全文获取类型
收费全文 | 3864篇 |
免费 | 499篇 |
国内免费 | 679篇 |
专业分类
化学 | 4442篇 |
晶体学 | 16篇 |
力学 | 3篇 |
综合类 | 15篇 |
数学 | 2篇 |
物理学 | 564篇 |
出版年
2024年 | 4篇 |
2023年 | 54篇 |
2022年 | 78篇 |
2021年 | 151篇 |
2020年 | 216篇 |
2019年 | 159篇 |
2018年 | 154篇 |
2017年 | 155篇 |
2016年 | 211篇 |
2015年 | 179篇 |
2014年 | 194篇 |
2013年 | 281篇 |
2012年 | 238篇 |
2011年 | 231篇 |
2010年 | 167篇 |
2009年 | 245篇 |
2008年 | 299篇 |
2007年 | 275篇 |
2006年 | 264篇 |
2005年 | 229篇 |
2004年 | 191篇 |
2003年 | 167篇 |
2002年 | 153篇 |
2001年 | 122篇 |
2000年 | 98篇 |
1999年 | 80篇 |
1998年 | 74篇 |
1997年 | 62篇 |
1996年 | 53篇 |
1995年 | 46篇 |
1994年 | 51篇 |
1993年 | 41篇 |
1992年 | 45篇 |
1991年 | 16篇 |
1990年 | 13篇 |
1989年 | 8篇 |
1988年 | 8篇 |
1987年 | 3篇 |
1986年 | 3篇 |
1985年 | 5篇 |
1984年 | 8篇 |
1983年 | 2篇 |
1982年 | 2篇 |
1980年 | 1篇 |
1978年 | 3篇 |
1977年 | 1篇 |
1976年 | 1篇 |
1967年 | 1篇 |
排序方式: 共有5042条查询结果,搜索用时 15 毫秒
41.
Dr. Arianna Melillo Dr. Antonio Franconetti Prof. Dr. Mercedes Alvaro Prof. Dr. Belen Ferrer Prof. Hermenegildo Garcia 《Chemistry (Weinheim an der Bergstrasse, Germany)》2023,29(1):e202202625
Hydrogenation of multiple bonds are among the most general and important organic reactions. Typical heterogeneous catalysts are based on transition metal nanoparticles, including noble metals. Data are presented here showing that metal nodes of MIL-101(Cr) and UiO-66 in the absence of occluded metal nanoparticles can promote hydrogenation of polarized X=Y double bonds of nitro and carbonyl groups. The catalytic activity is a function of the composition of the metal node and the organic linker. It is proposed that the reaction mechanism is based on the operation of frustrated Lewis acid/base pairs. 相似文献
42.
Siqi Zhang Fuhua Huang Dr. Xugeng Guo Ye Xiong Yafei Huang Prof. Dr. Hans Ågren Prof. Dr. Li Wang Prof. Dr. Jinglai Zhang 《Angewandte Chemie (International ed. in English)》2023,62(23):e202302753
We report a new strategy to fabricate a multifunctional composite photoanode containing TiO2 hollow spheres (TiO2-HSs), Au nanoparticles (AuNPs) and novel NaYF4 : Yb,Er@NaLuF4 : Eu@SiO2 upconversion nanoparticles (UCNPs). The AuNPs are grown on the photoanode film including TiO2-HSs and UCNPs by a simple in situ plasmonic treatment. As a result, an impressive power conversion efficiency of 14.13 % is obtained, which is a record for N719 dye-based dye-sensitized solar cells, demonstrating great potential for the solar cells toward commercialization. This obvious enhancement is ascribed to a collaborative mechanism of the TiO2-HSs exhibiting excellent light-scattering ability, of the UCNPs converting near-infrared photons into visible photons and of the AuNPs presenting outstanding surface plasmon resonance effect. Notably, a steady-state experiment further reveals that the champion cell exhibits 95.33 % retainment in efficiency even after 180 h of measurements, showing good device stability. 相似文献
43.
