Group 15 Exceptions

Group 15 exceptions are chemical behaviors of nitrogen, phosphorus, arsenic, antimony, and bismuth that do not follow the simple periodic trends expected down the group. These deviations arise from changes in atomic size, electronegativity, orbital overlap, bond strength, and the inert-pair effect, which influences oxidation states and compound stability. Nitrogen, for example, forms strong multiple bonds and commonly reaches a maximum covalency of four, whereas heavier members can expand their valence shells and favor lower oxidation states, especially toward bismuth. Understanding these exceptions helps explain differences in molecular structure, reactivity, acidity, redox chemistry, and the properties of Group 15 compounds.

Group 15 Exceptions - Related Videos

Education

JoVE Core - Chemistry

Exceptions to the Octet Rule

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2020

Many covalent molecules have central atoms that do not have eight electrons in their Lewis structures. These molecules fall into three categories: Odd-electron molecules have an odd number of valence electrons and therefore have an unpaired electron. Electron-deficient molecules have a central atom with fewer electrons than needed for a noble gas configuration. Hypervalent molecules have a central atom that has more electrons than needed for a noble gas configuration. Odd-electron...

Other Nuclides: 31P, 19F, 15N NMR

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2024

Many organic, inorganic, and biological molecules contain spin-half nuclei such as nitrogen-15, fluorine-19, and phosphorus-31. As a result, NMR studies of these nuclei have found extensive applications in chemical and biological research. While fluorine-19 and phosphorous-31 have high natural abundances (100%) and positive gyromagnetic ratios, nitrogen-15 has a low natural abundance and a negative gyromagnetic ratio. However, nitrogen-15 is still preferred over nitrogen-14 (which has a high...

Research

JoVE Journal - Environment

Microplot Design and Plant and Soil Sample Preparation for 15Nitrogen Analysis

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Cited by 2 •

2020

A microplot design for 15N tracer research is described to accommodate multiple in-season plant and soil sampling events. Soil and plant sample collection and processing procedures, including grinding and weighing protocols, for 15N analysis are put forth.

NMR 15N Relaxation Experiments for the Investigation of Picosecond to Nanoseconds Structural Dynamics of Proteins

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2024

Nuclear magnetic resonance (NMR) spectroscopy can characterize structural protein dynamics in a residue-specific manner. We provide a hands-on protocol for recording NMR 15N R1 and R2 relaxation and {1H}-15N heteronuclear Overhauser effect (hetNOE) experiments, sensitive to the picoseconds to nanoseconds timescale.

15N CPMG Relaxation Dispersion for the Investigation of Protein Conformational Dynamics on the µs-ms Timescale

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Cited by 11 •

2021

Here, a detailed description of the protocol implemented in the laboratory for acquisition and analysis of 15N relaxation dispersion profiles by solution NMR spectroscopy is provided.

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