Sunday, November 18, 2012

Diazotransfer - Synthesising Azides from Amines

In our group we work a lot with diazotransfer reagents and diazomethane so I thought it might be a good idea to share some of our knowledge. These reaction involve reagents that are very dangerous and azide products can also be explosive so you shouldn't do any of this chemistry without being 100% sure you know what you are doing. However, if experiments are performed thoughtfully and with care the chemistry is predictable and well behaved. We are doing diazotransfer all the time these days to convert amino acids into azide derivatives. There are many reagents available for the diazotransfer reaction with the most common depicted in the figure below.

We recently, published a review that gives a detailed description of the various diazotransfer reagents when used on amino acids but I believe it would be of interest to anyone attempting the conversion of an amine to an azide. Check it out here for the full story. The conclusion is that we favour reagents 4 that was developed by Goddard-Borger and Stick and first reported here. Later a safety update was published here followed by a comprehensive stability study that was published here. The problem is that the HCl salt of 4 is hygroscopic and when it becomes wet is starts to decompose forming hydrazoic acid (HN3) which is very nasty and totally unpredictable. Fortunately, it is easy to see when the decomposition has kicked in because the product turns into a black tar. The tetrafluoroborate and hydrogensulfate salts of 4 were found to be much better with respect to shelf life. In the future we will use the hydrogensulfate salt of 4, however, we have a big pile of the HCl salt we have to get through first. Fortunately, we discovered that rigorous drying of the HCl salt of 4 followed by storage at -20 oC makes it stable for >1 year. Anyway, if you are new to this stuff you should definitely go for the hydrogensulfate salt. Using the HCl salt of 4 we regularly synthesise amino acids with terminal azides in the side chain (see below). 

This is easily achieved from the corresponding amine (in this example lysine). The pH of the reaction has to be adjusted to approx. 8 to get it going. We normally insert a pH meter to keep an eye on things and simply adjust pH by adding sat. aq. NaHCO3 when required. The fantastic thing about this reaction is that the crude product is of such high purity that we never perform any chromatography but simply dry it and use it as it is. The synthesis of this particular azide has been reported many times in the literature. For a recent detailed procedure check out our SYNLETT paper on the synthesis of Fmoc-L-Lys(N3)-OH and a number of other azide and alkyne derivatised amino acids.
Note that we are synthesising high molecular weight azides so these guys are not explosive. However, if you consider synthesising smaller azides please be aware that it isn't considered safe to handle azides with less than 6 heavy atoms per azido group (see our recent review for details).
Some of you are probably thinking what is the mechanism for this reaction? Well I'll leave that to someone else to have a go at. I don't think the actual mechanism has been conclusively established and the suggested arrow pushing is rather exotic. Suffice to say that it works and that nitrogen gets transferred from reagent to product without too much fuss. Have fun diazotransferring. D!
If you don't have access to our papers reprints can be requested from curlyarrow@gmail.com
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On a non-chemistry note I have started the blog Molt Bé, No? about Barcelona (and Catalonia). I spend a lot of time in Barcelona since my better half lives there and now I have started writing about our favourite spots. I find that guide books, news papers etc. are a disaster regarding their recommended restaurants, bars etc. so I thought I would do my bit to help visitors to Barcelona have a nice and authentic experience when visiting the Catalan capital (and the surrounding area). Check it out here if you are heading in that direction. D!

Thursday, March 08, 2012

Total Synthsis?

We had our weekly journal club this morning. Interesting paper from a Korean group but maybe the ACS editorial office should wake up. D!

Tuesday, December 27, 2011

Curly Arrow - Established 18th October 2006

Merry Christmas and Happy New Year! I Hope that everyone is getting some well-deserved time off. I used to do a yearly post on visitor stats around the blogs birthday but forgot this year!. Since it was the 5th birthday on 18th October 2011 I have decided to have a look back at how things developed in the past year.
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From 18th October 2010 to 18th October 2011:
Absolute unique visitors: 34,488
Total visits: 61,799 (169 Visits/Day)
Average time on site: 1:25 minute
The 10 most frequent visitors identifiable:
(1) ETH Zürich
(2) University of Hull
(3) Queens University Belfast
(4) Universite de Liege
(5) Princeton University
(6) The Scripps Research Institute
(7) Oxford University
(8) University of Ghent
(9) The University of Nottingham
(10) Johann Wolfgang Goethe Universitaet Frankfurt 
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Top 10 countries that visit the blog:
(1) United States (18,348 visits)
(2) United Kingdom (8,642 visits)
(3) Germany (3,707 visits)
(4) India (3,016 visits)
(5) Australia (2,549 visits)
(6) Canada (2,490 visits)
(7) Switzerland (1,895 visits)
(8) Denmark (1,603 visits)
(9) Japan (1,497 visits)
(10) Belgium (1,366 visits)
D!

