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12/3/2014

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12/3/2014

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Thursday, December 11, 2014

“Chemistry & the Economy: 2014 Year-

End Review”

Paul Hodges, Chairman, International eChem

Dr. Mark Jones, Executive External Strategy and Communications

Fellow, Dow Chemical Corporation

Thursday, January 15, 2015

“Rookie Lab Mistakes and Other Facts Not

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Dr. Alison Frontier, Professor of Chemistry, University of Rochester

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12/3/2014

7

13

“Transitioning Organic Synthesis from Organic Solvents to Water”

www.acs.org/acswebinars

Co-produced with the ACS Green Chemistry Institute

Recordings will be available to ACS members after three weeks

Dr. Joseph Fortunak Professor of Chemistry,

Howard University Dr. Bruce Lipshutz Professor of Chemistry,

Univ. of California, Santa Barbara

Bruce H. Lipshutz

Department of Chemistry & Biochemistry

University of California

Santa Barbara, CA 93106 USA

“Transitioning Organic Synthesis

From Organic Solvents to Water”

Co-produced with the

14

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15

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Smith Jones

Vollhardt & Schore

Soap (as in textbooks)

[spherical micelles]

19

Smith Jones

Vollhardt & Schore

soaps, detergents,

emulsifying agents,

surfactants, etc.

20

12/3/2014

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soaps, detergents, emulsifying agents,

surfactants, etc.

Where from?

21

Benign by design “designer” surfactants available from Aldrich 22

12/3/2014

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Comparisons: PTS, TPGS, and TPGS-750-M

NRC (2000)

Kodak (1954)

Lipshutz (2011)

23

PTS

10 nm spheres

&

variable sized worms

TPGS-750-M 60 nm spheres

TPGS-1000 13 nm spheres

Cryo-Transmission Electron Microscopy:

PTS vs. TPGS-750-M vs. TPGS

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12/3/2014

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Chemistry in nanoreactors…in water @ room temperature

O

CH3

CH3

CH3

OO

OO

Me

H3C

CH3 CH3CH3

O

CH3

O

16

reactions take

place here

25

TPGS-750-M vs. related surfactants

Ring-Closing Metathesis

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12/3/2014

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Recycling PTS & TPGS-750-M

27

How might PEG in a nonionic surfactant control

the particle size of nanomicelles?

28

• by its release from the surfactant into the

surrounding water

• by its length and, therefore, extent of coiling

• by interactions with other PEGs in nearby micelles

• by forming crown ether-like arrays around trace

metals found in water

• it doesn't have anything to do with determining

particle size

12/3/2014

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Designer surfactant technologies; in water @ RT

Can the impact be quantified?

29

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E Factors: What’s Possible with this Technology

E Factor =kg of waste

kg of desired product

typically 5-100 for pharma and fine chemicals

(does not include water)

I

Br

B(OH)2

Br

Org. Proc. Res. Dev. 2003, 7, 362

2 wt % TPGS-750-M/H2O (1 M)

12 h, rt

PdCl2(dtbpf) (1 mol %), Et3N

aq. Na2CO3/acetone, ∆, 12 h

Pd(OAc)2 (5 mol %)Ph3P (10 mol %) (80%)

(93%)

+

Suzuki-Miyaura Coupling

pharma

[ Lipshutz, Isley, Fennewald, Slack, Angew. Chem., Int. Ed. 2013, 52, 10911 ] 32

12/3/2014

17

E Factor =kg of waste

kg of desired product

typically 5-100 for pharma and fine chemicals

(does not include water)

I

Br

B(OH)2

Br

Org. Proc. Res. Dev. 2003, 7, 362

2 wt % TPGS-750-M/H2O (1 M)

12 h, rt

PdCl2(dtbpf) (1 mol %), Et3N

aq. Na2CO3/acetone, ∆, 12 h

Pd(OAc)2 (5 mol %)Ph3P (10 mol %) (80%)

