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   870337篇
  免费   65545篇
  国内免费   35170篇
电工技术   51170篇
技术理论   117篇
综合类   59579篇
化学工业   140198篇
金属工艺   47871篇
机械仪表   55982篇
建筑科学   71792篇
矿业工程   29157篇
能源动力   23625篇
轻工业   55442篇
水利工程   16311篇
石油天然气   56453篇
武器工业   7241篇
无线电   93985篇
一般工业技术   93775篇
冶金工业   46160篇
原子能技术   8437篇
自动化技术   113757篇
  2024年   3186篇
  2023年   11452篇
  2022年   21789篇
  2021年   30641篇
  2020年   23580篇
  2019年   18839篇
  2018年   21995篇
  2017年   25275篇
  2016年   22801篇
  2015年   31831篇
  2014年   41339篇
  2013年   49856篇
  2012年   53759篇
  2011年   60189篇
  2010年   53180篇
  2009年   50663篇
  2008年   50113篇
  2007年   48437篇
  2006年   50033篇
  2005年   44461篇
  2004年   29271篇
  2003年   25913篇
  2002年   23910篇
  2001年   21703篇
  2000年   21942篇
  1999年   24813篇
  1998年   20008篇
  1997年   16807篇
  1996年   15792篇
  1995年   13131篇
  1994年   10899篇
  1993年   7603篇
  1992年   6112篇
  1991年   4666篇
  1990年   3602篇
  1989年   2938篇
  1988年   2404篇
  1987年   1566篇
  1986年   1203篇
  1985年   796篇
  1984年   590篇
  1983年   451篇
  1982年   407篇
  1981年   280篇
  1980年   280篇
  1979年   128篇
  1978年   53篇
  1977年   67篇
  1976年   91篇
  1975年   31篇
排序方式: 共有10000条查询结果,搜索用时 31 毫秒
1.
Feng  Wenran  Li  Zhen  Chen  Yingying  Chen  Jinyang  Lang  Haoze  Wan  Jianghong  Gao  Yan  Dong  Haitao 《Journal of Materials Science》2022,57(3):1881-1889
Journal of Materials Science - Although chalcogenide materials continue to generate considerable interest due to great potentials for various optoelectronic devices, annealing for a long time in...  相似文献   
2.
Due to the demand of miniaturization and integration for ceramic capacitors in electronic components market, TiO2-based ceramics with colossal permittivity has become a research hotspot in recent years. In this work, we report that Ag+/Nb5+ co-doped (Ag1/4Nb3/4)xTi1−xO2 (ANTOx) ceramics with colossal permittivity over a wide frequency and temperature range were successfully prepared by a traditional solid–state method. Notably, compositions of ANTO0.005 and ANTO0.01 respectively exhibit both low dielectric loss (0.040 and 0.050 at 1 kHz), high dielectric permittivity (9.2 × 103 and 1.6 × 104 at 1 kHz), and good thermal stability, which satisfy the requirements for the temperature range of application of X9R and X8R ceramic capacitors, respectively. The origin of the dielectric behavior was attributed to five dielectric relaxation phenomena, i.e., localized carriers' hopping, electron–pinned defect–dipoles, interfacial polarization, and oxygen vacancies ionization and diffusion, as suggested by dielectric temperature spectra and valence state analysis via XPS; wherein, electron-pinned defect–dipoles and internal barrier layer capacitance are believed to be the main causes for the giant dielectric permittivity in ANTOx ceramics.  相似文献   
3.
Zhao  Jiandong  Lei  Wei  Li  Zijian  Zhao  Dongfeng  Han  Mingmin  Hou  Xiaoqing 《Multimedia Tools and Applications》2022,81(4):4753-4780
Multimedia Tools and Applications - The crowding in bus is an important factor affecting passenger satisfaction and bus dispatching level. However, how to use video images to detect crowding...  相似文献   
4.
5.
6.
7.
In this paper, a novel hybrid structure of Pd doped ZnO/SnO2 heterojunction nanofibers with hexagonal ZnO columns was one step synthesized from electrospun precursor nanofibers. Due to the synergistic effect of hexagonal ZnO, SnO2 and Pd, the structure exhibited excellent hydrogen (H2) gas sensing properties. At low-temperature of 120 °C, the response (Ra/Rg) to 100 ppm H2 gas exceeded 160, the response/recovery time was only 20 s and 6 s respectively and the limit of detection was only 0.5 ppm. Meanwhile, it also had good selectivity for H2 gas and excellent linearity. In addition, the materials were characterized by XRD, FESEM, HRTEM, XPS, and the synthesis mechanism and gas sensing mechanism were proposed.  相似文献   
8.
Ca3Co4O9 is a promising p-type thermoelectric oxide material having intrinsically low thermal conductivity. With low cost and opportunities for automatic large scale production, thick film technologies offer considerable potential for a new generation of micro-sized thermoelectric coolers or generators. Here, based on the chemical composition optimized by traditional solid state reaction for bulk samples, we present a viable approach to modulating the electrical transport properties of screen-printed calcium cobaltite thick films through control of the microstructural evolution by optimized heat-treatment. XRD and TEM analysis confirmed the formation of high-quality calcium cobaltite grains. By creating 2.0 at% cobalt deficiency in Ca2.7Bi0.3Co4O9+δ, the pressureless sintered ceramics reached the highest power factor of 98.0 μWm?1 K-2 at 823 K, through enhancement of electrical conductivity by reduction of poorly conducting secondary phases. Subsequently, textured thick films of Ca2.7Bi0.3Co3.92O9+δ were efficiently tailored by controlling the sintering temperature and holding time. Optimized Ca2.7Bi0.3Co3.92O9+δ thick films sintered at 1203 K for 8 h exhibited the maximum power factor of 55.5 μWm?1 K-2 at 673 K through microstructure control.  相似文献   
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