首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   2882篇
  免费   42篇
  国内免费   7篇
化学   1896篇
晶体学   9篇
力学   34篇
数学   504篇
物理学   488篇
  2016年   47篇
  2015年   40篇
  2014年   41篇
  2013年   62篇
  2012年   73篇
  2011年   108篇
  2010年   56篇
  2009年   70篇
  2008年   92篇
  2007年   94篇
  2006年   95篇
  2005年   83篇
  2004年   77篇
  2003年   80篇
  2002年   72篇
  2001年   48篇
  2000年   45篇
  1999年   27篇
  1998年   33篇
  1997年   22篇
  1996年   35篇
  1995年   42篇
  1994年   36篇
  1993年   36篇
  1992年   31篇
  1991年   25篇
  1990年   34篇
  1989年   38篇
  1988年   52篇
  1987年   40篇
  1986年   37篇
  1985年   49篇
  1984年   31篇
  1983年   22篇
  1982年   23篇
  1981年   40篇
  1980年   38篇
  1979年   47篇
  1978年   46篇
  1977年   28篇
  1976年   26篇
  1975年   36篇
  1974年   24篇
  1973年   36篇
  1972年   24篇
  1971年   36篇
  1934年   27篇
  1933年   23篇
  1931年   17篇
  1912年   18篇
排序方式: 共有2931条查询结果,搜索用时 15 毫秒
81.
82.
83.
84.
85.
86.
Patent-Teil     
Ohne Zusammenfassung  相似文献   
87.
A series of alternating 3,4‐ethylenedioxythiophene–alkynylpyridine oligomers (DA)n with increased solubility are synthesized and their photophysical properties and nonlinear optical properties are investigated. Their quadratic polarizabilities are determined from hyper‐Rayleigh scattering experiments to obtain information on their conformations in solution. These chromophores, based on the alternation of electron‐rich (D) and electron‐deficient (A) moieties, exhibit optical properties that arise from the combination of dipolar and helicoidal features in the (DA)n homologue series where n=1–4. The transition from dipolar conjugated planar structures (n=1, 2) to helicoidal structures (n=3, 4) is clearly evidenced by results from symmetry‐sensitive second‐order nonlinear optical experiments. This suggests an approach towards highly efficient chiral chromophores for second‐order nonlinear optics. Interestingly, this structural evolution also has significant impact on the photophysical properties: both absorption and fluorescence emission show bathochromic and hyperchromic shifts with increasing number of repeating units in the dipolar planar derivatives (n=1–2) but show saturation effects in the helicoidal structures (n=2–4). In addition, the helicoidal structures show sizeable two‐photon absorption at 700–750 nm (40–100 GM) for compounds lacking either electron‐donating or electron‐withdrawing substituents.  相似文献   
88.
Plants produce a great number of metabolites with potentially useful biological activities. Species from the genus Globularia (Plantaginaceae) are known as sources of different phenolic and iridoid compounds. Globularia alypum L. is a medicinal plant used as a healing agent in many Mediterranean countries. Similarities in phytochemical composition are often observed for related species. For Globularia spp., such findings were mostly based on identification of several isolated compounds from distinct species. To our knowledge, this is the first study that enables simultaneous comparison of phytochemical profiles from several members of the genus Globularia. Liquid chromatography‐photodiode array detection‐electrospray ionization‐tandem mass spectrometry was used for the analysis of methanolic extracts of aerial parts obtained from four Globularia species (G. alypum, G. punctata, G. cordifolia and G. meridionalis). In total, 85 compounds were identified or tentatively identified based on comparison of their retention time, UV and MSn (up to MS4) spectra to those of standard compounds and/or to literature data. Among these, high relative amounts of bioactive molecules such as globularin, globularifolin, asperuloside and verbascoside (acteoside) were found. Apart from providing new insights into the phytochemistry and chemotaxonomy of selected Globularia species, results of this study complement existing MS/MS spectral data and could enable easier mass spectrometric profiling of certain bioactive compounds such as iridoids and phenylethanoids in related plant species, genera and families. Copyright © 2016 John Wiley & Sons, Ltd.  相似文献   
89.
90.
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号