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   305454篇
  免费   4992篇
  国内免费   833篇
化学   162068篇
晶体学   4337篇
力学   12697篇
综合类   2篇
数学   39087篇
物理学   93088篇
  2021年   2318篇
  2020年   2820篇
  2019年   3038篇
  2018年   4248篇
  2017年   3978篇
  2016年   6406篇
  2015年   4546篇
  2014年   6083篇
  2013年   14741篇
  2012年   12393篇
  2011年   14196篇
  2010年   9651篇
  2009年   9068篇
  2008年   12792篇
  2007年   12678篇
  2006年   11779篇
  2005年   10930篇
  2004年   9848篇
  2003年   8497篇
  2002年   8134篇
  2001年   8326篇
  2000年   6527篇
  1999年   5043篇
  1998年   4227篇
  1997年   4024篇
  1996年   4084篇
  1995年   3552篇
  1994年   3586篇
  1993年   3662篇
  1992年   3812篇
  1991年   3869篇
  1990年   3650篇
  1989年   3527篇
  1988年   3534篇
  1987年   3387篇
  1986年   3201篇
  1985年   4421篇
  1984年   4562篇
  1983年   3628篇
  1982年   3912篇
  1981年   3817篇
  1980年   3651篇
  1979年   3744篇
  1978年   3846篇
  1977年   3723篇
  1976年   3876篇
  1975年   3495篇
  1974年   3534篇
  1973年   3580篇
  1972年   2440篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
51.
52.
Enantiopure β‐amino acids represent interesting scaffolds for peptidomimetics, foldamers and bioactive compounds. However, the synthesis of highly substituted analogues is still a major challenge. Herein, we describe the spontaneous rearrangement of 4‐carboxy‐2‐oxoazepane α,α‐amino acids to lead to 2′‐oxopiperidine‐containing β2,3,3‐amino acids, upon basic or acid hydrolysis of the 2‐oxoazepane α,α‐amino acid ester. Under acidic conditions, a totally stereoselective synthetic route has been developed. The reordering process involved the spontaneous breakdown of an amide bond, which typically requires strong conditions, and the formation of a new bond leading to the six‐membered heterocycle. A quantum mechanical study was carried out to obtain insight into the remarkable ease of this rearrangement, which occurs at room temperature, either in solution or upon storage of the 4‐carboxylic acid substituted 2‐oxoazepane derivatives. This theoretical study suggests that the rearrangement process occurs through a concerted mechanism, in which the energy of the transition states can be lowered by the participation of a catalytic water molecule. Interestingly, it also suggested a role for the carboxylic acid at position 4 of the 2‐oxoazepane ring, which facilitates this rearrangement, participating directly in the intramolecular catalysis.  相似文献   
53.
54.
This study was aimed at the development of a conductometric biosensor based on acetylcholinesterase considering the feasibility of its application for the inhibitory analysis of various toxicants. In this paper, the optimum conditions for enzyme immobilization on the transducer surface are selected as well as the optimum concentration of substrate for inhibitory analysis. Sensitivity of the developed biosensor to different classes of toxic compounds (organophosphorus pesticides, heavy metal ions, surfactants, aflatoxin, glycoalkaloids) was tested. It is shown that the developed biosensor can be successfully used for the analysis of pesticides and mycotoxins, as well as for determination of total toxicity of the samples. A new method of biosensor analysis of toxic substances of different classes in complex multicomponent aqueous samples is proposed.  相似文献   
55.
56.
57.
A tertiary hydroxy group α to a carboxyl moiety comprises a key structural motif in many bioactive substances. With the herein presented metal‐free rearrangement of imides triggered by hypervalent λ3‐iodane, an easy and selective way to gain access to such a compound class, namely α,α‐disubstituted‐α‐hydroxy carboxylamides, was established. Their additional methylene bromide side chain constitutes a useful handle for rapid diversification, as demonstrated by a series of further functionalizations. Moreover, the in situ formation of an iodine(III) species under the reaction conditions was proven. Our findings clearly corroborate that hypervalent λ3‐benziodoxolones are involved in these organocatalytic reactions.  相似文献   
58.
59.
60.
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