EVIDENCE FOR HYDROGEN BONDING IN THIOLS FROM N.M.R. MEASUREMENTS
Lawrence D. Colebrook, D. S. Tarbell
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NUCLEAR MAGNETIC RESONANCE STUDIES OF HYDROGEN BONDING. II. ALCOHOLS [PDF]
Jeff C. Davis+2 more
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Ozone‐based gas‐phase metal‐assisted chemical etching enables unprecedented room‐temperature fabrication of high‐quality silicon nanowires. The superior oxidation potential of O3 drives rapid vertical etching (1 µm min−1) while maintaining exceptional structural integrity. The pristine nanowire surfaces enable high‐performance core‐shell photodetectors
Hyein Cho+11 more
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Pd single atoms guided proton transfer along an interfacial hydrogen bond network for efficient electrochemical hydrogenation. [PDF]
Zhao R+15 more
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Spectroscopic Studies on Enols. Part 7. NMR and IR Investigations of Hydrogen Bonding and Tautomerism in Cyclopentane Enols. [PDF]
Sture Forsén+4 more
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A two‐step DNA metallization process is presented for the modular assembly of metal sulfide nanoparticles (NPs) on MoS2, with nanoscale control over their separation and ability to concomitantly assemble different kind of NPs. This allowed to tailor the photoinduced electrical response of phototransistors to different wavelengths, according to the ...
Kai Chen+3 more
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Studies of Hydrogen Bonding. Part IV. A Comparison between the Ability of Organophosphorus Compounds to Form Addition Compounds with Iodine and their Ability to Take Part in Hydrogen Bonding. [PDF]
Thor Gramstad+5 more
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Transient Stiffness Patterning in Hydrogels Driven by Dissipative Mechanochemical Coupling
Force‐induced disulfide bond rupture in a polymer‐based hydrogel, coupled with chemical or electrochemical reoxidation, leads to the transient modulation of the hydrogel's stiffness properties. High spatiotemporal control is achieved by this dissipative process, enabling the development of out‐of‐equilibrium stiffness patterns and transient, dose ...
Roberto Baretta+2 more
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Hydrogen-Bond-Directed Supramolecular Organic Semiconductor Thin Films Realized via Thermal Precursor Approach. [PDF]
Ueno S+7 more
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This study presents a novel donor‐bridge‐acceptor‐bridge‐donor (D‐B‐A‐B‐D) molecular system, which shows near‐unity intramolecular excitation energy transfer (IET) from two identical energy donors to a coplanar acceptor. It enables a four‐level energy system for efficient lasing at the acceptor emission band in a microspherical cavity with a low lasing
Vishal Kumar+6 more
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