Dr. Peng Dong Tingna Shao Jinlian Li Xiaohui Zhang Prof. Yu Zhao Prof. Xinhong Zhao Prof. Guixian Li 《欧洲无机化学杂志》2023,26(33):e202300483
Cyclohexane epoxide, which contains highly active epoxy groups, plays a crucial role as an intermediate in the preparation of fine chemicals. However, controlling the epoxidation pathway of cyclohexene is challenging due to issues such as the allylic oxidation of cyclohexene and the ring opening of cyclohexane epoxide during the cyclohexene epoxidation process to form cyclohexane oxide. This review focuses on the structure-activity relationships and synthesis processes of various heterogeneous transition metal-based catalysts used in cyclohexene epoxidation reactions, including molybdenum(Mo)-based, tungsten(W)-based, vanadium(V)-based, titanium(Ti)-based, cobalt(Co)-based, and other catalysts. Initially, the mechanism of cyclohexene epoxidation by transition metal-based catalysts is examined from the perspective of catalytic active centers. Subsequently, the current research of cyclohexene epoxidation catalysts is summarized based on the perspective of catalyst support. Additionally, the differences between alkyl hydroperoxide, hydrogen peroxide (H2O2), and oxygen (O2) as oxidants are analyzed. Finally, the main factors influencing catalytic performance are summarized, and reasonable suggestions for catalyst design are proposed. This work provides scientific support for the advancement of the olefin epoxidation industry. 相似文献
44.
This study was to investigate the optimal additions of the cellulose decomposition reaction to obtain the most yield of 5-HMF and other furan derivatives in various biphasic systems with FeCl_3-CuCl_2 mixed catalysts,and explore its depolymerization kinetics.A series of controllable reactions have been performed under mild environmentally friendly atmosphere.The experiment results showed that49.13 wt% of 5-HMF was the maximum production along with 2.98 wt% other furan derivatives catalyzed by mixed Lewis acid FeCl_3-CuCl_2 under the two phases which included high concentration NaCl aqueous phase and n-butanol organic phase at 190℃ for 45 min.The conclusion suggested that two-phase systems benefited the yield of 5-HMF,furan derivatives via extracting the target products from reaction phase to organic phase to avoid rehydration of 5-HMF.The kinetic calculation revealed the conversion with mixed catalysts had lower reaction apparent activation energy(21.65 kJ/mol,190-230℃) and the reaction rate was faster than that with acid-based catalysts.Based on experiment exploration,the probable mechanism of cellulose decomposition with FeCl_3-CuCl_2 was proposed. 相似文献
45.
Tao Wang Juan Du Yong Sun Xing Tang Zuo-Jun Wei Xianhai Zeng Shi-Jie Liu Lu Lin 《中国化学快报》2021,32(3):1186-1190
Catalytic transfer hydroge nation(CTH) of furfural(FF) to furfu ryl alcohol(FFA) has received great intere st in recent years.He rein,Cu-Cs bimetallic supported catalyst,CuCs(2)-MCM,was developed for the CTH of FF to FFA using formic as hydrogen donor.CuCs(2)-MCM achieved a 99.6% FFA yield at an optimized reaction conditions of 170℃,1 h.Cu species in CuCs(2)-MCM had dual functions in catalytically decomposing formic acid to generate hydrogen and hydrogenating FF to FFA.The doping of Cs made the size of Cu particles smaller and improved the dispersion of the Cu active sites.Impo rtantly,the Cs species played a favorable role in enhancing the hydrogenation activity as a promoter by adjusting the surface acidity of Cu species to an appropriate level.Correlation analysis showed that surface acidity is the primary factor to affect the catalytic activity of CuCs(2)-MCM. 相似文献
46.
