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1.
邹勃 《发光学报》2020,(5):507-509
科技创新的根源是基于基础科学研究的提升,而“从0到1”的突破是需要长期的积累和灵感的。本文讲述了发现压力诱导发光这一新现象的思想和材料设计。  相似文献   
2.
We use a diamond anvil cell for the first time to investigate the Raman spectra of an aqueous micellar solution of hexadecyltrimethylammonium bromide (CTAB) at pressures up to 3.85 GPa. The pressure-induced phase transition between the micellar and coagel phases is found to occur at 0.64 GPa and 60℃. This phase transition has a pressure hysteresis, and thus exhibits the first-order phase transition properties. Further experimental results show that although the structure of the coagel phase is similar to that of the CTAB crystal, the interchain distance is slightly larger in the coagel phase than that in the CTAB crystal.  相似文献   
3.
近年来 ,自组装膜的研究不断引起人们重视[1] .一方面 ,其兴趣可能源于纳米级器件的组装 ,如生物传感器等 [2 ] ;另一方面 ,它可作为研究摩擦学 [3]、生物膜模拟 [4 ]和微观浸润性的模型体系 [5] .树枝状分子的结构可在分子水平上精确控制 ,是很有潜力的纳米构筑基元 [6 ] .不同于常规的自组装膜构筑基元 ,树枝状分子的特殊结构使其在金属表面形成某些特殊的组装结构成为可能 .结合界面分子自组装技术和树枝状分子化学 ,国内外已有机构开展了树枝状硫醇的自组装膜的研究[7~ 9] .我们曾发现一种聚醚树枝状硫醇分子在金表面形成的自组装单层…  相似文献   
4.
古雅荣  邵贵成  田竹梅  李海霞  王凯  邹勃 《中国物理 B》2022,31(1):17901-017901
Mechanoresponsive luminescent(MRL)materials have drawn extensive concern due to their potential applications in mechanical sensors,memory chips,and security inks;especially these possessing high emission efficiency.In this work,we found trans-stilbene crystal exhibited two different pressure-induced emission enhancement(PIEE)behaviors at different pressure areas.The structural characterizations combined with density functional theory calculation indicate that the first emission enhancement was due to the decrease of nonradiation transition by the weaken of energy exchange process between atoms and lattice.And the second emission enhancement was attributed to the strengthen of C-H...C interactions from the non-planarization comformation.The results regarding the mechanoresponsive behavior of trans-stilbene offered a deep insight into PIEE from the structural point of view,which will facilitate the design of and search for high-performance MRL materials.  相似文献   
5.
利用化学自组装方法,首先在色谱玻璃小瓶的内壁吸附上一层PDDA阳离子聚电解质,然后通过静电吸附作用将带有负电荷的银纳米粒子组装到内壁;比较了不同色谱瓶作为吸附银纳米粒子的载体的优缺点;用紫外-可见吸收光谱监测吸附到玻璃瓶内壁的银纳米粒子的表面等离子体共振峰,跟踪银纳米粒子的组装情况;利用对-巯基苯胺作为探针分子研究了基底的表面增强拉曼散射(SERS)活性。结果表明:所制备的SERS小瓶基底具有良好的SERS活性,并且使用简单,保存时间长,适合SERS现场快速检测的需要。  相似文献   
6.
Yingying Wang 《中国物理 B》2022,31(10):106201-106201
Flourishing rare earth superhydrides are a class of recently discovered materials that exhibit near-room-temperature superconductivity at high pressures, ushering in a new era of superconductivity research at high pressures. Yttrium superhydrides drew the most attention among these superhydrides due to their abundance of stoichiometries and excellent superconductivities. Here, we carried out a comprehensive study of yttrium superhydrides in a wide pressure range of 140 GPa—300 GPa. We successfully synthesized a series of superhydrides with the compositions of YH4, YH6, YH7, and YH9, and reported superconducting transition temperatures of 82 K at 167 GPa, 218 K at 165 GPa, 29 K at 162 GPa, and 230 K at 300 GPa, respectively, as evidenced by sharp drops in resistance. The structure and superconductivity of YH4 were taken as a representative example and were also examined using x-ray diffraction measurements and the superconductivity suppression under external magnetic fields, respectively. Clathrate YH10, a candidate for room-temperature superconductor, was not synthesized within the study pressure and temperature ranges of up to 300 GPa and 2000 K. The current study established a detailed foundation for future research into room-temperature superconductors in polynary yttrium-based superhydrides.  相似文献   
7.
