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   1319746篇
  免费   37797篇
  国内免费   14124篇
化学   658944篇
晶体学   20367篇
力学   77234篇
综合类   604篇
数学   243920篇
物理学   370598篇
  2021年   15420篇
  2020年   17658篇
  2019年   17993篇
  2018年   12455篇
  2016年   29165篇
  2015年   22851篇
  2014年   33194篇
  2013年   77919篇
  2012年   39022篇
  2011年   33085篇
  2010年   37919篇
  2009年   40884篇
  2008年   31848篇
  2007年   26290篇
  2006年   34560篇
  2005年   25398篇
  2004年   27485篇
  2003年   26353篇
  2002年   27772篇
  2001年   25376篇
  2000年   23315篇
  1999年   22609篇
  1998年   21661篇
  1997年   21559篇
  1996年   21881篇
  1995年   19913篇
  1994年   19270篇
  1993年   18687篇
  1992年   18104篇
  1991年   18362篇
  1990年   17520篇
  1989年   17554篇
  1988年   16979篇
  1987年   17028篇
  1986年   15869篇
  1985年   22329篇
  1984年   23618篇
  1983年   19874篇
  1982年   21590篇
  1981年   20811篇
  1980年   20120篇
  1979年   20110篇
  1978年   21526篇
  1977年   21073篇
  1976年   20727篇
  1975年   19400篇
  1974年   19023篇
  1973年   19506篇
  1972年   14024篇
  1967年   12273篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
81.
82.
83.
84.
85.
Silver nanoparticles (NPs) ranging in size from 40 to 100 nm were prepared in high yield by using an improved seed‐mediated method. The homogeneous Ag NPs were used as building blocks for 2D assembled Ag NP arrays by using an oil/water interface. A close‐packed 2D array of Ag NPs was fabricated by using packing molecules (3‐mercaptopropyltrimethoxysilane) to control the interparticle spacing. The homogeneous 2D Ag NP array exhibited a strong quadrupolar cooperative plasmon mode resonance and a dipolar red‐shift relative to individual Ag NPs suspended in solution. A well‐arranged 2D Ag NP array was embedded in polydimethylsiloxane film and, with biaxial stretching to control the interparticle distance, concomitant variations of the quadrupolar and dipolar couplings were observed. As the interparticle distance increased, the intensity of the quadrupolar cooperative plasmon mode resonance decreased and dipolar coupling completely disappeared. The local electric field of the 2D Ag NP array was calculated by using finite difference time domain simulation and qualitatively showed agreement with the experimental measurements.  相似文献   
86.
87.
88.
89.
We consider conformal gravity as a gauge natural theory. We study its conservation laws and superpotentials. We also consider the Mannheim and Kazanas spherically symmetric vacuum solution and discuss conserved quantities associated to conformal and diffeomorphism symmetries.  相似文献   
90.
The microscopic Polymer Reference Interaction Site Model theory is employed to study, for the first time, the effective interactions, spatial organization, and miscibility of dilute spherical nanoparticles in non‐microphase separating, chemically heterogeneous, compositionally symmetric AB multiblock copolymer melts of varying monomer sequence or architecture. The dependence of nanoparticle wettability on copolymer sequence and chemistry results in interparticle potentials‐of‐mean force that are qualitatively different from homopolymers. An important prediction is the ability to improve nanoparticle dispersion via judicious choice of block length and monomer adsorption‐strengths which control both local surface segregation and chain connectivity induced packing constraints and frustration. The degree of dispersion also depends strongly on nanoparticle diameter relative to the block contour length. Small particles in copolymers with longer block lengths experience a more homopolymer‐like environment which renders them relatively insensitive to copolymer chemical heterogeneity and hinders dispersion. Larger particles (sufficiently larger than the monomer diameter) in copolymers of relatively short block lengths provide better dispersion than either a homopolymer or random copolymer. The theory also predicts a novel widening of the miscibility window for large particles upon increasing the overall molecular weight of copolymers composed of relatively long blocks. The influence of a positive chi‐parameter in the pure copolymer melt is briefly studied. Quantitative application to fullerenes in specific copolymers of experimental interest is performed, and miscibility predictions are made. © 2015 Wiley Periodicals, Inc. J. Polym. Sci., Part B: Polym. Phys. 2015 , 53, 1098–1111  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