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“Process For The Large Scale Production Of 1 H [1,2,3]Triazole And It’s Intermediate 1 Benzyl 1 H [1,2,3]Triazole”

Abstract: The present invention provides a process for the large scale production of 1H-[1,2,3]triazole of formula (I) and it’s intermediate 1-benzyl-1H-[1,2,3]triazole of formula (II) by using benzyl azide and vinyl acetate as starting materials. This process is economical, environment friendly and safer by avoiding use of special equipment.

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Patent Information

Application #
Filing Date
13 September 2013
Publication Number
13/2015
Publication Type
INA
Invention Field
CHEMICAL
Status
Email
sna@sna-ip.com
Parent Application
Patent Number
Legal Status
Grant Date
2019-10-29
Renewal Date

Applicants

SUVEN LIFE SCIENCES LIMITED
Serene Chambers, Road – 5, Avenue – 7, Banjara Hills, Hyderabad – 500 034, Andhra Pradesh, India

Inventors

1. ARAVA, Veera Reddy
Suven Life Sciences Limited, Serene Chambers, Road – 5, Avenue – 7, Banjara Hills, Hyderabad – 500 034, Andhra Pradesh, India
2. MALREDDY, Sashibhushan
Suven Life Sciences Limited, Serene Chambers, Road – 5, Avenue – 7, Banjara Hills, Hyderabad – 500 034, Andhra Pradesh, India
3. LAGUPUDI, Chalapathi
Suven Life Sciences Limited, Serene Chambers, Road – 5, Avenue – 7, Banjara Hills, Hyderabad – 500 034, Andhra Pradesh, India
4. JASTI, Venkateswarlu
Suven Life Sciences Limited, Serene Chambers, Road–5, Avenue–7, Banjara Hills, Hyderabad – 500 034, Andhra Pradesh, India

Specification

CLIAMS:We Claim:

1. A process for large scale production of 1H-[1,2,3]-triazole of formula (I),

which comprises of the following steps:
Step (i): Benzyl azide of formula (A) is reacted with vinyl acetate of formula (B) in a closed vessel, at a temperature in the range of 110 ?C to 130 ?C, for the period of 9 hours to 16 hours to obtain the product, 1-benzyl-1H-[1,2,3]triazole of formula (II);

Step (ii): 1-Benzyl-1H-[1,2,3]triazole of formula (II) is purified by crystallization in presence of a suitable solvent to obtain a high quality product, 1-benzyl-1H-[1,2,3]triazole of formula (II);
Step (iii): 1-Benzyl-1H-[1,2,3]triazole of formula (II) is debenzylated with Pd-C in presence of suitable solvent in a closed vessel, at a temperature in the range of 100 ?C to 120 ?C for the period of 8 hours to 14 hours to obtain crude 1H-[1,2,3]triazole of formula (I). The crude product was purified by high vacuum distillation to obtain high quality product, 1H-[1,2,3]triazole of formula (I).

2. The process for the large scale production of 1-benzyl-1H-[1,2,3]triazole of formula (II),

which comprises of the following steps:
Step (i): Benzyl azide of formula (A) is reacted with vinyl acetate of formula (B) in a closed vessel, at a temperature in the range of 110 ?C to 130 ?C, for the period of 9 hours to 16 hours to obtain the technical material, 1-benzyl-1H-[1,2,3]triazole of formula (II);

Step (ii): 1-Benzyl-1H-[1,2,3]triazole of formula (II) is purified by crystallization in presence of a suitable solvent to obtain high quality product, 1-benzyl-1H-[1,2,3]triazole of formula (II);

3. The process as claimed in step (i) of claims 1 and 2, the reaction is carried out at temperature of 120 ?C.

4. The process as claimed in step (i) of claims 1 and 2, the reaction is carried for the period of 14 hours.

5. The process as claimed in step (ii) of claims 1 and 2, the suitable solvent is ethyl acetate and hexane.

6. The process as claimed in step (iii) of claim 2, the reaction is carried out at temperature of 110 ?C.

7. The process as claimed in step (iii) of claim 2, the reaction is carried out for the period of 10 hours to 12 hours.

8. The process for the preparation of 1-benzyl-1H-[1,2,3]triazole of formula (II) is substantially as herein described with reference to the Example 1.

9. The process for the preparation of 1H-[1,2,3]-triazole of formula (I) is substantially as herein described with reference to the Example 2.

Dated this the 13th day of September 2013.