通过高通量实验方法制备了一系列新型的Ce3+离子掺杂亚磷酸锰(NH4)4[Mn4-xCex(HPO3)6](简称JIS-10∶xCe3+) 无机开放骨架材料. 通过粉末X射线衍射(PXRD)谱图、 扫描电子显微镜(SEM)、 微量元素能谱(EDS)、 X射线光电子能谱(XPS)、 傅里叶变换红外(FTIR)光谱和光致发光(PL)光谱等手段对该材料进行了表征, 并研究了Ce3+离子掺杂浓度、 反应温度和时间对晶体相变和发光性能的影响. 结果表明, 在波长260 nm的光激发下, Ce3+离子在500 nm处有1个绿光发射带而Mn2+离子在590 nm处有1个黄光发射带. 调变JIS-10∶xCe3+材料中Ce3+离子的掺杂浓度发现, 当x=0.06时, 即Ce3+离子的掺杂浓度较低时, 样品的发射颜色为黄绿色, 其CIE坐标为(0.38, 0.48); 当Ce3+离子的掺杂浓度增加时, 绿色发光带的增长快于黄色发光带的增长, 从而调整发射颜色; 在x=1.33时观察到最强的发射, 浓度过高发生浓度猝灭.  相似文献   
8.
通过金刚石对顶砧(DAC)高压装置产生高压, 利用原位高压同步辐射能量色散X射线衍射(EDXD)和同步辐射远红外光谱研究了压力对DPP-11[2,5-二-(11-十一醇基)-3,6-二-(2-噻吩基)-1,4-二酮吡咯并[3,4-c]吡咯]固体及其在水溶液中胶束体系的影响. 实验结果表明, 在准静水压条件下, DPP-11固体没有发生相变, 但随着压力的增加, 分子间的π-π相互作用明显增强. 在DPP-11胶束中发现了DPP-11固体中新的远红外吸收峰, 此峰随着压力的增加而蓝移, 这是由于胶束中π共轭染料基团的π-π相互作用增强所致.  相似文献   
9.
 在氩气保护下,用三辛基亚磷酸和油酸分别作为Se和Cd的配位体,在260~300 ℃的十八烯溶液中合成了尺寸可控的CdSe纳米晶。该纳米晶不用进行进一步的提纯和尺寸分离就具有单分散性,其量子尺寸限域效应非常明显——吸收光谱的第一吸收峰峰位随着纳米晶的长大而发生红移;该纳米晶质量很高,具有很强的发光能力,其发射光谱对称的形状和合理的Stokes频移(13 nm)显示,该纳米晶的发光完全出自带隙,没有来自缺陷的发光。此外,实验结果表明,通过改变三辛基亚磷酸的浓度可以调节成核和生长的快慢,从而可以在不同的反应时间得到不同尺寸的单分散性CdSe纳米晶。  相似文献   
10.
In situ high pressure XRD diffraction and Raman spectroscopy have been performed on 12 nm CeO2 nanoparticles. Surprisingly, under quasihydrostatic conditions, 12 nm CeO2 nanoparticles maintain the fluorite-type structure in the whole pressure range (0-51 GPa) during the experiments, much more stable than the bulk counterpart (PT~31 GPa). In contrast, they experienced phase transition at pressure as low as 26 GPa under non-hydrostatic conditions (adopting CsCl as pressure medium). Additionally, 32-36 nm CeO2 nanoparticles exhibit an onset pressure of phase transition at 35 GPa under quasihydrostatic conditions, and this onset pressure is much lower than our result. Further analysis shows both the experimental condition (i.e., quasihydrostatic or non-hydrostatic) and grain size effect have a significant impact on the high pressure behaviors of CeO2 nanomaterials.  相似文献   
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