semiconductor nanomaterials for environmental applications

A Mohammed - 2018 - didaktorika.gr
There's Plenty of Room at the Bottom”, stated by Richard Feynman in 1959, had sparked an
extensive research to direct manipulation of atoms and after several decades of research a …

[PDF][PDF] Fabrication and characterization of h ighly sensitive and

Q Zhou, A Umar, A El Mehdi Sodki - 2017 - academia.edu
Herein, we report the synthesis, characterization and alcohol sensing application of highly
porous NiO nanodisks (NiO-NDs). The nanodisks were synthesized via hydrothermal …

[引用][C] 基于Al/CuOx复合薄膜半导体桥间隙点火性能研究

倪德彬, 于国强, 史胜楠, 徐栋, 陈利魁, 朱雅红… - 含能材料, 2018