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1.
Study of Novel SERS Active Substrates and C_(60) Modified Bilayer Lipid Membrane (BLM);
新型SERS活性基底及C_(60)修饰的BLM膜研究
2.
Fabrication, Characterization, and Optical Activity of New SERS Substrates
新颖SERS基底的制备、表征和光学活性研究
3.
Study on SERS Activity of Coupled Metal Nanoparticles and the Fabrication of a New SERS Substrate;
偶合纳米金属溶胶的表面增强拉曼散射活性研究和新型SERS基底的制备
4.
Studies to the Preparation and Characterization of SERS Active Substrates by Magnetron Sputtering;
基于磁控溅射技术的表面增强拉曼散射(SERS)基底制备及其特性研究
5.
Synthesis of Nano-metal Colloids and Study of Their SERS Activity;
纳米金属胶体的制备及其SERS活性研究
6.
Synthesis of Silver Nanoparticles and the Studies of Their SERS Activity
银纳米粒子的合成及SERS活性研究
7.
Preparation of a New Sers Substrate and Spectroscopy Study of Nitrogen/Sulfur-Containing Molecules in Nano-System;
新型SERS基底的制备和含S、N原子的分子在纳米体系中的光谱特性研究
8.
Synthesis SERS Probe and SERS-active Substrate for Surface-enhanced Raman Scattering Immunoassay;
SERS探针与基底的制备及其在免疫分析中的应用
9.
Photo-induced Synthesis of Silver Nanodecahedrons and Studies of Their SERS Activities;
光诱导合成十面体银纳米粒子及其SERS活性研究
10.
Synthesis of Shape Controllable Gold-silver Alloy Framework Nanoparticles and the Studies of Their SERS Activity;
金银合金纳米材料的形状调控及其SERS活性研究
11.
Sonication-mediated Film Assembly of Gold Nanoparticles at a Water/Hexane Interface Used as a SERS Substrate
水/正己烷界面上超声波介导组装金纳米粒子薄膜用作SERS基底
12.
Optimization of SERS Active Substrates and It s Application in Biomolecular Analysis;
SERS活性体系的优化及其在生物分子研究中的应用
13.
Synthesis, Characterization and the SERS Activity of Au and Au@Pd Nanocubes;
金和钯包金纳米立方体的合成,表征及其SERS活性研究
14.
Size Dependent SERS Activity of Gold Nanoparticles Studied by 3D-FDTD Simulation
三维时域有限差分法计算金纳米粒子尺寸与SERS活性的关联
15.
Fabrication of Preaggregated Silver Nanoparticle Monolayer Film and Its Application to Surface-Enhanced Raman Scattering
预聚集法制备单层银纳米粒子膜及其SERS活性研究
16.
Basement Faults and Their Recent Activity in Ordos Basin
鄂尔多斯盆地基底断裂及其现代活动性
17.
SELECTION OF ACTIVE CAPPING MATERIALS FOR REMEDIATION OF NITROBENZENE CONTAMINATED SEDIMENT
修复硝基苯污染底泥的活性覆盖材料筛选
18.
Study on Material s Fracture Mechanical Properties Based on Reactive Powder Concrete;
新型活性粉末混凝土(RPC)为基底材料的断裂性能研究