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1.
Study on the Preparation and Properties Sensitive to Hydrogen of Tungsten Oxide Films;
WO_3薄膜的制备工艺与氢敏特性的研究
2.
The Effect of Doping and MWCNTs on the Hydrogen Sensing Properties of SnO_2;
SnO_2的掺杂及与碳纳米管的复合对其氢敏特性的影响
3.
APPLICATION OF AN DIHYDROINDOLINE DYE IN NANOCRYSTALLINE TiO_2 BASED DYE-SENSITIZED SOLAR CELLS
二氢吲哚染料敏化TiO_2太阳电池的特性研究
4.
Preliminary Study of Photosensitizing Properties and Pharmacokinetic of the Novel Chlorin e_4 Derivatives;
新型二氢卟吩e_4衍生物光敏特性和药代动力学的初步研究
5.
Relationship between Hydrogen-induced Additive Stress and Threshold Cracking Stress for a High-strength Steel
高强钢氢脆敏感性和氢致附加应力的相关性
6.
Hydrogen sensing characteristics and mechanism of nanosized SnO_2-TiO_2 composite material
纳米SnO_2-TiO_2复合材料的氢敏性能及气敏机理
7.
Effect of heat treatment on hydrogen embrittlement sensibility of 25CrNi2MoVNb steel
热处理对25CrNi2MoVNb钢氢脆敏感性的影响
8.
Effect of Cathodic Polarization on the Susceptibility to Hydrogen Embrittlement of 907 Steel
阴极极化对907钢氢脆敏感性的影响
9.
Test on Susceptibility to Hydrogen Embrittlement for 30CrMnSiNi2A
超高强度钢30CrMnSiNi2A的氢脆敏感性试验
10.
Screening,Identification and Characterization of an Efficient H_2-producing Bacterium
产氢菌的分离鉴定及其产氢特性研究
11.
COMPARISON OF SPECIFIC ACTIVITY OF CATALASE IN THE PHOSPHINE-RESISTANT AND PHOSPHINE-SUSCEPTIBLE STRAINS OF RED FLOUR BEETLE,TRIBOLIUM CASTANEUM (HERBST)
赤拟谷盗磷化氢抗性和敏感品系的过氧化氢酶活性比较
12.
Effect of boron on the environmental embrittlement of ordered Ni_3Fe alloys in gaseous hydrogen
硼对有序态Ni_3Fe合金氢气环境中氢脆敏感性的影响
13.
Preparation and Hydrogen Sensitivity of Pd/PAn/PTFE Composition Membranes;
钯修饰PAn/PTFE复合膜材料的制备及氢敏性研究
14.
Preparation of Optical WO_3-based Hydrogen-sensing Thin Film and Its Properties;
三氧化钨基光学氢敏膜的制备及性能研究
15.
Study on the Property and Mechanism Sensitive to Hydrogen of Tungsten Oxide Films Doped Catalyst;
WO_3掺杂薄膜的性能及其氢敏机理的研究
16.
Study on Experimental Program of Property of Hydric Sensivility Films;
氢敏膜层及其性能测试的实验方案研究
17.
Studying the Effect of Cathodic Polarization on the Susceptibility of 907 Steel to Hydrogen Embrittlement
阴极极化对海水中907钢氢脆敏感性影响研究
18.
Preparation and Hydrogen Sensing Properties of ITO Nanotubes by Sol-Gel Method Combined with Porous Anodic Aluminum Oxide Template
溶胶凝胶模板法合成ITO纳米管及其氢敏性能