Monday, November 21, 2011

Let's Talk About TLCs Part 5 - Iodine Stain

The iodine stain is by far the easiest stain to prepare and use. The classic way is to simply have a chamber with some iodine crystals that you put your TLC plate into. The iodine vapours will react with many functional groups but is particularly good with unsaturated compounds (e.g. alkenes and alkynes) to give reddish brown spots (see TLC plate below). Another way to prepare the iodine stain is to mix silica gel with iodine crystals (see pic to the right). Stick the TLC plate into the red silica and wait a few minutes to develop your plate. This approach is a bit gentler and in my experience gives a better result. If you want to keep your TLC result for later remember to take a picture of your plate or circle the spots as they fade relatively fast. D!

Tuesday, November 15, 2011

Reverse Phase Silica - Sort of!

I'm sure that all the synthetic organic chemists will agree that column chromatography is something we simply couldn't live without. At our Department we use it in all its forms: Automated flash chromatography, Chromatotron, Prep. HPLC (Chiral and RP), Prep. TLC, old skool manual flash and DCVC columns etc. However, in spite of all this we all too frequently end up with stuff that is a major pain to separate. Just last week a colleague of mine, lets call him Bernard, told me he had used deactivated silica for purifying his compound - the only thing that had worked for him! So now you are probably thinking deactivated silica??? Normal lab terminology translates this to treating your silica with some amine base prior to use but this is not what Bernard was talking about. He found this paper (Procedure in the Supp. Info.) where they derivatise silica gel with ethyltrichlorosilane. Cheap reagents and a simple method. I guess the "deactivated" silica ends up being something between regular and reverse phase silica. Bernard simply packed a column with this stuff and put on our automated columning system to get a great result eluting with normal phase solvent mixtures. Excellent news for me and my people. We often end up with very polar compounds that will not come off a regular column or elute in fractions 1-5 on a reverse phase column.
Does anyone have any experience with this type of silica or something similar? Please let us all know by posting a comment. D!

Monday, April 18, 2011

Triazoles in Peptidomimetic Chemistry

Self Promotion time! Our review on 1,2,3-Triazoles in Peptidomimetic Chemistry was just published in EuroJOC.
Useful stuff if you are working in the peptidomimetic area. You can get it here or by emailing curlyarrow@gmail.com. D!

Tuesday, March 08, 2011

The Sand Bath - An Alternative to the Oil Bath

Yes, I am still alive! I have been out of the lab for a loooong time so the inspiration hasn't been there. However, I am now finding myself in the lab again and it appears that I will get to stay there for a while. And today inspiration struck.
Let's talk about oil baths. Good way to heat stuff up in a controlled way, BUT, what a bloody mess they are. The oil becomes disgusting after a while, the glassware gets nasty, ocassionally oil baths break and make the mess from hell....
So whenever possible I use an aluminium heating block. However, we have a limited number of these in a limited number of shapes and sizes. When a heating block isn't available my next choice is a sand bath. These are traditionally used when you have to heat something to a ridiculous temperature that oil can't handle. However, I use them for any reflux (see picture). The problem with these things is that heat transfer isn't particularly effective so it's only really good for reflux and not for heating something at a well defined temperature below the boiling point. Also it can be quite tricky for the sand bath to heat up in a well ventilated fume hood so it is generally a good idea to wrap a bit of aluminium foil around the bath to get the heating going. D!

Wednesday, October 27, 2010

Is there a Future for Organic Chemists in the Pharmaceutical Industry outside China and India?

I have copy/pasted the headline for this post from the editorial in the most recent issue of Organic Process Research and Development. It's a good question that is being asked and I believe that the answer is YES. However, we really need to come up with something new to justify our existence. The Chinese and others are just as good as us at doing Med Chem SAR working their way through methyl, ethyl, propyl, futile...but they can do the work at a much lower cost. The same thing that happened to the textile industry sometime last century is happening to the pharmaceutical industry. The design is made in the western world but the actual product is manufactured at some cheap site in Asia. The way forward is to invent new ingenious stuff. Start biotech companies with crazy, innovative new technologies, start working at the biology/chemistry interface modifying proteins; oligonucleosides etc. in predictable ways for use a medicinal agents and so on. Ultimately this development is a good thing. It is forcing us to think and evolve. In the end humanity will benefit from some great new discoveries and technologies that will spring from the effort we put into this. So get up and go invent something brilliant that will make the world a better place. D!

Friday, October 08, 2010

If it works don't mess with it!

I'm currently in Brussels vistiting a collaborator. The research groups lab is absolutely fascinating and contains several old school mechanical contraptions that do a great job.
For your glassware drying pleasures:
For melting point determination (not sure how useful this device is but its looks cool):
It's not always necessary to upgrade to an expensive model with digitals controls to achieve the goal. Check out this solid phase synthesis shaker and the fantastic sound it makes - music to my ears. D!

Wednesday, September 01, 2010

NMR Impurities Tabulated

If you didn't already spot this useful paper on NMR impurities you should go get it now. An excellent addition to the classic paper by Gottlieb et al. that you can access here. D!