(ASHISH K. SHARMA)
Of SUBRAMANIAM & ASSOCIATES
ATTORNEYS FOR THE APPLICANTS


,TagSPECI:
FORM 2

THE PATENTS ACT, 1970
(39 of 1970)
&
The Patent Rules, 2003

COMPLETE SPECIFICATION
(See section 10 and rule 13)

TITLE OF THE INVENTION

“PROCESS FOR THE LARGE SCALE PRODUCTION OF 1H-[1,2,3]TRIAZOLE AND IT'S INTERMEDIATE 1-BENZYL-1H-[1,2,3]TRIAZOLE”

We, SUVEN LIFE SCIENCES LIMITED, an Indian company, of Serene Chambers, Road–5, Avenue–7, Banjara Hills, Hyderabad - 500 034, Andhra Pradesh, India.

The following specification particularly describes the nature of the invention and the manner in which it is performed:

“PROCESS FOR THE LARGE SCALE PRODUCTION OF 1H-[1,2,3]TRIAZOLE AND ITS INTERMEDIATE 1-BENZYL-1H-[1,2,3]TRIAZOLE”

Field of the Invention
The present invention provides process for the large scale production of 1H-[1,2,3]triazole of formula (I) and it’s intermediate 1-benzyl-1H-[1,2,3]triazole of formula (II) by using benzyl azide and vinyl acetate as starting materials. This process is economical, environment friendly and safer by avoiding use of special equipment.

Background of the Invention
N-Substituted 1,2,3-triazoles are useful as dyestuffs, photo stabilizers, corrosion inhibitors, pharmaceutical and agrochemicals. 1H-[1,2,3]-triazole is used as major intermediate in the synthesis of N-substituted 1,2,3-triazoles. Hence, the demand for 1H-[1,2,3]-triazole is increasing very heavily now-a-days (Science of Synthesis, 2004, 13, 415-601).
1H-[1,2,3]-triazole is usually prepared by the addition of benzylazide to acetylene in the presence of copper catalyst and under pressure to obtain 1-benzyl-1H-[1,2,3]triazole. 1-Benzyl-1H-[1,2,3]triazole is then debenzylated in presence of Pd-C to obtain 1,2,3- triazole (Synlett, 2009,9, 1453-1456).

The drawback of the above procedure for commercialization is that it involves pressure reaction of azidomethyl benzene with acetylene, which is exothermic in nature and needs special equipment and attention during large scale production.
Hence, there is a need for a viable process, for the production of 1H-[1,2,3]-triazole and its intermediate 1-benzyl-1H-[1,2,3]triazole on a larger scale, which is both safe and economical and does not require special equipment.

Summary of the invention
In one aspect, the present invention relates to large scale production of 1-benzyl-1H-[1,2,3]triazole of formula (II), which is useful for the preparation of 1H-[1,2,3]triazole of formula (I).

The process involves the following steps:
Step (i): Benzyl azide of formula (A) is reacted with vinyl acetate of formula (B) in a closed vessel, at a temperature in the range of 110 ?C to 130 ?C, for the period of 9 hours to 16 hours to obtain 1-benzyl-1H-[1,2,3]triazole of formula (II);

Step (ii): 1-Benzyl-1H-[1,2,3]triazole of formula (II) is purified by crystallization in presence of a suitable solvent to obtain high quality product, 1-benzyl-1H-[1,2,3]triazole of formula (II).

In another aspect, the present invention relates to large scale production of 1H-[1,2,3]triazole of formula (I).

The process involves the following steps:
Step (i): Benzyl azide of formula (A) is reacted with vinyl acetate of formula (B) in a closed vessel, at a temperature in the range of 110 ?C to 130 ?C for the period of 9 hours to 16 hours to obtain 1-benzyl-1H-[1,2,3]triazole of formula (II);

Step (ii): 1-Benzyl-1H-[1,2,3]triazole of formula (II) is purified by crystallization in presence of a suitable solvent to obtain high quality 1-benzyl-1H-[1,2,3]triazole of formula (II);
Step (iii): 1-Benzyl-1H-[1,2,3]triazole of formula (II) is debenzylated with Pd-C in presence of suitable solvent at a temperature in the range of 100 ?C to 120 ?C for the period of 8 hours to 14 hours to obtain crude 1H-[1,2,3]-triazole of formula (I). This crude product was purified by high vacuum distillation to yield high quality 1H-[1,2,3]triazole of formula (I).

In another aspect, the present invention relates to large scale, well optimized manufacturing process for 1H-[1,2,3]triazole of formula (I) and its intermediate 1-benzyl-1H-[1,2,3]triazole of formula (II).
In another aspect, the present invention relates to process for large scale production of 1H-[1,2,3]triazole of formula (I) and its intermediate 1-benzyl-1H-[1,2,3]triazole of formula (II) in a safer way, avoiding special equipments.
In yet another aspect, the present invention relates to large scale, economical production of 1H-[1,2,3]triazole of formula (I) and it’s intermediate 1-benzyl-1H-[1,2,3]triazole of formula (II).
In still yet another aspect, the present invention provides a process to obtain the product, 1H-[1,2,3]triazole of formula (I) and it’s intermediate 1-benzyl-1H-[1,2,3]triazole of formula (II) in substantially pure forms.