甲醛是室内常见的挥发性有机污染物之一,长期接触会严重危害人体健康。负载型廉价金属催化剂在甲醛去除和实际应用方面表现出优异性能,引起研究人员的广泛关注。本文阐述了低温条件下负载型廉价金属催化剂在甲醛热催化氧化、光催化氧化和等离子协同催化氧化方面的研究进展,介绍了甲醛低温催化的影响因素,并讨论了反应机理。反应条件、载体类型和制备方式是影响甲醛低温催化活性的重要因素。虽然负载型廉价金属催化剂在甲醛光催化氧化和热催化氧化方面均表现出良好性能,但仍须进一步探究提升其在可见光和室温下的催化活性。对于甲醛等离子协同催化氧化,降低反应过程所产生的副产物和能耗仍是研究重点。此外,本文还对负载型廉价金属催化剂在甲醛催化应用中的发展方向进行了展望。 相似文献
47.
Qiang Liu Hubert Meissel Ilia Sadykov Simon Jones Nick Van Dijk Przemyslaw Rzepka Luca Artiglia Marco Ranocchiari Jeroen A. van Bokhoven 《Helvetica chimica acta》2021,104(7):e2100082
Stability studies on supported metal nanoparticles are essential for gaining insight into the design and optimization of high-performance materials. In this work, the dissolutions of Pt-based catalysts in HBr/Br2 mixture of various concentration regimes were studied and correlated with material structural properties. The dissolution of metal nanoparticles was enhanced by adding Br2 to the HBr solution. Comparing with commercial Pt/C catalyst, the well-alloyed PtIr/C catalyst was observed to exhibit high resistance towards dissolution. In addition, regulating the accessibility of the metal sites to dissolution-inducing species contributed to the marked stability of the nanoparticles in HBr/Br2 solutions, as shown for the surface-modified PtIr/C catalysts with organic diamine molecules. 相似文献
48.
The development of a user-friendly reusable laboratory equipment for the delivery of sensitive reagents and catalysts is described. The tightness of these Teflon Magnetic Stirring Capsules (TMSC) is ensured by the magnetic force and release of the reagent inside the solution is triggered by adjusting the stirring rate so that the centrifuge force exceeds the magnetic force. They can be loaded with several chemicals at the same time and do operate across a broad range of temperatures. The inertness of Teflon facilitates reaction purification. 相似文献
49.
芳烃是重要的化工原料,目前主要通过石油催化裂化和催化重整制得.随着石油资源的消耗以及芳烃的需求日益增长,开发非石油路线制备芳烃势在必行.因此,从煤、天然气和生物质出发,经合成气一步制芳烃(STA)广受关注.将合成气制甲醇的金属催化剂和甲醇制芳烃的分子筛催化剂复合,可以制备双功能催化剂,用于合成气反应可高选择性得到芳烃.然而,关于此过程中芳烃的生成机理仍有争论.目前人们认为,生成芳烃的中间体主要分甲醇和其他含氧物种(乙烯酮,醛类)两种.本文以ZnCrAlOx和H-ZSM-5为模型催化剂,进行合成气制芳烃、甲醇制芳烃和丙烯制芳烃反应,确定了传统的甲醇制芳烃路径不是合成气制芳烃中的主要途径,并通过原位傅里叶变换红外光谱和气相色质谱解释了STA反应中两种活性组分距离越近,芳烃选择性越高的原因,从而提出了在合成气制芳烃过程中芳烃的生成机理.通过比较双功能催化剂上合成气、甲醇以及丙烯的反应性能发现,在甲醇和丙烯转化时,其芳烃选择性远小于合成气转化时的,由此可认为,在合成气制芳烃的路径主要不经由传统的甲醇制芳烃,而是通过烯烃聚合脱氢生成芳烃.红外表征和共进料实验表明,合成气可以在金属催化剂表面生成甲酸盐物种,它可与烯烃反应生成羧酸盐物种,再迁移到分子筛上反应生成芳烃,且羧酸盐物种在分子筛上的芳构化能力要高于丙烯;即使在氢气氛围下,当丙烯的芳构化能力受到氢气极大抑制时,羧酸盐物种仍能高选择性生成芳烃.本文制备了一系列金属催化剂和分子筛物理接近距离不同的双功能催化剂,研究了合成气在双功能催化剂上制芳烃时,金属催化剂和分子筛二者组分的距离对芳烃选择性的影响.随着二者接近距离的增加,芳烃选择性急剧增加;通过GC-MS分析合成气转化时的停留物种,发现随着二者接近距离的增加,羧酸盐物种和甲基环戊烯酮的量明显增加,因此,羧酸盐物种和甲基环戊烯酮物种在生成芳烃中起到了重要的作用.综上所述,我们提出了STA中一条新的芳烃生成路径,并证明了羧酸盐物种是其中重要的中间物种.它经由金属表面的甲酸盐物种和烯烃反应生成,随后迁移到分子筛上生成甲基环戊烯酮物种,再脱水生成芳烃. 相似文献
50.
