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   167941篇
  免费   1944篇
  国内免费   459篇
化学   88652篇
晶体学   2293篇
力学   7677篇
综合类   10篇
数学   17072篇
物理学   54640篇
  2020年   1260篇
  2019年   1319篇
  2018年   1676篇
  2017年   1617篇
  2016年   2789篇
  2015年   1804篇
  2014年   2835篇
  2013年   7032篇
  2012年   5855篇
  2011年   7388篇
  2010年   5069篇
  2009年   5038篇
  2008年   6626篇
  2007年   6666篇
  2006年   6308篇
  2005年   5741篇
  2004年   5066篇
  2003年   4401篇
  2002年   4400篇
  2001年   5096篇
  2000年   3867篇
  1999年   3027篇
  1998年   2542篇
  1997年   2509篇
  1996年   2247篇
  1995年   2098篇
  1994年   2092篇
  1993年   1874篇
  1992年   2150篇
  1991年   2250篇
  1990年   2035篇
  1989年   2026篇
  1988年   1935篇
  1987年   1829篇
  1986年   1756篇
  1985年   2268篇
  1984年   2366篇
  1983年   1935篇
  1982年   2106篇
  1981年   1993篇
  1980年   1908篇
  1979年   2049篇
  1978年   2216篇
  1977年   2089篇
  1976年   2140篇
  1975年   2041篇
  1974年   2094篇
  1973年   2072篇
  1972年   1364篇
  1971年   1216篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
31.
Human skin is exposed to visible light (VL; 400–700 nm) and long-wavelength ultraviolet A1 (UVA1) radiation (370–400 nm) after the application of organic broad-spectrum sunscreens. The biologic effects of these wavelengths have been demonstrated; however, a dose–response has not been investigated. Ten subjects with Fitzpatrick skin phototype IV-VI were enrolled. Subjects were irradiated with 2 light sources (80–480 J cm−2): one comprising VL with less than 0.5% UVA1 (VL+UVA1) and the other pure VL. Skin responses were evaluated for 2 weeks using clinical and spectroscopic assessments. 4-mm punch biopsies were obtained from nonirradiated skin and sites irradiated with 480 J cm−2 of VL+UVA1 and pure VL 24 h after irradiation. Clinical and spectroscopic assessments demonstrated a robust response at VL+UVA1 sites compared with pure VL. Histology findings demonstrated a statistically significant increase in the marker of inflammation (P < 0.05) and proliferation (P < 0.05) at the irradiated sites compared with nonirradiated control. Threshold doses of VL+UVA1 resulting in biologic responses were calculated. Results indicate that approximately 2 h of sun exposure, which equates to VL+UVA1 dose (~400 J cm−2), is capable of inducing inflammation, immediate erythema and delayed tanning. These findings reinforce the need of photoprotection beyond the UV range.  相似文献   
32.
33.
34.
35.
36.
37.
In the last decade, catalytic chemical vapor deposition (CVD) has been intensively explored for the growth of single-layer graphene (SLG). Despite the scattering of guidelines and procedures, variables such as the surface texture/chemistry of catalyst metal foils, carbon feedstock, and growth process parameters have been well-scrutinized. Still, questions remain on how best to standardize the growth procedure. The possible correlation of procedures between different CVD setups is an example. Here, two thermal CVD reactors were explored to grow graphene on Cu foil. The design of these setups was entirely distinct, one being a “showerhead” cold-wall type, whereas the other represented the popular “tubular” hot-wall type. Upon standardizing the Cu foil surface, it was possible to develop a procedure for cm2-scale SLG growth that differed only by the carrier gas flow rate used in the two reactors.  相似文献   
38.
39.
Molecular dynamics simulation was performed to study the formation of cluster structure, interfaces, and surfaces with different curvature radii in a perfect nanocrystal passed through by a nonlinear wave. It is shown that this process is a type of nanostructure self-organization in response to an external energy flux with subsequent development of a strong rotational field.  相似文献   
40.
Echabaane  M.  Hfaiedh  S.  Smiri  B.  Saidi  F.  Dridi  C. 《Journal of Solid State Electrochemistry》2021,25(6):1797-1806
Journal of Solid State Electrochemistry - The fast and sensitive detection of copper ions would be essential for water monitoring. Herein, we report a novel development of an impedimetric sensor...  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