Detailed Description of the Invention
The large scale manufacturing process for the preparation of 1H-[1,2,3]triazole of formula (I) and it’s intermediate, 1-benzyl-1H-[1,2,3]triazole of formula (II) is illustrated by the Scheme-I given below:

Scheme-I
The disclosed process involves the following steps:
Step (i): Benzyl azide of formula (A) is reacted with vinyl acetate of formula (B) at a temperature in the range of 110 ?C to 130 ?C for the period of 9 hours to 16 hours to obtain 1-benzyl-1H-[1,2,3]triazole of formula (II);
Step (ii): 1-benzyl-1H-[1,2,3]triazole of formula (II) is purified by distillation in presence of suitable solvent to obtain high quality 1-benzyl-1H-[1,2,3]triazole of formula (II);
Step (iii): 1-benzyl-1H-[1,2,3]triazole of formula (II) is debenzylated with Pd-C in presence of suitable solvent at a temperature in the range of 100 ?C to 120 ?C for the period of 8 hours to 14 hours to yield crude 1H-[1,2,3]triazole of formula (I). The crude product, thus obtained, was purified by high vacuum distillation to yield high quality 1H-[1,2,3]-triazole of formula (I).
In the first step of the preparation, benzyl azide of formula (A) is reacted with vinyl acetate of formula (B) to obtain 1-benzyl-1H-[1,2,3]triazole of formula (II). The reaction temperature may range from 110 to 130 ?C and preferably at a temperature of 120 ?C. The duration of the reaction may range from 9 to 16 hours, preferably for the period of 14 hours.
In the second step of the preparation, 1-benzyl-1H-[1,2,3]triazole of formula (II) is purified by distillation in presence of suitable solvent to obtain high quality 1-benzyl-1H-[1,2,3]triazole of formula (II). The suitable solvent is preferably ethyl acetate and hexane.
In the third step of the preparation, 1-benzyl-1H-[1,2,3]triazole of formula (II) is debenzylated with Pd-C to yield crude 1H-[1,2,3]-triazole of formula (I). This is purified by high vacuum distillation to obtain high quality 1H-[1,2,3]triazole of formula (I). The reaction temperature may range from 100 ?C to 120 ?C and preferably at a temperature of 110 ?C. The duration of the reaction may range from 8 to 14 hours, preferably from a period of 10 to 12 hours.

The details of the invention are given in examples provided below, which are given only to illustrate the invention and therefore should not be construed to limit the scope of the present invention.

Preparation 1: Preparation of 1-Benzyl-1H-[1,2,3]triazole
Benzyl triethyl ammonium chloride (2.4 Kgs, 10.53 moles), triethylamine hydrochloride (2.4 Kgs, 17.35 moles) were added to benzyl chloride (100 Kgs, 78.74 moles) at 50 °C over a period of 10 minutes. Sodium azide (54 Kgs, 83.07 moles) was added portion wise over a period of 3 hours at 50 - 55 °C (the reaction is highly exothermic) and maintained for 5 to 8 hours at the same temperature. Upon completion of the reaction (benzyl chloride should be less than 0.5 % by Gas Chromatography), the mass was cooled to room temperature and maintained at the same temperature for 30 minutes. The salt was filtered and washed with vinyl acetate (2 X 50 Lts). The resulting filtrate (150 Kgs, including vinyl acetate) is employed directly for the next stage.

Example 1: Preparation of 1H-[1,2,3]triazole
Step (i): Preparation of 1-Benzyl-1H-[1,2,3]triazole
The filtrate obtained from preparation 1 is mixed with fresh vinyl acetate (200 Kg) in a closed vessel reactor at room temperature. Reaction mass heated to 120 °C and maintained for 10 to 14 hours (6 - 8 Kgs pressure was observed initially). After completion of the reaction (benzyl azide content should be less than 0.5 % maintained by Gas Chromatography), cooled to 20 °C and unloaded the mass. Then distilled out the vinyl acetate under atmospheric pressure until the temperature reaches to 120 °C and finally applied high vacuum to collect the traces of vinyl acetate below 80 °C to obtain the crude product (132 Kgs).

