The next #ChemEd #Chemistry #ChemSky 1-page intro covers common [3,3]-sigmatropic rearrangements. Lovely reactions that are a nice way to form C-C bonds with good control of stereochemistry from readily formed precursors. As always, it's just an intro, no orbitals & no Woodward-Hoffmann. Enjoy.
Making Molecules
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Making molecules - trying to explain chemistry one page at a time. One page summaries and more wordy descriptions found at: https://www.makingmolecules.com
As promised in the previous #ChemEd #Chemistry #ChemSky post, I have written a more wordy/detailed overview of 1,3-dipolar cycloadditions. It is available below: I stress it is still an introduction but allows me to words/explanation than I can on a one-page summary. Hope it is useful, enjoy.
1,3-Dipolar Cycloadditions — Making Molecules
Cycloadditions provide a controlled method for the construction of ring systems. 1,3-Dipolar cycloadditions form five-membered heterocycles. Electronically, these reactions involve 4+2 π electrons &am...
makingmolecules.com
This #ChemEd #Chemistry #ChemSky summary introduces 1,3-dipolar cycloadditions. It builds on the Diels-Alder 1 pagers & is another [4+2] cycloaddition but gives 5-membered rings. It is only an intro. More details will be on makingmolecules.com as soon as I've typed up my notes. Enjoy!
This #ChemEd #Chemistry #ChemSky summary introduces 1,3-dipolar cycloadditions. It builds on the Diels-Alder 1 pagers & is another [4+2] cycloaddition but gives 5-membered rings. It is only an intro. More details will be on makingmolecules.com as soon as I've typed up my notes. Enjoy!
#ChemEd #Chemistry #ChemSky summary looks at modifications of the Diels-Alder reaction. It includes IMDA (tie the ends together), HDA (swap one (or more) carbons out) & IEDDA. It mentions the old explanation for LA catalysis (the more modern explanation is at makingmolecules.com/blog/da-like...)
My 1st #Chemistry #ChemEd #ChemSky summary on pericyclic reactions (more to follow) & it is on the Diels-Alder reaction. This is a fantastic reaction but I only cover the basics. Bond formation, regioselectivity (very simplistically) & a comment on exo vs endo. No Woodward-Hoffmann rules. Enjoy.
As promised, a #ChemEd #Chemistry #ChemSky summary introducing enamines as enolate equivalents. It's only an intro so covers formation + 3 reactions. No regio- or stereoselectivity even though they're fun. I did include the catalytic cycle from enamine organocatalysis as people expect it. Enjoy.
After enols & enolates, here's a #ChemEd #Chemistry #ChemSky on enolate equivalents. These allow control of selectivity & permit stereoselective enolate chemistry (something I love & will eventually write a summary on). Here is formation & aldol-like reaction. Enamines will get their own summary.
No #ChemEd #Chemistry summary this week as the Analytical Science team was unleashed for a night of science, chemistry and fun. Big thanks to Brad and Daisy.
Breaking radio silence with 2x #ChemEd #Chemistry #ChemSky summaries of aldol-like rcts. These are just lists of reactions without the explanation of the last couple of summaries. One tries to include mechanisms. More a stop gap than anything else. Hopefully, someone will find them useful. Enjoy.
Having introduced the aldol, here is a #ChemEd #Chemistry #ChemSky summary of the more common named variants. They're all the same reaction (just the electrophile/nucleophile changes; see reply). The mechanism is the same. Don't let the names mislead you. Hopefully it is useful to some.
The obvious next post after looking at enols/enolates is the aldol reaction. The aldol reaction is an impressive beast used by both nature and chemists. This #ChemEd #Chemistry #ChemSky summary is just the intro. There will be more over the coming weeks. I hope UG enjoy this!
The obvious next post after looking at enols/enolates is the aldol reaction. The aldol reaction is an impressive beast used by both nature and chemists. This #ChemEd #Chemistry #ChemSky summary is just the intro. There will be more over the coming weeks. I hope UG enjoy this!
Enolates (& their equivalents) are one of the cornerstones of many a good synthesis. So here is a #Chemistry #ChemEd #ChemSky intro to their formation & general reaction. More details on the aldol reaction & enolate equivalents will be in subsequent summaries. Enjoy.
The 1st of a few #ChemEd #Chemistry #ChemSky summaries related to enols/enolates/etc. This one covers keto-enol tautomerization and two reactions of enols. As always, it is just meant to cover the basics. It is a summary to refresh/support students' memories. As such, I hope it is of some use.
