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   21101篇
  免费   3838篇
  国内免费   3142篇
化学   15504篇
晶体学   352篇
力学   1225篇
综合类   248篇
数学   2591篇
物理学   8161篇
  2024年   38篇
  2023年   399篇
  2022年   700篇
  2021年   800篇
  2020年   921篇
  2019年   1030篇
  2018年   788篇
  2017年   817篇
  2016年   1095篇
  2015年   1169篇
  2014年   1358篇
  2013年   1716篇
  2012年   2022篇
  2011年   2024篇
  2010年   1471篇
  2009年   1491篇
  2008年   1490篇
  2007年   1247篇
  2006年   1114篇
  2005年   933篇
  2004年   768篇
  2003年   596篇
  2002年   645篇
  2001年   490篇
  2000年   387篇
  1999年   409篇
  1998年   293篇
  1997年   272篇
  1996年   257篇
  1995年   226篇
  1994年   169篇
  1993年   180篇
  1992年   115篇
  1991年   114篇
  1990年   95篇
  1989年   90篇
  1988年   72篇
  1987年   43篇
  1986年   41篇
  1985年   53篇
  1984年   30篇
  1983年   23篇
  1982年   26篇
  1981年   11篇
  1980年   7篇
  1979年   7篇
  1978年   6篇
  1977年   5篇
  1976年   4篇
  1972年   4篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
21.
Recently,the nested Mach–Zehnder interferometer[Phys.Rev.Lett.111,240402(2013)]was modified by adding Dove prisms in a paper[Quantum Stud.:Math.Found.2,255(2015)],and an interesting result is that,after the Dove prisms were inserted,a signal at the first mirror of the nested interferometer was obtained.But,according to the former original paper,the photons have never been present near that mirror.In this work,we interpret this result naturally by resorting to the three-path interference method.Moreover,we find that even though the photons have been somewhere,they can hide the trace of being there.  相似文献   
22.
23.
24.
A new A, D-seco limonoid, named 12-acetyloxyperforatin (1), along with three known ones, were isolated from the leaves of Harrisonia perforata. Their structures were elucidated on the basis of spectroscopic analysis, including extensive NMR techniques and computational modelling. These compounds showed no inhibitory activity against the 11β-HSD1 enzyme.  相似文献   
25.
International Journal of Theoretical Physics - Gram matrices arise naturally in the consideration of pair-wise overlap of a family of vectors or quantum pure states, and play an important role in...  相似文献   
26.
27.
28.
29.
DFT computations have been performed to investigate the mechanism of H2‐assisted chain transfer strategy to functionalize polypropylene via Zr‐catalyzed copolymerization of propylene and p‐methylstyrene (pMS). The study unveils the following: (i) propylene prefers 1,2‐insertion over 2,1‐insertion both kinetically and thermodynamically, explaining the observed 1,2‐insertion regioselectivity for propylene insertion. (ii) The 2,1‐inserion of pMS is kinetically less favorable but thermodynamically more favorable than 1,2‐insertion. The observation of 2,1‐insertion pMS at the end of polymer chain is due to thermodynamic control and that the barrier difference between the two insertion modes become smaller as the chain length becomes longer. (iii) The pMS insertion results in much higher barriers for subsequent either propylene or pMS insertion, which causes deactivation of the catalytic system. (iv) Small H2 can react with the deactivated [Zr]?pMS?PPn facilely, which displace functionalized pMS?PPn chain and regenerate [Zr]? H active catalyst to continue copolymerization. The effects of counterions are also discussed. © 2014 Wiley Periodicals, Inc. J. Polym. Sci., Part A: Polym. Chem. 2015 , 53, 576–585  相似文献   
30.
Fully utilizing solar energy for catalysis requires the integration of conversion mechanisms and therefore delicate design of catalyst structures and active species. Herein, a MOF crystal engineering method was developed to controllably synthesize a copper–ceria catalyst with well-dispersed photoactive Cu-[O]-Ce species. Using the preferential oxidation of CO as a model reaction, the catalyst showed remarkably efficient and stable photoactivated catalysis, which found practical application in feed gas treatment for fuel cell gas supply. The coexistence of photochemistry and thermochemistry effects contributes to the high efficiency. Our results demonstrate a catalyst design approach with atomic or molecular precision and a combinatorial photoactivation strategy for solar energy conversion.  相似文献   
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