单原子催化剂凭借其超高的原子利用率及在某些反应中表现出的出色催化效果,被认为是最有前途的电催化剂之一,引起了研究人员的极大热情和兴趣.制备高金属含量的单原子催化剂是基础研究和实际应用的前提和关键.然而,由于原子表面自由能随着尺寸的减小而急剧增加,在制备和催化过程中,单原子催化剂的金属原子很容易聚集成团簇甚至颗粒,因此如何制备高负载量的单原子催化剂仍然是一个不小的挑战.在众多单原子催化剂中,非贵金属中铁基单原子被认为是燃料电池中的Pt催化剂的有效替代品.在燃料电池的核心反应–电化学氧还原反应中,Fe-Nx被证明是铁单原子催化剂中的主要活性中心.因此,为了获得更好的氧还原性能,提高铁单原子催化剂中Fe-Nx的含量就显得非常关键.前期已报道了一些关于制备高Fe含量的铁单原子催化剂材料的策略,例如空间限域策略和配位合成策略.其中卟啉和葡萄糖作为配位剂,双氰胺和三聚氰胺可热解成氮掺杂碳材料以捕获金属原子,形成M-Nx.同时,具有高比表面积的富氧碳载体可以通过掺杂氮来作为固定金属原子的位点.我们开发了一种简单直接的方法,通过碳辅助金属配合物热解法制备高金属含量的Fe-N4单原子催化剂,即在最佳碳化温度800℃、三聚氰胺存在下对氮掺杂多孔碳辅助分散铁邻苯二胺配合物进行热解.在该方法中,氮掺杂多孔碳是一种具有丰富氮缺陷,高表面积(1267 m2?g–1)和良好分散性的多孔生物质碳材料.邻苯二胺作为含两个氨基的二齿配体,可以很容易地与过渡金属配位,形成稳定的平面四配位络合物.此外,由于在高温条件下过渡金属的催化作用,邻苯二胺也被用作氮掺杂碳的前体.因此,氮掺杂多孔碳和邻苯二胺是合成高金属含量铁单原子催化剂的关键前驱体.通过X射线光电子能谱,大角度环形暗场扫描透射电子显微镜和X射线吸收精细结构光谱表征,发现所制备的铁单原子催化剂中铁原子以单个原子的形式锚固在碳载体上,并与碳基质的四个掺杂氮原子配位,得到Fe-N4的构型.通过调节Fe前驱体量,铁单原子催化剂中Fe的最高负载量达到7.5 wt%,在目前已经报道的铁单原子催化剂中排第四.电化学氧还原测试表明,在0.10 M KOH溶液中,随着铁含量的增加,铁单原子催化剂的氧还原性能逐渐提高.其中250Fe-SA/NPC-800样品表现出最高起始电位0.97 V和最正的半波电位0.85 V,可与市售的40%Pt/C催化剂相媲美.和已报道的铁单原子催化剂相比,由于我们制得的催化剂的比表面积较低,只有247 m2?g–1,所以制约了催化剂的性能.在混合动力学势域中,根据Koutecky-Levich方程计算得出的电子转移数约为3.6,表明250Fe-SA/NPC-800主要催化四电子转移过程,这可以归因于以Fe-N4活性中心降低了四电子过程中关键中间体的形成能垒及过程的自由能变化.此外,250Fe-SA/NPC-800展现了较高的电化学稳定性.连续工作6 h后,250Fe-SA/NPC-800保留了超过87%的电流密度,而Pt/C表现出明显的衰减,仅保留了49%. 相似文献