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   1518010篇
  免费   33319篇
  国内免费   9218篇
化学   659616篇
晶体学   20380篇
力学   74681篇
综合类   138篇
数学   240650篇
物理学   367242篇
无线电   197840篇
  2021年   15077篇
  2020年   17706篇
  2019年   17800篇
  2018年   13959篇
  2016年   29981篇
  2015年   22229篇
  2014年   33163篇
  2013年   79033篇
  2012年   39821篇
  2011年   36038篇
  2010年   40071篇
  2009年   45028篇
  2008年   39615篇
  2007年   36463篇
  2006年   43150篇
  2005年   35508篇
  2004年   36555篇
  2003年   34606篇
  2002年   35632篇
  2001年   33695篇
  2000年   30666篇
  1999年   28625篇
  1998年   27370篇
  1997年   27216篇
  1996年   26911篇
  1995年   24702篇
  1994年   24139篇
  1993年   23502篇
  1992年   23033篇
  1991年   23267篇
  1990年   22045篇
  1989年   21635篇
  1988年   20842篇
  1987年   19620篇
  1986年   18405篇
  1985年   24950篇
  1984年   26180篇
  1983年   22155篇
  1982年   23586篇
  1981年   22805篇
  1980年   22069篇
  1979年   21876篇
  1978年   23181篇
  1977年   22733篇
  1976年   22314篇
  1975年   21035篇
  1974年   20603篇
  1973年   21184篇
  1972年   15361篇
  1967年   13156篇
排序方式: 共有10000条查询结果,搜索用时 8 毫秒
31.
32.
33.
34.
35.
Journal of Sol-Gel Science and Technology - In this paper, a simple method is presented for making a conductive and hydrophobic cotton fabric using a multi-walled carbon nanotube (MWCNT). The...  相似文献   
36.
37.
38.
39.
Large‐scale production of hydrogen from water‐alkali electrolyzers is impeded by the sluggish kinetics of hydrogen evolution reaction (HER) electrocatalysts. The hybridization of an acid‐active HER catalyst with a cocatalyst at the nanoscale helps boost HER kinetics in alkaline media. Here, it is demonstrated that 1T–MoS2 nanosheet edges (instead of basal planes) decorated by metal hydroxides form highly active edge 1T‐MoS 2 / edge Ni ( OH ) 2 heterostructures, which significantly enhance HER performance in alkaline media. Featured with rich edge 1T‐MoS 2 / edge Ni ( OH ) 2 sites, the fabricated 1T–MoS2 QS/Ni(OH)2 hybrid (quantum sized 1T–MoS2 sheets decorated with Ni(OH)2 via interface engineering) only requires overpotentials of 57 and 112 mV to drive HER current densities of 10 and 100 mA cm?2, respectively, and has a low Tafel slope of 30 mV dec?1 in 1 m KOH. So far, this is the best performance for MoS2‐based electrocatalysts and the 1T–MoS2 QS/Ni(OH)2 hybrid is among the best‐performing non‐Pt alkaline HER electrocatalysts known. The HER process is durable for 100 h at current densities up to 500 mA cm?2. This work not only provides an active, cost‐effective, and robust alkaline HER electrocatalyst, but also demonstrates a design strategy for preparing high‐performance catalysts based on edge‐rich 2D quantum sheets for other catalytic reactions.  相似文献   
40.
In this paper, we present an approach of dynamic mesh adaptation for simulating complex 3‐dimensional incompressible moving‐boundary flows by immersed boundary methods. Tetrahedral meshes are adapted by a hierarchical refining/coarsening algorithm. Regular refinement is accomplished by dividing 1 tetrahedron into 8 subcells, and irregular refinement is only for eliminating the hanging points. Merging the 8 subcells obtained by regular refinement, the mesh is coarsened. With hierarchical refining/coarsening, mesh adaptivity can be achieved by adjusting the mesh only 1 time for each adaptation period. The level difference between 2 neighboring cells never exceeds 1, and the geometrical quality of mesh does not degrade as the level of adaptive mesh increases. A predictor‐corrector scheme is introduced to eliminate the phase lag between adapted mesh and unsteady solution. The error caused by each solution transferring from the old mesh to the new adapted one is small because most of the nodes on the 2 meshes are coincident. An immersed boundary method named local domain‐free discretization is employed to solve the flow equations. Several numerical experiments have been conducted for 3‐dimensional incompressible moving‐boundary flows. By using the present approach, the number of mesh nodes is reduced greatly while the accuracy of solution can be preserved.  相似文献   
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