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   1281962篇
  免费   31980篇
  国内免费   9008篇
化学   641118篇
晶体学   20039篇
力学   73627篇
综合类   101篇
数学   238257篇
物理学   349808篇
  2021年   13537篇
  2020年   16679篇
  2019年   17691篇
  2016年   27955篇
  2015年   21617篇
  2014年   31488篇
  2013年   75683篇
  2012年   35099篇
  2011年   28887篇
  2010年   35798篇
  2009年   38853篇
  2008年   29690篇
  2007年   23973篇
  2006年   32420篇
  2005年   23871篇
  2004年   26366篇
  2003年   25650篇
  2002年   27636篇
  2001年   24943篇
  2000年   22880篇
  1999年   21469篇
  1998年   20551篇
  1997年   20610篇
  1996年   20883篇
  1995年   19026篇
  1994年   18428篇
  1993年   17970篇
  1992年   17462篇
  1991年   17805篇
  1990年   17034篇
  1989年   17149篇
  1988年   16683篇
  1987年   16737篇
  1986年   15619篇
  1985年   22098篇
  1984年   23492篇
  1983年   19755篇
  1982年   21508篇
  1981年   20760篇
  1980年   20094篇
  1979年   20091篇
  1978年   21515篇
  1977年   21060篇
  1976年   20720篇
  1975年   19385篇
  1974年   19015篇
  1973年   19496篇
  1972年   14014篇
  1968年   11890篇
  1967年   12270篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
71.
A generic strategy based on the use of CdSe/ZnS Quantum Dots (QDs) as elemental labels for protein quantification, using immunoassays with elemental mass spectrometry (ICP-MS), detection is presented. In this strategy, streptavidin modified QDs (QDs-SA) are bioconjugated to a biotinylated secondary antibody (b-Ab2). After a multi-technique characterization of the synthesized generic platform (QDs-SA-b-Ab2) it was applied to the sequential quantification of five proteins (transferrin, complement C3, apolipoprotein A1, transthyretin and apolipoprotein A4) at different concentration levels in human serum samples. It is shown how this generic strategy does only require the appropriate unlabeled primary antibody for each protein to be detected. Therefore, it introduces a way out to the need for the cumbersome and specific bioconjugation of the QDs to the corresponding specific recognition antibody for every target analyte (protein). Results obtained were validated with those obtained using UV–vis spectrophotometry and commercial ELISA Kits.  相似文献   
72.
73.
74.
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   
75.
76.
77.
78.
79.
80.
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   
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