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   5579篇
  免费   555篇
  国内免费   1395篇
化学   6285篇
晶体学   62篇
力学   58篇
综合类   59篇
数学   10篇
物理学   1055篇
  2024年   34篇
  2023年   100篇
  2022年   261篇
  2021年   248篇
  2020年   248篇
  2019年   233篇
  2018年   208篇
  2017年   208篇
  2016年   262篇
  2015年   230篇
  2014年   224篇
  2013年   481篇
  2012年   313篇
  2011年   320篇
  2010年   288篇
  2009年   346篇
  2008年   321篇
  2007年   352篇
  2006年   308篇
  2005年   321篇
  2004年   295篇
  2003年   248篇
  2002年   201篇
  2001年   169篇
  2000年   191篇
  1999年   175篇
  1998年   145篇
  1997年   126篇
  1996年   119篇
  1995年   102篇
  1994年   76篇
  1993年   83篇
  1992年   66篇
  1991年   42篇
  1990年   25篇
  1989年   15篇
  1988年   31篇
  1987年   16篇
  1986年   22篇
  1985年   21篇
  1984年   14篇
  1983年   5篇
  1982年   9篇
  1981年   11篇
  1980年   7篇
  1979年   7篇
  1977年   1篇
  1974年   1篇
排序方式: 共有7529条查询结果,搜索用时 0 毫秒
91.
示差脉冲伏安法测定黄酒中的酪氨酸   总被引:3,自引:0,他引:3  
本文研究了硼砂介质中镍与酪氨酸络合物的示差脉冲吸附伏安特性,实验了仪器参数对示差脉冲阴极吸附伏安法的影响,在最佳条件下络合物峰电流与酪氨酸浓度在2.0×10^-7~4.0×10^-5mol.L^-1范围内有线性关系,并以此法测定了黄酒中酪氨酸的含量。  相似文献   
92.
A novel rapid pressure swing adsorption (RPSA) process is described for production of 25–50% oxygen enriched air. The embodiment consists of one or more pairs of adsorbent layers contained in a single adsorption vessel. The layers undergo simultaneous pressurization-adsorption and simultaneous depressurization-purge steps. A total cycle time of 6–20 seconds is used. The process yields a very large specific oxygen production rate and a reasonable oxygen recovery for production of 20–50 mole% oxygen enriched gas.It is demonstrated by a simple mathematical model of isothermal single adsorbate pressure swing ad(de)sorption concept on a single adsorbent particle that the specific production rate of a PSA process cannot be indefinitely increased by reducing the cycle time of operation when adsorbate mass transfer resistances are finite.  相似文献   
93.
We have studied the adsorption of a copolymer of acrylonitrile and methacrylate of nonaethyleneglycol on a kidney dialysis membrane, which contains mostly nitrile groups. The kinetics study reveals at first a rapid increase of the adsorbance, followed by slow variations suggesting rearrangements at the interface. The isotherms do not present a true plateau at high concentration. The high adsorbance observed at low pH or high salt concentration could be related to the ability of polyethyleneoxide to form a complex with cations.  相似文献   
94.
Electronic structure calculations have been performed for flat graphite sheets and periodically distorted sheets with different values of deformation angle and hydrogen adsorption. These characteristics do not all behave monotonically with increasing deformation angle. At small deformation angles, the electrons pass from the atoms of terraces to those of edges, while at larger angles the reverse pattern is observed. The position of the Fermi level also varies nonmonotonically. The binding energy of hydrogen depends significantly on the adsorption site, and the difference can be doubled. Based on the ata obtained, it was concluded that a priori statements derived from the “general concepts” on the difference in the physicochemical properties of, for example, terrace and edge atoms on high-index facets are unreliable.  相似文献   
95.
The relationship between the current and the bulk concentration of complex ions during concurrent specific adsorption of an electrochemically active complex ion and a complexing ligand is considered. The effect of parameters that characterize adsorption of such ions and the structure of the electrical double layer on this relationship is analyzed.__________Translated from Elektrokhimiya, Vol. 41, No. 7, 2005, pp. 817–822.Original Russian Text Copyright © 2005 by Rogozhnikov.  相似文献   
96.
Samples of mesoporous silica, SBA-15, were prepared under hydrothermal conditions and Cu cations were incorporated into the framework by two different impregnation techniques. The corresponding adsorption/desorption isotherms of propylene, propane, and N2 were measured to evaluate the material's effectiveness in the separation of propane/propylene mixtures. Adsorption uptake of propylene increased and that of propane decreased in Cu containing samples as compared to the uptakes observed in undoped SBA-15 samples. It was demonstrated that the presence of Cu atoms in the adsorbent lattice led to a greater selectivity towards propylene. Furthermore, the highest level of Cu(I) were obtained in samples prepared by equilibrium impregnation, which in turn improved the olefin/paraffin uptake ratio. Under some working conditions, the amount of propylene adsorbed in selected samples is totally reversible while propane uptake was negligible.  相似文献   
97.
运用HREELS技术对甲醇在预吸附氯的Ag(111)表面上的吸附氧化行为进行了较细致的研究.结果证明Cl对甲醇氧化的影响缘于它在Ag(111)上的吸附所引起的表面结构的改变进而改变表面氧吸附物种,从而使得甲醇氧化的中间产物发生变化.实验结果说明甲醇在Ag(111)和低暴露量氯吸附的Ag(111)表面上的氧化行为是相似的,检测到了中间产物Ⅰ和Ⅲ;在高暴露量氯吸附的Ag(111)上甲醇氧化时则产生中间产物Ⅰ、Ⅳ和甲醛物种.对上述不同的甲醇氧化行为作了分析,并指出了以前人们在考察甲醇氧化机理时只考虑原子氧作用的片面性.  相似文献   
98.
聚丙烯颗粒在水溶液中与丙烯腈和二乙烯基苯反应,得接枝交联产物(Ⅰ)。Ⅰ被氨肟化再经成笼反应.得笼形聚偕氨肟树脂(Ⅱ)。笼内仅吸留易于除去的溶剂丙酮。若Ⅰ成笼后再氨肟化,所得吸收剂(Ⅲ)将吸留大量的羟胺,它缓慢地释放出来,干扰吸收剂对酸、碱离子或分子吸附容量的测定。Ⅱ对一些离子例如Hg2+和MnO4-的吸附能力与Ⅲ不同,被认为是两者的网络结构不同所致。  相似文献   
99.
100.
The change in semiconductive properties of β-apo-8′-carotenal, astacene and methyl bixin on adsorption of various vapours on the crystallite surfaces has been studied at a constant sample temperature. The adsorption of vapours enhances the semiconductivity of the polyenes appreciably. This enhancement depends on the chemical nature and also on the pressure of the adsorbed vapour. The adsorption and desorption kinetics follow the modified Roginsky-Zeldovich relation. A two stage desorption process, the first stage of which gives a Lennard-Jones potential energy curve and is followed by a rate-determining transition over a potential energy barrier to the second stage of adsorption forming weakly bound complexes between the vapour molecules and the polyene crystallites, can explain satisfactorily the experimentally observed kinetic data.  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