Muralidharan, M.; Anbarasu, V.; Elaya Perumal et al.
Muralidharan et al.
Structural, morphological and magnetic properties of hydrothermally synthesized ZnFe2O4nanoparticles [0.03%]
水热合成ZnFe2O4纳米粒子的结构、形态和磁性
Rameshbabu, R.; Ramesh, R.; Kanagesan et al.
Rameshbabu et al.
This study investigates the computational properties of ZnO colloids in combination with proteinoid microspheres within an unconventional computing framework. We propose a method for creating flexible and fault-tolerant logic gates utilisin...
Enhanced electromagnetic wave absorption properties of polyaniline-coated Fe3O4/reduced graphene oxide nanocomposites [0.03%]
聚苯胺包覆Fe3O4/还原氧化石墨烯纳米复合材料的电磁波吸收性能增强
Chen, Tian; Qiu, Jinhao; Zhu et al.
Chen et al.
Infrared absorption of a-SiC : H as a function of the annealing temperature [0.03%]
a-SiC:H的红外吸收随退火温度的变化
R. Murri; N. Pinto; S. Giuliodori; G. Ambrosone; U. Coscia
R. Murri; N. Pinto; S. Giuliodori; G. Ambrosone; U. Coscia
Influence of Ho substitution on structural, magnetic and microwave absorption properties of PbM-type hexaferrites nanoparticles [0.03%]
Ho取代对PbM型六角铁氧体纳米粒子结构、磁性和微波吸收性能的影响
Ali-Sharbati, ; Khani, Javad-Mola Verdi
Ali-Sharbati
S. D. Baranovskii; K. Kohary; P. Thomas; S. Yamasaki
S. D. Baranovskii; K. Kohary; P. Thomas; S. Yamasaki
Effect of Ho3+substitution on magnetic and microwave absorption properties of Sr(ZnZr)0.5Fe12O19hexagonal ferrite nanoparticles [0.03%]
Ho3+替代对Sr(ZnZr)0.5Fe12O19六方晶系铁氧体纳米粒子磁性和微波吸收性能的影响
Sharbati, Ali; Khani, Javad Mola Verdi
Sharbati
Quantum confinement effects of Si/SiGe strained-layer superlattices grown by an ultrahigh vacuum/chemical vapor deposition technique [0.03%]
采用超高真空/化学气相沉积技术生长的Si/SiGe应变层超晶格的量子限域效应
T. C. Chang; C. Y. Chang; T. G. Jung; P. A. Chen; W. C. Tsai; P. J. Wang; Y. F. Chen; S. C. Pan
T. C. Chang; C. Y. Chang; T. G. Jung; P. A. Chen; W. C. Tsai; P. J. Wang; Y. F. Chen; S. C. Pan
Comparative studies of pure BiFeO3prepared by sol–gel versus conventional solid-state-reaction method [0.03%]
溶胶-凝胶法与传统固相反应法制备纯BiFeO3的对比研究
Sharma, Subhash; Singh, Vikash; Kotnala et al.
Sharma et al.