首页 | 官方网站   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   51607篇
  免费   4811篇
  国内免费   2382篇
工业技术   58800篇
  2024年   107篇
  2023年   855篇
  2022年   1222篇
  2021年   2035篇
  2020年   1533篇
  2019年   1441篇
  2018年   1471篇
  2017年   1616篇
  2016年   1490篇
  2015年   1938篇
  2014年   2603篇
  2013年   3001篇
  2012年   3276篇
  2011年   3563篇
  2010年   3199篇
  2009年   3085篇
  2008年   2845篇
  2007年   2814篇
  2006年   2982篇
  2005年   2485篇
  2004年   1785篇
  2003年   1709篇
  2002年   1812篇
  2001年   1494篇
  2000年   1345篇
  1999年   1355篇
  1998年   1042篇
  1997年   871篇
  1996年   831篇
  1995年   657篇
  1994年   552篇
  1993年   413篇
  1992年   331篇
  1991年   266篇
  1990年   212篇
  1989年   157篇
  1988年   132篇
  1987年   60篇
  1986年   52篇
  1985年   31篇
  1984年   25篇
  1983年   16篇
  1982年   28篇
  1981年   14篇
  1980年   8篇
  1979年   10篇
  1978年   7篇
  1976年   3篇
  1959年   6篇
  1951年   4篇
排序方式: 共有10000条查询结果,搜索用时 126 毫秒
1.
2.
A high-throughput (105.5 g/h) passive four-stage asymmetric oscillating feedback microreactor using chaotic mixing mechanism was developed to prepare aggregated Barium sulfate (BaSO4) particles of high primary nanoparticle size uniformity. Three-dimensional unsteady simulations showed that chaotic mixing could be induced by three unique secondary flows (i.e., vortex, recirculation, and oscillation), and the fluid oscillation mechanism was examined in detail. Simulations and Villermaux–Dushman experiments indicate that almost complete mixing down to molecular level can be achieved and the prepared BaSO4 nanoparticles were with narrow primary particle size distribution (PSD) having geometric standard deviation, σg, less than 1.43 when the total volumetric flow rate Qtotal was larger than 10 ml/min. By selecting Qtotal and reactant concentrations, average primary particle size can be controlled from 23 to 109 nm as determined by microscopy. An average size of 26 nm with narrow primary PSD (σg = 1.22) could be achieved at Qtotal of 160 ml/min.  相似文献   
3.
Hydrogen peroxide (H2O2) has been listed as one of the 100 most important chemicals in the world. However, huge amount of residual H2O2 is hard to timely decomposed into O2 and H2O under acidic condition, easily resulting in explosion hazard. Here, we reported a core–shell structure catalyst, that is graphene with Co N structure encapsulated Co nanoparticles. Co N graphene shell serves as the active site for the H2O2 decomposition, and Co core further enhance this decomposition. Benefiting from it, the H2O2 decomposition were close to 100% after 6 cycles without pH adjustment, which increased 6 orders of magnitude compared with no catalyst. At the same time, the O2 generation reached 99.67% in 2 h with little metal leaching, and ·OH has been greatly inhibited to only 0.08%. This work can cleanly remove H2O2 with little deep oxidation and protect the process of H2O2 utilization to achieve a safer world.  相似文献   
4.
5.
Lu  Huaiqian  Shi  Hui  Xie  Qilong  Li  Li  Xiao  Yong  Jia  Litao  Li  Debao 《Catalysis Letters》2022,152(11):3347-3353
Catalysis Letters - This study proposed a new facile route to rational creating oxygen-vacancy (Vo)-rich surface of Co3O4 nanosheets by acetic acid leaching. The acid leached Co3O4 nanosheets was...  相似文献   
6.
7.
8.
Compositional analysis of boron carbide on nanometer length scales to examine or interpret atomic mechanisms, for example, solid-state amorphization or grain-boundary segregation, is challenging. This work reviews advancements in high-resolution microanalysis to characterize multiple generations of boron carbide. First, ζ-factor microanalysis will be introduced as a powerful (scanning) transmission electron microscopy ((S)TEM) analytical framework to accurately characterize boron carbide. Three case studies involving the application of ζ-factor microanalysis will then be presented: (1) accurate stoichiometry determination of B-doped boron carbide using ζ-factor microanalysis and electron energy loss spectroscopy, (2) normalized quantification of silicon grain-boundary segregation in Si-doped boron carbide, and (3) calibration of a scanning electron microscope X-ray energy-dispersive spectroscopy (XEDS) system to measure compositional homogeneity differences of B/Si-doped arc-melted boron carbides in the as-melted and annealed conditions. Overall, the improvement and application of advanced analytical tools have helped better understand processing–microstructure–property relationships and successfully manufacture high-performance ceramics.  相似文献   
9.
Feng  Yingrui  Hu  Kang  Zhang  Min  Ding  Wei  Kong  Xiangkai  Sheng  Zhigao  Liu  Qiangchun 《Journal of Materials Science》2022,57(1):204-216
Journal of Materials Science - Rationally designing microwave absorption materials with highly efficient and tunable bandwidth is in great demand but remains a huge challenge. In this study,...  相似文献   
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-23

京公网安备 11010802026262号