(93%)

+

Suzuki-Miyaura Coupling

pharma

E Factors: What’s Possible with this Technology

33

E Factors: What’s possible with Recycling

Suzuki-Miyaura Coupling

N N

ClCl

Pd(PPh3)4, aq. Na2CO3

N N

Cl

CF3

(41%)

2 wt % TPGS-750-M/H2O (1 M)

Et3N (3 equiv), rt

(68%)

(45%)J. Med. Chem. 2007, 50, 3497

+

Pd(dtbpf)Cl2 (2 mol %)

CH3CN, 80 °C

(recycled)

CF3

(HO)2B

pharma

34

12/3/2014

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E Factors as a measure of greenness used in this

discussion may not tell the whole story. Why not?

35

• they misrepresent the true nature of organic waste

• they do not consider the origins of materials being

used in reactions

• they do not include salts present, or formed, in a

reaction

• they involve too many mathematical assumptions and

unknowns

• they originated in Europe

Heck Coupling

H2N

I

CN

Pd/C (0.5 mol %) (81%)

5 wt % PTS/H2O (1 M)

Et3N (3 equiv), 60 °C, 3 M NaCl

(76%)

(69%)

+

Pd(t-Bu3P)2 (7.5 mol %)

NaOAc (1.2 equiv), DMA, 140 °C

H2N

CN

(recycled)Org. Proc. Res. and Dev. 2008, 12, 530

pharma

pharma this work

16.7

31.1

2.5

10.2

based on:

total organic solvent

aqueous workup included 2.8

with recycle

2.8

E Factors

E Factors: What’s possible with Recycling

36

12/3/2014

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Designer surfactant technologies; in water @ RT

37

Aminations in PTS or TPGS-750-M, in Water @ RT

Lipshutz, B.H.; Chung, D.; Rich, B. Adv. Synth. Catal. 2009, 351, 1717. 38

12/3/2014

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Aminations: Couplings with carbamates

in water @ RT

Isley, Dobarco, Lipshutz, Green Chem. 2014, 16, 1480. 39

Couplings in water @ RT to 50 °C

Salome, C.; Schmitt, M. et al. Green Chem. 2014, 16, 4170. alkyl amines

40

12/3/2014

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C-O Bond construction:

Handa, S.; Lippincott, D. J.; Aue, D. H.; Lipshutz, B. H. Angew. Chem., Int. Ed. 2014, 53, 10658.

Asymmetric lactonizations

O

O

O

97%, 96% ee

OO

Cl

Cl

95%, 90% ee

O

88%, 91% ee

O

41

Trifluoromethylations

NaSO2CF3 = Langlois reagent

Baran, P. S. et al. PNAS 2011, 108, 14411.

Fennewald, J. C.; Lipshutz, B. H. Green Chem. 2014, 16, 1097.

C-C Bond-forming reactions in water @ RT

42

12/3/2014

22

olefin metathesis

Klumphu, P.; Lipshutz, B. H. J. Org. Chem. 2014, 79, 888.

C-C Bond-forming reactions in water @ RT

OTBS

+

O

(3 equiv)

Grubbs-2 (2 mol %)

2 wt % surfactant/H2O, rt, 12 h

OTBSO

N N

Ru

Ph

P

Cl

Cl

Surfactant Time (h)

2.0 wt % TPGS-750-M

2.0 wt % Nok

0.02 M KHSO4 /2.0 wt % TPGS-750-M

0.02 M KHSO4 /2.0 wt % Nok

Conversion (%)a

12

12

4

4

76

86

84

a by 1H NMR

77

43

reaction appearance

Olefin metathesis reactions in water @ RT

44

12/3/2014

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What is the key reaction parameter associated with

micellar catalysis not usually of consequence in

traditional reactions in organic solvents?

