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An electron donating group (EDG) or electron releasing group (ERG, Z in structural formulas) is an atom or functional group that donates some of its electron density into a conjugated π system via resonance (mesomerism) or inductive effects (or induction)—called +M or +I effects, respectively—thus making the π system more nucleophilic.
Delocalizing the radical ion stabilizes the transition state structure. As a result, the energy of activation decreases, enhancing the rate of the overall reaction. According to the captodative effect, the rate of a reaction is the greatest when both the EDG and EWG are able to delocalize the radical ion in the transition state structure. [7]
An electron-withdrawing group (EWG) is a group or atom that has the ability to draw electron density toward itself and away from other adjacent atoms. [1] This electron density transfer is often achieved by resonance or inductive effects.
The junction alignment at equilibrium (bottom) is predicted based on a hypothetical flat-vacuum alignment (top). Anderson's rule is used for the construction of energy band diagrams of the heterojunction between two semiconductor materials.
The strategic grid model is a contingency approach that can be used to determine the strategic relevance of IT to an organization. The model was proposed by F. Warren McFarlan and James L. McKenney in 1983, and takes the impact of the information technology on the strategy in future planning as the horizontal axis, and the current impact of the information technology on corporate strategy as ...
EWG may refer to: Eastern Washington Gateway Railroad, an American railroad; East-West Gateway Council of Governments, a planning organization in Greater St. Louis, United States; Election Working Group, a Bangladeshi civic organization; Electron withdrawing group; Energy Watch Group, an international energy think tank; English Whisky Guild, an ...
The edge effect in scanning electron microscopy is the phenomenon in which the number of secondary and/or backscattered electrons that escape the sample and reach the detector is higher at an edge than at a surface. The interaction volume spreads far below the surface, but secondary electrons can only escape when close to the surface (generally ...
The Horner–Wadsworth–Emmons (HWE) reaction is a chemical reaction used in organic chemistry of stabilized phosphonate carbanions with aldehydes (or ketones) to produce predominantly E-alkenes.
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