说明:双击或选中下面任意单词,将显示该词的音标、读音、翻译等;选中中文或多个词,将显示翻译。
您的位置:首页 -> 句库 -> 质子导体
1.
Fabrication Study of Proton Conductor Ceramic Membrane Fuel Cells
质子导体陶瓷膜燃料电池的制备研究
2.
Inorganic Proton Conductor SnP_2O_7 and Its Hybrid Membranes
无机质子导体SnP_2O_7及其复合膜
3.
A High Electrochemical Performance Proton Conductor Electrolyte with CO_2 Tolerance
一种抗CO_2中毒的高电化学性能质子导体电解质
4.
Preparation and Characterization of Pt/C Catalysts Modified with Nafion for PEMFC;
质子导体保护(修饰)质子交换膜燃料电池Pt/C催化剂制备及表征
5.
Study of High Temperature Proton Conductor, Its Preparation, Construction, Performance and Application;
高温质子导体的制备、结构、性能及应用研究
6.
Preparation and Properties of Doped Cerium-Zirconates Proton Conductors;
掺杂锆铈酸盐质子导体的制备与性能研究
7.
Study of Energy and Electronic Properties in Semiconductor Quantum Dots;
导体量子点中电子能量和性质的研究
8.
Characteristics of Atomic Spontaneous Emission in Photonic Crystal Waveguide
光子晶体波导中原子的自发辐射性质
9.
A semiconductor is a substance used for making electronic equipment.
半导体是用于制造电子设备的物质。
10.
Properties of Strong-Coupling Magnetopolaron in Semiconductor Quantum Dot
半导体量子点中强耦合磁极化子的性质
11.
Hydrostatic Pressure Effect on Donor and Exciton in Semiconductors Quantum Wells;
半导体量子阱中的杂质态和激子的压力效应
12.
Exciton and Impurity State in Semiconductor Quantum Wells in an Electric Field;
外电场下半导体量子阱中的激子和杂质态
13.
Electronic Transport Properties of Semiconductor Quantum Wire under Electromagnetic Field Irradiation;
半导体量子线在电磁场辐照下的电子输运性质
14.
Study on Aggregation of Ionic Liposomes Induced by Small Molecules and Its Mechanism
小分子诱导离子型脂质体聚集及其机理的研究
15.
Liposome-Mediated Exogenous DNA Uptake by Goat Sperm Cells
脂质体介导外源基因体外转染山羊精子的研究
16.
Intrinsic semiconductors are those in which the electrical behavior is based on the electronic structure inherent to the pure material.
本征半导体是电学性质基于纯材料的电子结构的半导体。
17.
The Effect of H~+-ATPase in PM of Arabidopsis Thaliana Pollen Cells in Signal Transduction Pathway of Extracellular CaM;
拟南芥花粉质膜质子泵在质外体钙调素跨膜信号转导中的作用
18.
When the electrical characteristics are dictated by impurity atoms, the semiconductor is said to be extrinsic semiconductors.
如果半导体的电学性质归因于其中的杂质原子,那么它将被称为杂质半导体。