45

• greater solubility of organic substrates in water

• pH of the water

• use of a rigorously dried Ar atmosphere

• lipophilicity of the reaction components

• use of room temperature as defined in Southern California

Negishi-like couplings

C-C bond-forming reactions in water @ RT

Zn 46

12/3/2014

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Negishi couplings

Krasovskiy, A.; Duplais, C.; Lipshutz, B. H. J. Am. Chem. Soc. 2009, 131, 15592.

C-C bond-forming reactions in water @ RT

Duplais, C.; Krasovskiy, A.; Lipshutz, B. H. Organomet. 2011, 30, 6090. Zn

47

Summary

Potential bonuses:

modified impurity profile

throughput

“The best solvent is no solvent

and if a solvent (diluent) is needed

then water is preferred."

Lower E Factors = sustainability + $

Still running reactions in organic solvents? What’s your E Factor?

48

12/3/2014

25

Acknowledgements

NIH, NSF

Takasago (Hideo Shimizu), Sigma-Aldrich (Chris Thomas, Subir Ghorai)

Johnson Matthey (Tom Colacot)

49

50

“Transitioning Organic Synthesis from Organic Solvents to Water”

www.acs.org/acswebinars

Co-produced with the ACS Green Chemistry Institute

Recordings will be available to ACS members after three weeks

Dr. Joseph Fortunak Professor of Chemistry,

Howard University Dr. Bruce Lipshutz Professor of Chemistry,

Univ. of California, Santa Barbara

12/3/2014

26

What’s Your Green Chemistry? #mygreenchem

51 Check out the videos at http://ow.ly/FfxQg and the guidelines at http://ow.ly/Ffy5Y

Share your Green Chem…Blog it. Film it. Picture it.

Upcoming ACS GCI Webinars

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Discover more about ACS GCI at www.acs.org/content/acs/en/greenchemistry

Thursday, March 5, 2015

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Thursday, September 10, 2015

Thursday, December 3, 2015

12/3/2014

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Upcoming ACS Webinars www.acs.org/acswebinars

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®

Contact ACS Webinars ® at acswebinars@acs.org

Thursday, December 11, 2014

“Chemistry & the Economy: 2014 Year-

End Review”

Paul Hodges, Chairman, International eChem

Dr. Mark Jones, Executive External Strategy and Communications

Fellow, Dow Chemical Corporation

Thursday, January 15, 2015

“Rookie Lab Mistakes and Other Facts Not

Found in Textbooks”

Dr. Alison Frontier, Professor of Chemistry, University of Rochester

Bill Courtney, Chemist and Chef, Cheese-Ology

54

“Transitioning Organic Synthesis from Organic Solvents to Water”

www.acs.org/acswebinars

Co-produced with the ACS Green Chemistry Institute

Recordings will be available to ACS members after three weeks

Dr. Joseph Fortunak Professor of Chemistry,

Howard University Dr. Bruce Lipshutz Professor of Chemistry,

Univ. of California, Santa Barbara

12/3/2014

28

Be a featured fan on an upcoming webinar! Write to us @ acswebinars@acs.org

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How has ACS Webinars benefited you?

®

“ACS Webinars are entertaining and

often times very informative and

applicable to my career. Watching ACS

Webinars have enriched my knowledge.”

Jackie Le

Scientist, Chemical Development,

Neurocrine Biosciences

56

facebook.com/acswebinars

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youtube.com/acswebinars

12/3/2014

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Benefits of ACS Membership

57 www.acs.org/2joinACS

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Thursday, December 11, 2014

“Chemistry & the Economy: 2014 Year-

End Review”

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Dr. Mark Jones, Executive External Strategy and Communications

Fellow, Dow Chemical Corporation

Thursday, January 15, 2015

“Rookie Lab Mistakes and Other Facts Not

Found in Textbooks”

Dr. Alison Frontier, Professor of Chemistry, University of Rochester

Bill Courtney, Chemist and Chef, Cheese-Ology

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