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   70239篇
  免费   5085篇
  国内免费   3040篇
电工技术   3870篇
技术理论   3篇
综合类   3972篇
化学工业   10985篇
金属工艺   4605篇
机械仪表   4325篇
建筑科学   4951篇
矿业工程   1817篇
能源动力   2180篇
轻工业   4348篇
水利工程   1120篇
石油天然气   4003篇
武器工业   525篇
无线电   7977篇
一般工业技术   10561篇
冶金工业   4234篇
原子能技术   758篇
自动化技术   8130篇
  2024年   208篇
  2023年   1039篇
  2022年   1711篇
  2021年   2511篇
  2020年   1993篇
  2019年   1676篇
  2018年   1939篇
  2017年   2109篇
  2016年   1916篇
  2015年   2473篇
  2014年   3237篇
  2013年   4161篇
  2012年   4117篇
  2011年   4807篇
  2010年   4088篇
  2009年   4084篇
  2008年   3923篇
  2007年   3693篇
  2006年   3734篇
  2005年   3051篇
  2004年   2370篇
  2003年   2037篇
  2002年   2000篇
  2001年   1805篇
  2000年   1679篇
  1999年   1897篇
  1998年   1963篇
  1997年   1584篇
  1996年   1406篇
  1995年   1113篇
  1994年   883篇
  1993年   656篇
  1992年   551篇
  1991年   401篇
  1990年   321篇
  1989年   259篇
  1988年   194篇
  1987年   128篇
  1986年   113篇
  1985年   80篇
  1984年   77篇
  1983年   64篇
  1982年   56篇
  1981年   35篇
  1980年   35篇
  1979年   24篇
  1978年   21篇
  1977年   17篇
  1974年   13篇
  1970年   11篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
11.
12.
13.
The design of highly stable and efficient porous materials is essential for developing breakthrough hydrocarbon separation methods based on physisorption to replace currently used energy-intensive distillation/absorption technologies. Efforts to develop advanced porous materials such as zeolites, coordination frameworks, and organic polymers have met with limited success. Here, a new class of ionic ultramicroporous polymers (IUPs) with high-density inorganic anions and narrowly distributed ultramicroporosity is reported, which are synthesized by a facile free-radical polymerization using branched and amphiphilic ionic compounds as reactive monomers. A covalent and ionic dual-crosslinking strategy is proposed to manipulate the pore structure of amorphous polymers at the ultramicroporous scale. The IUPs exhibit exceptional selectivity (286.1–474.4) for separating acetylene from ethylene along with high thermal and water stability, collaboratively demonstrated by gas adsorption isotherms and experimental breakthrough curves. Modeling studies unveil the specific binding sites for acetylene capture as well as the interconnected ultramicroporosity for size sieving. The porosity-engineering protocol used in this work can also be extended to the design of other ultramicroporous materials for the challenging separation of other key gas constituents.  相似文献   
14.
15.
16.
17.
The basic structural and functional unit of a living organism is a single cell. To understand the variability and to improve the biomedical requirement of a single cell, its analysis has become a key technique in biological and biomedical research. With a physical boundary of microchannels and microstructures, single cells are efficiently captured and analyzed, whereas electric forces sort and position single cells. Various microfluidic techniques have been exploited to manipulate single cells through hydrodynamic and electric forces. Digital microfluidics (DMF), the manipulation of individual droplets holding minute reagents and cells of interest by electric forces, has received more attention recently. Because of ease of fabrication, compactness and prospective automation, DMF has become a powerful approach for biological application. We review recent developments of various microfluidic chips for analysis of a single cell and for efficient genetic screening. In addition, perspectives to develop analysis of single cells based on DMF and emerging functionality with high throughput are discussed.  相似文献   
18.
19.
Semiconductor particles doped Al2O3 coatings were prepared by cathode plasma electrolytic deposition in Al(NO3)3 electrolyte dispersed with SiC micro- and nano-particles (average particle sizes of 0.5–1.7?µm and 40?nm respectively). The effects of the concentrations and particle sizes of the SiC on the microstructures and tribological performances of the composite coatings were studied. In comparison with the case of dispersing with SiC microparticles, the dispersion of SiC nanoparticles in the coatings was more uniform. When the concentration of SiC nanoparticles was 5?g/L, the surface roughness of the composite coating was reduced by 63%, compared with that of the unmodified coating. Friction results demonstrated that the addition of 5?g/L SiC nanoparticles reduced the friction coefficient from 0.60 to 0.38 and decreased the wear volume under dry friction. The current density and bath voltage were measured to analyze the effects of SiC particles on the deposition process. The results showed that the SiC particles could alter the electrical behavior of the coatings during the deposition process, weaken the bombardment of the plasma, and improve the structures of the coatings.  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