HNO3/N,N-Diethylethanaminium-2-(Sulfooxy)Ethyl Sulfate as an Efficient System for the Regioselective of Aromatic Compounds [PDF]
N,N-diethylethanaminium-2-(sulfooxy) ethyl sulfate was synthesized and used as an efficient, green, and recyclable catalyst and solvent for the nitration of aromatic compounds by nitric acid at ...
Farajollah Mohanazadeh, Sakineh Rahimi
doaj
CXL.—The interaction between nitric acid and brucine in the presence of metallic nitrates [PDF]
Edward H. Rennie, Alfred Ernest Dawkins
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State‐of‐the‐Art, Insights, and Perspectives for MOFs‐Nanocomposites and MOF‐Derived (Nano)Materials
Different approaches to MOF‐NP composite formation, such as ship‐in‐a‐bottle, bottle‐around‐the‐ship and in situ one‐step synthesis, are used. Owing to synergistic effects, the advantageous features of the components of the composites are beneficially combined, and their individual drawbacks are mitigated.
Stefanos Mourdikoudis+6 more
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XCIV.—Action of fuming nitric acid on the paraffins and other hydrocarbons [PDF]
Francis E. Francis, Sydney Young
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This article summarizes significant technological advancements in materials, photonic devices, and bio‐interfaced systems, which demonstrate successful applications for impacting human healthcare via improved therapies, advanced diagnostics, and on‐skin health monitoring.
Seunghyeb Ban+5 more
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Preparation of Aromatic Carboxylic Acids by Side-Chain Oxidation with Dilute Nitric Acid at High Temperature and Pressure. [PDF]
Erik B. Bengtsson+5 more
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This review highlights recent progress in piezoelectric materials for regenerative medicine, emphasizing their ability to convert mechanical stimuli into bioelectric signals that promote tissue repair. Key discussions cover the intrinsic piezoelectric properties of biological tissues, co‐stimulation cellular mechanisms for tissue regeneration, and ...
Xinyu Wang+3 more
wiley +1 more source
Topical Nitric Acid Burns: Initial Assessment and Management. [PDF]
Laanaya A+5 more
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XLVIII. Extract from a memoir of Messrs. F
A. Laugier
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A novel hydrogen bond re‐orientation (HyBRO) strategy enables three‐dimensional (3D) printing of vascular microchannel networks with high accuracy. By switching sacrificial material interactions with nonsolvents, HyBRO prevents swelling and deformation, enabling accurate hierarchical channels spanning a tenfold size range.
Zhencheng Liao+5 more
wiley +1 more source