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   86157篇
  免费   3069篇
  国内免费   1462篇
化学   55683篇
晶体学   543篇
力学   1646篇
综合类   11篇
数学   14895篇
物理学   17910篇
  2023年   574篇
  2022年   643篇
  2021年   1098篇
  2020年   1240篇
  2019年   1250篇
  2018年   1594篇
  2017年   1504篇
  2016年   2984篇
  2015年   2435篇
  2014年   2511篇
  2013年   5669篇
  2012年   5658篇
  2011年   5823篇
  2010年   3551篇
  2009年   3339篇
  2008年   4912篇
  2007年   4702篇
  2006年   4228篇
  2005年   4079篇
  2004年   3825篇
  2003年   3046篇
  2002年   2713篇
  2001年   1793篇
  2000年   1684篇
  1999年   1195篇
  1998年   962篇
  1997年   828篇
  1996年   1030篇
  1995年   756篇
  1994年   794篇
  1993年   822篇
  1992年   775篇
  1991年   598篇
  1990年   651篇
  1989年   527篇
  1988年   531篇
  1987年   485篇
  1986年   489篇
  1985年   719篇
  1984年   661篇
  1983年   501篇
  1982年   503篇
  1981年   514篇
  1980年   453篇
  1979年   409篇
  1978年   410篇
  1977年   379篇
  1976年   395篇
  1974年   353篇
  1973年   362篇
排序方式: 共有10000条查询结果,搜索用时 46 毫秒
11.
Riociguat is novel antihypertensive drug for treatment of pulmonary hypertension. As such, it is still being tested in many clinical and pharmacokinetic trials. Existing methods that determine serum riociguat and desmethylriociguat (DMR) are based solely on liquid chromatography with mass spectrometry. Therefore, we present a novel capillary electrophoresis with mass spectrometry method (CE-MS) for their determination in human serum as alternative method for ongoing trials. Complete resolution of both analytes was achieved by means of pH optimization of ammonium formate background electrolytes that are fully compatible with ESI/MS detection. Simple liquid-liquid extraction was used as sample pretreatment. The calibration dependence of the method was linear (in the range of 10–1000 ng/mL), with adequate accuracy (90.1–114.9%) and precision (13.4%). LOD and LOQ were arbitrarily set at 10 ng/mL for both analytes. Clinical applicability was validated using serum samples from patients treated with riociguat in pharmacokinetic study and the results corresponded with reference HPLC-MS/MS values. Capillary electrophoresis proved to be sensitive and selective tool for the analysis of riociguat and DMR.  相似文献   
12.
Lanthanide dinitrogen complexes, Ln(N2) x (x = 1-8), were investigated by Density Functional Theory computations using the B3LYP exchange-correlation functional in conjunction with quasirelativistic pseudopotentials for Ln. After a recent study on the lanthanum complexes (A. Kovács, Structural Chemistry 2018 , 29, 1825), the present study aimed to probe the changes upon variously filled 4f subshells of Ln on the structures, stabilities, and bonding properties in related complexes of Nd, Ho, and Lu. The bonding properties were assessed on the basis of natural atomic charges, Ln valence orbital populations, and analysis of bonding molecular orbitals.  相似文献   
13.
14.
15.
16.
17.
18.
19.
The aim of this work was to determine the parameters that have decisive roles in microwave-assisted reactions and to develop a model, using computational chemistry, to predict a priori the type of reactions that can be improved under microwaves. For this purpose, a computational study was carried out on a variety of reactions, which have been reported to be improved under microwave irradiation. This comprises six types of reactions. The outcomes obtained in this study indicate that the most influential parameters are activation energy, enthalpy, and the polarity of all the species that participate. In addition to this, in most cases, slower reacting systems observe a much greater improvement under microwave irradiation. Furthermore, for these reactions, the presence of a polar component in the reaction (solvent, reagent, susceptor, etc.) is necessary for strong coupling with the electromagnetic radiation. We also quantified that an activation energy of 20–30 kcal mol−1 and a polarity (μ) between 7–20 D of the species involved in the process is required to obtain significant improvements under microwave irradiation.  相似文献   
20.
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