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   1359254篇
  免费   43722篇
  国内免费   20520篇
化学   693462篇
晶体学   16797篇
力学   78602篇
综合类   990篇
数学   249007篇
物理学   384638篇
  2021年   16114篇
  2020年   19258篇
  2019年   20280篇
  2018年   14486篇
  2017年   13029篇
  2016年   31492篇
  2015年   25005篇
  2014年   35587篇
  2013年   81165篇
  2012年   42923篇
  2011年   37962篇
  2010年   41569篇
  2009年   44377篇
  2008年   36511篇
  2007年   30596篇
  2006年   37152篇
  2005年   28893篇
  2004年   30092篇
  2003年   28581篇
  2002年   30383篇
  2001年   27104篇
  2000年   24656篇
  1999年   23337篇
  1998年   22012篇
  1997年   21881篇
  1996年   22198篇
  1995年   20163篇
  1994年   19471篇
  1993年   18837篇
  1992年   18236篇
  1991年   18488篇
  1990年   17026篇
  1989年   16947篇
  1988年   16412篇
  1987年   16468篇
  1986年   15303篇
  1985年   21834篇
  1984年   23215篇
  1983年   19396篇
  1982年   21140篇
  1981年   20368篇
  1980年   19658篇
  1979年   19749篇
  1978年   21190篇
  1977年   20787篇
  1976年   20476篇
  1975年   19134篇
  1974年   18749篇
  1973年   19296篇
  1972年   13826篇
排序方式: 共有10000条查询结果,搜索用时 32 毫秒
951.
The tetramer destabilization of transthyretin into monomers and its fibrillation are phenomena leading to amyloid deposition. Heparan sulfate proteoglycan (HSPG) has been found in all amyloid deposits. A chromatographic approach was developed to compare binding parameters between wild‐type transthyretin (wtTTR) and an amyloidogenic transthyretin (sTTR). Results showed a greater affinity of sTTR for HSPG at pH 7.4 compared with wtTTR owing to the monomeric form of sTTR. Analysis of the thermodynamic parameters showed that van der Waals interactions were involved at the complex interface for both transthyretin forms. For sTTR, results from the plot representing the number of protons exchanged vs pH showed that the binding mechanism was pH‐dependent with a critical value at a pH 6.5. This observation was due to the protonation of a histidine residue as an imidazolium cation, which was not accessible when TTR was in its tetrameric structure. At pH >6.5, dehydration at the binding interface and several contacts between nonpolar groups of sTTR and HSPG were also coupled to binding for an optimal hydrogen‐bond network. At pH <6.5, the protonation of the His residue from sTTR monomer when pH decreased broke the hydrogen‐bond network, leading to its destabilization and thus producing slight conformational changes in the sTTR monomer structure. Copyright © 2014 John Wiley & Sons, Ltd.  相似文献   
952.
The first examples of the catalytic asymmetric 1,3‐dipolar cycloaddition of azomethine ylides with acyclic activated 1,3‐dienes (and 1,3‐enynes) are described. Under copper catalysis, a selective cycloaddition at the terminal γ,δ‐C?C bond is observed. In addition, depending on the ligand used, either the exo or the endo adduct can be obtained with high selectivity. Under appropriate reaction conditions, the acyclic 1,6‐addition product is detected, suggesting a stepwise mechanism. The resulting C4‐alkenyl‐substituted pyrrolidines are suitable substrates for further access to polycyclic systems, as highlighted by the preparation of hexahydrochromeno[4,3‐b]pyrrole and the tetracyclic core of the alkaloid gracilamine.  相似文献   
953.
Metal‐based catalysts and initiators have played a pivotal role in the ring‐opening polymerization (ROP) of cyclic esters, thanks to their high activity and remarkable ability to control precisely the architectures of the resulting polyesters in terms of molar mass, dispersity, microstructure, or tacticity. Today, after two decades of extensive research, the field is slowly reaching maturity. However, several challenges remain, while original concepts have emerged around new types or new applications of catalysis. This Review is not intended to comprehensively cover all of these aspects. Rather, it provides a personal overview of the very recent progress achieved in some selected, important aspects of ROP catalysis—stereocontrol and switchable catalysis. Hence, the first part addresses the development of new metal‐based catalysts for the isoselective ROP of racemic lactide towards stereoblock copolymers, and the use of syndioselective ROP metal catalysts to control the monomer sequence in copolymers. A second part covers the development of ROP catalysts—primarily metal‐based catalysts, but also organocatalysts—that can be externally regulated by the use of chemical or photo stimuli to switch them between two states with different catalytic abilities. Current challenges and opportunities are highlighted.  相似文献   
954.
955.
956.
957.
958.
959.
960.
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