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   9748篇
  免费   875篇
  国内免费   24篇
电工技术   156篇
综合类   6篇
化学工业   2517篇
金属工艺   357篇
机械仪表   604篇
建筑科学   164篇
矿业工程   6篇
能源动力   544篇
轻工业   924篇
水利工程   26篇
石油天然气   9篇
武器工业   2篇
无线电   1592篇
一般工业技术   2343篇
冶金工业   373篇
原子能技术   135篇
自动化技术   889篇
  2024年   5篇
  2023年   111篇
  2022年   88篇
  2021年   320篇
  2020年   249篇
  2019年   269篇
  2018年   353篇
  2017年   350篇
  2016年   397篇
  2015年   337篇
  2014年   498篇
  2013年   622篇
  2012年   739篇
  2011年   926篇
  2010年   627篇
  2009年   665篇
  2008年   577篇
  2007年   473篇
  2006年   385篇
  2005年   346篇
  2004年   286篇
  2003年   283篇
  2002年   257篇
  2001年   185篇
  2000年   192篇
  1999年   163篇
  1998年   200篇
  1997年   151篇
  1996年   118篇
  1995年   96篇
  1994年   67篇
  1993年   55篇
  1992年   42篇
  1991年   24篇
  1990年   30篇
  1989年   30篇
  1988年   23篇
  1987年   21篇
  1986年   14篇
  1985年   15篇
  1984年   8篇
  1983年   9篇
  1982年   8篇
  1981年   7篇
  1979年   4篇
  1978年   2篇
  1977年   5篇
  1976年   7篇
  1975年   2篇
  1974年   2篇
排序方式: 共有10000条查询结果,搜索用时 31 毫秒
1.
2.
3.
Antimony triselenide (Sb2Se3) nanoflake-based nitrogen dioxide (NO2) sensors exhibit a progressive bifunctional gas-sensing performance, with a rapid alarm for hazardous highly concentrated gases, and an advanced memory-type function for low-concentration (<1 ppm) monitoring repeated under potentially fatal exposure. Rectangular and cuboid shaped Sb2Se3 nanoflakes, comprising van der Waals planes with large surface areas and covalent bond planes with small areas, can rapidly detect a wide range of NO2 gas concentrations from 0.1 to 100 ppm. These Sb2Se3 nanoflakes are found to be suitable for physisorption-based gas sensing owing to their anisotropic quasi-2D crystal structure with extremely enlarged van der Waals planes, where they are humidity-insensitive and consequently exhibit an extremely stable baseline current. The Sb2Se3 nanoflake sensor exhibits a room-temperature/low-voltage operation, which is noticeable owing to its low energy consumption and rapid response even under a NO2 gas flow of only 1 ppm. As a result, the Sb2Se3 nanoflake sensor is suitable for the development of a rapid alarm system. Furthermore, the persistent gas-sensing conductivity of the sensor with a slow decaying current can enable the development of a progressive memory-type sensor that retains the previous signal under irregular gas injection at low concentrations.  相似文献   
4.
5.
Evaluation of kinetic distribution and behaviors of nanoparticles in vivo provides crucial clues into their roles in living organisms. Extracellular vesicles are evolutionary conserved nanoparticles, known to play important biological functions in intercellular, inter‐species, and inter‐kingdom communication. In this study, the first kinetic analysis of the biodistribution of outer membrane vesicles (OMVs)—bacterial extracellular vesicles—with immune‐modulatory functions is performed. OMVs, injected intraperitoneally, spread to the whole mouse body and accumulate in the liver, lung, spleen, and kidney within 3 h of administration. As an early systemic inflammation response, increased levels of TNF‐α and IL‐6 are observed in serum and bronchoalveolar lavage fluid. In addition, the number of leukocytes and platelets in the blood is decreased. OMVs and cytokine concentrations, as well as body temperature are gradually decreased 6 h after OMV injection, in concomitance with the formation of eye exudates, and of an increase in ICAM‐1 levels in the lung. Following OMV elimination, most of the inflammatory signs are reverted, 12 h post‐injection. However, leukocytes in bronchoalveolar lavage fluid are increased as a late reaction. Taken together, these results suggest that OMVs are effective mediators of long distance communication in vivo.  相似文献   
6.
The mammalian cell cycle is important in controlling normal cell proliferation and the development of various diseases. Cell cycle checkpoints are well regulated by both activators and inhibitors to avoid cell growth disorder and cancerogenesis. Cyclin dependent kinase 20 (CDK20) and p21Cip1/Waf1 are widely recognized as key regulators of cell cycle checkpoints controlling cell proliferation/growth and involving in developing multiple cancers. Emerging evidence demonstrates that these two cell cycle regulators also play an essential role in promoting cell survival independent of the cell cycle, particularly in those cells with a limited capability of proliferation, such as cardiomyocytes. These findings bring new insights into understanding cytoprotection in these tissues. Here, we summarize the new progress of the studies on these two molecules in regulating cell cycle/growth, and their new roles in cell survival by inhibiting various cell death mechanisms. We also outline their potential implications in cancerogenesis and protection in heart diseases. This information renews the knowledge in molecular natures and cellular functions of these regulators, leading to a better understanding of the pathogenesis of the associated diseases and the discovery of new therapeutic strategies.  相似文献   
7.
8.
9.
10.
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