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961.
A new porous organic polymer (POP) with high thermal stability and large surface area has been synthesized and applied in the preparation of Pd/POP catalyst. Pd/POP was characterized by XRD, TGA, SEM and TEM. The catalyst consists of highly dispersed palladium nanoparticles of 0.9–4 nm size on POP with a large surface area of 650 m2/g. It presents high catalytic activity for Suzuki‐Miyaura and Sonogashira reactions. The catalyst was reusable for three to five times without significant loss of activity. 相似文献
962.
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964.
Samuel Z. Hanz Nicolas S. Shu Jieni Qian Nathaniel Christman Patrick Kranz Ming An Christof Grewer Dr. Wei Qiang 《Angewandte Chemie (International ed. in English)》2016,55(40):12376-12381
The pH‐low insertion peptide (pHLIP) inserts into membranes and forms a transmembrane (TM) α‐helix in response to slight acidity, and has shown great potential for cancer diagnosis and treatment. As a lead, pHLIP is challenging to optimize because the mechanism of its pH‐dependent membrane interactions is not completely understood. Within pHLIP there are multiple D/E residues which could sense the pH change, the particular role played by each of them in the protonation‐driven insertion process is not clear. The precise location of the TM helix within the pHLIP sequence is also unknown. In this work, solid‐state NMR spectroscopy is used to address these central questions. Tracing backbone conformations revealed that the TM helix spans from A10 to D33 with a break at T19 to P20. Residue‐specific pKa values of D31, D33, D25, and D14 were determined to be 6.5, 6.3, 6.1, and 5.8, respectively, and define the sequence of protonations which lead to insertion. Furthermore, possible intermediate states which disrupt membranes at pH 6.4 were proposed based on tryptophan fluorescence quenching and NMR data. 相似文献
965.
Back Cover: Hydrogels from Amorphous Calcium Carbonate and Polyacrylic Acid: Bio‐Inspired Materials for “Mineral Plastics” (Angew. Chem. Int. Ed. 39/2016) 下载免费PDF全文
966.
Poly(ionic liquid)‐Mediated Morphogenesis of Bismuth Sulfide with a Tunable Band Gap and Enhanced Electrocatalytic Properties 下载免费PDF全文
Prof. Dr. Min‐Rui Gao Prof. Dr. Shu‐Hong Yu Dr. Jiayin Yuan Weiyi Zhang Prof. Dr. Markus Antonietti 《Angewandte Chemie (International ed. in English)》2016,55(41):12812-12816
Conventional polymer additives have a substantial impact on synthetic inorganic chemistry, but critical shortcomings remain; for example, low solubility in organic solvents and potential thermodynamic aggregates. Poly(ionic liquid)s have now been used as efficient additives that enable a high level control of bismuth sulfide crystals with significant size and morphological diversities. The bismuth sulfides exhibit tunable band structure as a result of the quantum size effects. Moreover, poly(ionic liquid)s are able to couple with as‐synthesized bismuth sulfides chemically and endow a modified surface electronic structure, which allows resultant products to possess outstanding electrocatalytic performance for water oxidation, although its commercial counterpart is catalytically inert. 相似文献
967.
Thermally Induced Intra‐Carboxyl Proton Shuttle in a Molecular Rack‐and‐Pinion Cascade Achieving Macroscopic Crystal Deformation 下载免费PDF全文
Dr. You‐Gui Huang Yoshihito Shiota Sheng‐Qun Su Shu‐Qi Wu Zi‐Shuo Yao Guo‐Ling Li Shinji Kanegawa Soonchul Kang Takashi Kamachi Kazunari Yoshizawa Prof. Katsuhiko Ariga Prof. Osamu Sato 《Angewandte Chemie (International ed. in English)》2016,55(47):14628-14632
Proton transport via dynamic molecules is ubiquitous in chemistry and biology. However, its use as a switching mechanism for properties in functional molecular assemblies is far less common. In this study, we demonstrate how an intra‐carboxyl proton shuttle can be generated in a molecular assembly akin to a rack‐and‐pinion cascade via a thermally induced single‐crystal‐to‐single‐crystal phase transition. In a triply interpenetrated supramolecular organic framework (SOF), a 4,4′‐azopyridine (azpy) molecule connects to two biphenyl‐3,3′,5,5′‐tetracarboxylic acid (H4BPTC) molecules to form a functional molecular system with switchable mechanical properties. A temperature change reversibly triggers a molecular movement akin to a rack‐and‐pinion cascade, which mainly involves 1) an intra‐carboxyl proton shuttle coupled with tilting of the azo molecules and azo pedal motion and 2) H4BPTC translation. Moreover, both the molecular motions are collective, and being propagated across the entire framework, leading to a macroscopic crystal expansion and contraction. 相似文献
968.
Copper(I)‐Catalyzed Asymmetric Dearomatization of Indole Acetamides with 3‐Indolylphenyliodonium Salts 下载免费PDF全文
Dr. Chuan Liu Ji‐Cheng Yi Xiao‐Wei Liang Ren‐Qi Xu Prof. Li‐Xin Dai Prof. Dr. Shu‐Li You 《Chemistry (Weinheim an der Bergstrasse, Germany)》2016,22(31):10813-10816
The rapid and direct asymmetric synthesis of 3‐(3a‐indolyl)hexahydropyrroloindoline motifs is an extremely important part of the total synthesis of several alkaloid structures. Herein, an intermolecular, asymmetric cascade dearomatization reaction of indole acetamides with 3‐indolylphenyliodonium salts has been developed. This protocol provides a straightforward access to 3‐(3a‐indolyl)hexahydropyrroloindolines bearing an all‐carbon quaternary stereocenter at the C3 position of the indoline ring with high enantioselectivities. The utility of the protocol has been demonstrated by the formal asymmetric synthesis of folicanthine. 相似文献
969.
Palladium(0)‐Catalyzed Intermolecular Allylic Dearomatization of Indoles by a Formal [4+2] Cycloaddition Reaction 下载免费PDF全文
Run‐Duo Gao Qing‐Long Xu Bo Zhang Yiting Gu Prof. Li‐Xin Dai Prof. Dr. Shu‐Li You 《Chemistry (Weinheim an der Bergstrasse, Germany)》2016,22(33):11601-11604
Bridged indoline derivatives were synthesized by an intermolecular Pd‐catalyzed allylic dearomatization reaction of substituted indoles. The reaction between indoles and allyl carbonates bearing a nucleophilic alcohol side‐chain proceeds in a cascade fashion, providing bridged indolines in excellent enantioselectivity. 相似文献
970.
Integration of Nine Steps into One Membrane Reactor To Produce Synthesis Gases for Ammonia and Liquid Fuel 下载免费PDF全文
Wenping Li Prof. Xuefeng Zhu Prof. Shuguang Chen Prof. Weishen Yang 《Angewandte Chemie (International ed. in English)》2016,55(30):8566-8570
The synthesis of ammonia and liquid fuel are two important chemical processes in which most of the energy is consumed in the production of H2/N2 and H2/CO synthesis gases from natural gas (methane). Here, we report a membrane reactor with a mixed ionic‐electronic conducting membrane, in which the nine steps for the production of the two types of synthesis gases are shortened to one step by using water, air, and methane as feeds. In the membrane reactor, there is no direct CO2 emission and no CO or H2S present in the ammonia synthesis gas. The energy consumption for the production of the two synthesis gases can be reduced by 63 % by using this membrane reactor. This promising membrane reactor process has been successfully demonstrated by experiment. 相似文献