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   362120篇
  免费   3977篇
  国内免费   1448篇
工业技术   367545篇
  2021年   2253篇
  2019年   2196篇
  2018年   11491篇
  2017年   12022篇
  2016年   8373篇
  2015年   3103篇
  2014年   4697篇
  2013年   12713篇
  2012年   9853篇
  2011年   17966篇
  2010年   15354篇
  2009年   15399篇
  2008年   15663篇
  2007年   17547篇
  2006年   8393篇
  2005年   11129篇
  2004年   9463篇
  2003年   8998篇
  2002年   7895篇
  2001年   7475篇
  2000年   7102篇
  1999年   7293篇
  1998年   18087篇
  1997年   12713篇
  1996年   9440篇
  1995年   7415篇
  1994年   6491篇
  1993年   6571篇
  1992年   4658篇
  1991年   4452篇
  1990年   4346篇
  1989年   4280篇
  1988年   3961篇
  1987年   3564篇
  1986年   3560篇
  1985年   3910篇
  1984年   3607篇
  1983年   3352篇
  1982年   3158篇
  1981年   3195篇
  1980年   3167篇
  1979年   2944篇
  1978年   2970篇
  1977年   3366篇
  1976年   4435篇
  1975年   2508篇
  1974年   2456篇
  1973年   2478篇
  1972年   2087篇
  1971年   1829篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
71.
72.
Magnetic MnFe2O4 nanopowders were synthesized by an original solvothermal method in the absence and in the presence of tetra-n-butylammonium bromide (TBAB) and Tween 80 (TW) as surfactants. Manganese ferrite/polyaniline (PANI) hybrid materials were synthesized by in situ polymerization of aniline on the surface of MnFe2O4 using ammonium persulfate as oxidant. The purpose of the study was to investigate the influence of the two surfactants on the properties of the MnFe2O4 powders and of their composites with PANI. The specific surface area, the cumulative surface area of pores and the cumulative volume of pores are influenced by the nature of surfactant in case of MnFe2O4 powders and are higher by comparison to those of the MnFe2O4/PANI hybrid materials. The values of saturation magnetization in case of MnFe2O4 powders are higher than those of the hybrid materials and are not influenced by the surfactant nature. These features revealed that MnFe2O4 powders can be efficiently used as adsorbents for the purification of wastewaters. The values of the electrical conductivity of the composites exhibit a significant increase in comparison to the MnFe2O4 powders and depend on the surfactant nature. The highest value of electrical conductivity was achieved by the composite obtained using Tween 80 as surfactant (σDC = 54.5·10?5S?m?1) which was close to that of PANI (σDC = 61.2·10?5 S?m?1). The fact that the magnetic and electric properties of the synthesized MnFe2O4/PANI composites can be changed by design, demonstrate the high potential of these materials to be used in magneto-electric applications.  相似文献   
73.
74.
75.
76.
77.
78.
79.
An automated system for integrated electrophysical and optical studies of semiconductor nanoheterostructures, which operates in a wide temperature range from 15 to 475 K, is designed. The setup is intended to measure the temperature and frequency admittance and electroluminescence spectra of light-emitting diode and laser chips formed on substrates of diameter up to 50.2 mm, and the distribution of parameters over the wafer. The setup includes the closed-cycle helium cryogenic station, LCR meter, and temperature controller. The characterization results of nanoheterostructures with InGaN/GaN multiple quantum wells, which are used for creating highly efficient white and blue light-emitting diodes, are presented.  相似文献   
80.
The influence of the thermal cycling conditions on the thermal-cycling creep of a TN-1 alloy and the related irreversible deformations is studied. The conditions under which an anomalous increase in the irreversible deformations begins are determined. The structural mechanism of the irreversible deformations of an equiatomic alloy is shown to be analogous to the structural mechanism of metal creep at high temperatures: it predominantly has a dislocation character. It is proposed to use the effect of anomalous increase in the deformation of materials with reversible martensitic transformations for forming parts made of these materials at low temperatures.  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-23

京公网安备 11010802026262号