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| 1 | Alumina-coated Ag nanocrystal monolayers as surfaceenhanced Raman spectroscopy platforms for the direct spectroscopic detection of water splitting reaction intermediates显示文摘 | Xing Yi Ling Ruoxue Yan Sylvia Lo Dat Tien Hoang Chong Liu Melissa A. Fardy Sher Bahadar Khan Abdullah M. Asiri Salem M. Bawaked Peidong Yang | 2014 | Nano Research2014,7,1: | 8 |
| 2 | Crysral structure, anisotropic growth, and optical properties: controlled synthesis of lanthanide orthophosphate one-dimensional nano- materials显示文摘 | Yan Ruoxue Sun Xiaoming Peng Cling | 2005 | Chem Eur J2005,11,: | 1 |
| 3 | Ultrathin-shell epitaxial Ag@Au core-shell nanowires for high-performance and chemically-stable electronic, optical, and mechanical devices显示文摘Silver nanowires (AgNWs) hold great promise for applications in wearable electronics, flexible solar cells, chemical and biological sensors, photonic/plasmonic circuits, and scanning probe microscopy (SPM) due to their unique plasmonic, mechanical, and electronic properties. However, the lifetime, reliability, and operating conditions of AgNW-based devices are significantly restricted by their poor chemical stability, limiting their commercial potentials. Therefore, it is crucial to create a reliable oxidation barrier on AgNWs that provides long-term chemical stability to various optical, electrical, and mechanical devices while maintaining their high performance. Here we report a room-temperature solution-phase approach to grow an ultra-thin, epitaxial gold coating on AgNWs to effectively shield the Ag surface from environmental oxidation. The Ag@Au core-shell nanowires (Ag@Au NWs) remain stable in air for over six months, under elevated temperature and humidity (80 °C and 100% humidity) for twelve weeks, in physiological buffer solutions for three weeks, and can survive overnight treatment of an oxidative solution (2% H2O2). The Ag@Au core-shell NWs demonstrated comparable performance as pristine AgNWs in various electronic, optical, and mechanical devices, such as transparent mesh electrodes, surface-enhanced Raman spectroscopy (SERS) substrates, plasmonic waveguides, plasmonic nanofocusing probes, and high-aspect-ratio, high-resolution atomic force microscopy (AFM) probes. These Au@Ag core-shell NWs offer a universal solution towards chemically-stable AgNW-based devices without compromising material property or device performance. | Yangzhi Zhu Sanggon Kim Xuezhi Ma Peter Byrley Ning Yu Qiushi Liu Xiaoming Sun Da Xu Sangshan Peng Martin C.Hartel Shiming Zhang Vadim Jucaud Mehmet R.Dokmeci Ali Khademhosseini Ruoxue Yan | 2021 | Nano Research2021,14,11: | 1 |
| 4 | Decoupling co-existing surface plasmon polariton (SPP) modes in a nanowire plasmonic waveguide for quantitative mode analysis显示文摘表面电浆子电磁声子(SPP ) 的知识模式在一个维(1D ) 金属性的 nanostructures 为 subwavelength 的发展是必要的光设备象 photonic 电路,综合轻来源,和光电探测器那样。尽管有描绘这些 subwavelength 1D plasmonic 波导的繁殖参数的许多努力,例如 Ag nanowires,大差异由于他们的敏感在可得到的报告之中存在到共存的 SPP 模式的相对重量和去耦的一个方法的缺乏这些模式并且独立分析他们。在这个工作,我们开发一个干扰方法区分在 Ag nanowire 波导同时是激动的并且独立测量他们的繁殖参数的不同 SPP 模式。由从 nanowire 尖端从散布的光的 propagation-distancedependent 紧张摆动提取信息,有效折射索引,繁殖长度,和 nanowire 支持的共存的 SPP 模式的相对模式重量从一个模式干扰模型被导出。这些参数强烈取决于 nanowire 直径和刺激波长。特别地,我们由改变 nanowire 直径表明不同 SPP 模式的选择刺激的可能性。这种新模式分析技术提供唯一的卓见进基于 SPP 的应用程序的开发和优化。 | Sanggon Kim Sabrina Bailey Ming Liu Ruoxue Yan | 2017 | Nano Research2017,10,7: | 1 |
| 5 | 淋巴细胞密度及分布与直肠癌新辅助治疗反应的关系显示文摘背景:研究认为,淋巴细胞密度与直肠癌预后相关;但新辅助治疗前淋巴细胞分布模式对预后的影响尚不清楚。本研究旨在评估淋巴细胞的分布及密度与直肠癌新辅助治疗反应的关系。方法:对前瞻性队列中接受新辅助治疗的134例直肠癌患者进行回顾性分析。对新辅助治疗前活检标本进行免疫组化染色(CD4和CD8)。评估瘤内腺体周围淋巴细胞(IPL)和肿瘤浸润淋巴细胞(TIL)的密度。采用logistic回归模型(包括临床病理特征、分子特征及治疗方案)评估不同淋巴细胞的密度与肿瘤退缩分级(TRG)的关系。结果:CD8^(+)TIL密度高的患者接受新辅助治疗后获得了更佳的TRG(OR=0.23,95%CI:0.07-0.76,P<0.001)。而CD8^(+)IPL(P=0.033)、CD4^(+)IPL(P=0.156)和CD4^(+)TIL(P=0.170)则与TRG无明显相关性。敏感性分析未发现CD8^(+)TIL与新辅助放疗(P_(相互作用)=0.831)或化疗(P_(交互作用)=0.879)对TRG的影响存在交互作用。结论:本研究结果显示,CD8^(+)TIL而不是CD8^(+)IPL,可独立影响直肠癌新辅助治疗反应,这种影响不受放疗或化疗方案的干扰。 | Sicong Lai Xiaoying Lou Xinjuan Fan Weipeng Sun Yanhong Deng Jianping Wang Yan Huang Ruoxu Dou | 2020 | Gastroenterology Report2020,8,6: | 1 |
| 6 | Direct photonic-plasmonic coupling and routing in single nanowires 显示文摘 | YAN Ruoxue PAUSAUSKIE P HUANG Jiaxing | 2009 | P Natl Acad Sci USA2009,106,21: | 1 |
| 7 | Mutation inε-Sarcoglycan Induces a Myoclonus-Dystonia Syndrome-Like Movement Disorder in Mice显示文摘Myoclonus dystonia syndrome(MDS)is an inherited movement disorder,and most MDS-related mutations have so far been found in theε-sarcoglycan(SGCE)coding gene.By generating SGCE-knockout(KO)and human 237 C>T mutation knock-in(KI)mice,we showed here that both KO and KI mice exerted typical movement defects similar to those of MDS patients.SGCE promoted filopodia development in vitro and inhibited excitatory synapse formation both in vivo and in vitro.Loss of function of SGCE leading to excessive excitatory synapses that may ultimately contribute to MDS pathology.Indeed,using a zebrafish MDS model,we found that among 1700 screened chemical compounds,Vigabatrin was the most potent in readily reversing MDS symptoms of mouse disease models.Our study strengthens the notion that mutations of SGCE lead to MDS and most likely,SGCE functions to brake synaptogenesis in the CNS. | Jiao Li Yiqiong Liu Qin Li Xiaolin Huang Dingxi Zhou Hanjian Xu Feng Zhao Xiaoxiao Mi Ruoxu Wang Fan Jia Fuqiang Xu Jing Yang Dong Liu Xuliang Deng Yan Zhang | 2021 | Neuroscience Bulletin2021,37,3: | 0 |