The obligatory summary of a summary and a table of E1 vs E2 vs Sn1 vs Sn2. Hopefully, this is of use to some, but if I'm brutally honest, it was just a quick stop gap while I work on more fun #ChemEd #Chemistry #ChemSky summaries (currently writing ones on cycloadditions and rearrangements). Cheers
The obvious follow-up to SN1/SN2 substitution is a #ChemEd #Chemistry #ChemSky summary on E1/E2 elimination. This summary only looks at E1/E2 & not fun like E1cB. More detail is www.makingmolecules.com/blog/elimina.... Enjoy (& yes a summary of which mechanism operates is coming next week). Enjoy
Today's #Chemistry #ChemEd #ChemSky summary is SN1/SN2 substitution. I waited until 46th summary to cover this as I don't think it's as important as the chemistry of the carbonyl group (but is invariably introduced 1st in textbooks 🤷♂️go figure). More info www.makingmolecules.com/blog/substit... enjoy
A contentious #ChemEd #Chemistry #ChemSky summary covering rates of reaction. It is the textbook version & is wrong if you understand kinetics ;) I'll add references showing why as a reply. It's here as most UG still learn it. Hopefully it is useful & doesn't cause too many misconceptions
The last MakingMolecules #Chemistry #ChemEd #ChemSky of the year, but what a post, an org chemist introducing rates of reaction with collision theory! The pool analogy is shaky/orientation is important than direction/frequency not numbers). It's a vital topic but find a physical chemist for details.
After 2 months of aromatic chem, here is something a little different (but not that different) & a #Chemistry #ChemSky #ChemEd summary on conjugate or 1,4- or Michael additions. To sound like a stuck record, it is aimed at UG with only the general mechanism & brief notes on regioselectivity. Enjoy.
The last nucleophilic aromatic substitution #Chemistry #ChemEd #ChemSky summary is a summary of the previous summaries. It shows 4 mechanisms of nucleophilic aromatic substitution including classic substitution, aryne intermediates, ionic & radical substitution of diazonium salts. Hope it helps.
With stunning originality & a certain amount of flare, I give you Nucleophilic Aromatic Substitution 3. A #ChemEd #Chemistry #ChemSky summary discussing substitution via aryne intermediates. It is pitched at #UG. More detail/references at www.makingmolecules.com/blog/benzyne Hope it is useful Enjoy
The second #ChemEd #Chemistry #ChemSky summary on nucleophilic aromatic substitution. This time it covers the formation & use of diazonium salts. The substitution mechanism is either ionic or radical depending on the nucleophile. Good(ish) with paracyclophane (honest)! Hope this is useful. Enjoy
After 3 #Chemistry #ChemSky #ChemEd summaries on electrophilic aromatic substitution, we move to the nucleophilic variant SNAr (surprise). Not as common (due to structural limitations), but equally useful. Next week, the same reaction but with diazonium salts. Hopefully no silly mistakes this time!
Anyone for a summary of a summary? After two weeks of #ChemEd #ChemSky #Chemistry summaries on electrophilic aromatic substitution here, by popular demand, is one chart that covers just the basics. Enjoy.
More electrophilic aromatic substitution. Last week was the general reaction, today covers (de)activation & directing effects. It is a #UG simplification so no discussion of inductive effect vs hyperconjugation etc (or the transannular effect). Enjoy #ChemEd #Chemistry #ChemSky
Here's a #ChemEd #Chemistry #ChemSky summary of electrophilic aromatic substitution. As an ex-[2.2]paracyclophane chemist, this is a reaction dear to my heart. Here is just the basic mechanism aimed at UG (the mechanisms for electrophile activation are www.makingmolecules.com/blog/electro...). Enjoy
Here's a #ChemEd #Chemistry #ChemSky summary of electrophilic aromatic substitution. As an ex-[2.2]paracyclophane chemist, this is a reaction dear to my heart. Here is just the basic mechanism aimed at UG (the mechanisms for electrophile activation are www.makingmolecules.com/blog/electro...). Enjoy
These #ChemEd #Chemistry #ChemSky summaries target early UG & the basics. Except when they don't. Here is a follow-up to anti-Markovnikov addition summary & a look at asymmetric hydroboration. It's still a summary. Only substrate control & pinene reagents. www.makingmolecules.com/blog/asymhyd...
No MakingMolecules #ChemEd summary today as NZ_Molecules is in Singapore with the wonderful folk at Gerstel (& only being a tiny bit jealous of their kit). I feel a summary of sensory directed analysis coming at some point as it is simply fascinating (& a powerful technique to help at work).
A #ChemEd #Chemistry #ChemSky summary of anti-Markovnikov addition to alkenes using radical hydrobromination or hydroboration/oxidation. It's classic UG material introducing regioselectivity/stabilising intermediates. It's a simplification, more at www.makingmolecules.com/blog/antimar...
No new #ChemEd #Chemistry #ChemSky summary today, just an attempt to summarise the alkene chemistry that has been covered in the last couple of infographics. It also acts as a spoiler for next week's look at anti-Markovnikov addition. Hopefully it still has some use.