Step (ii): Purification of 1-Benzyl-1H-[1,2,3]triazole
A suspension of 1-Benzyl-1H-[1,2,3]triazole (100 - 105 Kgs, obtained in the above step) in ethyl acetate (80 Lts) was heated to 45 - 50 °C and maintained for 15 minutes to obtain a clear solution. After getting clear solution, hexane (160 Lts) was added at 35 °C and maintained the resulting slurry for 60 minutes. Reaction mass was further cooled and maintained for 1 hour at 0 - 5 °C. Then the mass was filtered and washed the cake with hexane (25 Lts) to obtain pure compound (90 Kgs).
1H-NMR (CDCl3-TMS, ? ppm): 7.63(s, 1H), 7.47(s,1H),7.29(m,5H),5.49(s,2H);
13C-NMR (CDCl3-TMS, ? ppm): 134.67, 134.04, 128.96, 128.93, 127.86, 123.39, 53.75;
Mass (m/z): 160.2[M+1].

Example 2: Preparation of 1H-[1,2,3]triazole
1-Benzyl-1H-[1,2,3]triazole (125 Kgs, obtained in the Example 1) in isopropyl alcohol (500 Lts) was hydrogenated with 3.75 Kgs of 5 % Pd-C under a pressure of 20-25 Kgs at 110 °C for 10 to 12 hours. At end of the reaction, benzyl triazole content was 1.66 % and triazole content was 98.34 %. The reaction mass was cooled to room temperature and filtered Pd-C through hyflo bed and washed the bed with isopropanol (100 Lts). Distilled off the solvent under vacuum completely to obtain the crude product, 1H-[1,2,3]triazole (78 Kgs). The crude material, thus obtained, was purified by high vacuum distillation (2-5mm) and collected the pure title compound (38 - 42 Kgs) at vapor temperature (80 - 83 °C).
1H-NMR (CDCl3, ? ppm): 15.24(s, 1H), 7.69(s, 2H);
13C-NMR (CDCl3, ? ppm):129.47

Advantages of the Invention:
1. This process is very simple and starts from the readily available starting material which makes the process economical and industrially viable.
2. Vinyl acetate is easy to handle, compared to other acetylene equivalents and it is substantially a cheaper starting material.
3. The process does not involve handling of acetylene gas, therefore no need of special attention to control in plant scale.

Documents

Application Documents

# Name Date
1 4132-CHE-2013-RELEVANT DOCUMENTS [14-08-2023(online)].pdf 2023-08-14
1 Form 5.pdf 2013-09-17
2 4132-CHE-2013-RELEVANT DOCUMENTS [15-09-2022(online)].pdf 2022-09-15
2 Form 3.pdf 2013-09-17
3 Complete Specification.pdf 2013-09-17
3 4132-CHE-2013-RELEVANT DOCUMENTS [19-08-2021(online)].pdf 2021-08-19
4 Abstract.pdf 2013-09-17
4 323839-Correspondence_Assignment, Power of Attorney_27-01-2021.pdf 2021-01-27
5 4132-CHE-2013-ASSIGNMENT WITH VERIFIED COPY [07-01-2021(online)].pdf 2021-01-07
5 4132-CHE-2013 POWER OF ATTORNEY 17-10-2013.pdf 2013-10-17
6 4132-CHE-2013-FORM-16 [07-01-2021(online)].pdf 2021-01-07
6 4132-CHE-2013 CORRESPONDENCE OTHERS 17-10-2013.pdf 2013-10-17
7 4132-CHE-2013-POWER OF AUTHORITY [07-01-2021(online)].pdf 2021-01-07
7 4132-CHE-2013 FORM-1 1-11-2013.pdf 2013-12-04
8 4132-CHE-2013-RELEVANT DOCUMENTS [20-03-2020(online)].pdf 2020-03-20
8 4132-CHE-2013 CORRESPONDENCE OTHERS 1-11-2013.pdf 2013-12-04
9 4132-CHE-2013 CORRESPONDENCE OTHERS 01-09-2014.pdf 2014-09-01
9 4132-CHE-2013-IntimationOfGrant29-10-2019.pdf 2019-10-29
10 4132-CHE-2013 FORM-3 01-09-2014.pdf 2014-09-01
10 4132-CHE-2013-PatentCertificate29-10-2019.pdf 2019-10-29
11 abstract 4132-CHE-2013 .jpg 2014-09-16
11 Abstract_Granted 323839_29-10-2019.pdf 2019-10-29
12 4132-CHE-2013-FORM 18 [14-08-2017(online)].pdf 2017-08-14
12 Claims_Granted 323839_29-10-2019.pdf 2019-10-29
13 4132-CHE-2013-FER.pdf 2019-03-30
13 Description_Granted 323839_29-10-2019.pdf 2019-10-29
14 4132-CHE-2013-Information under section 8(2) (MANDATORY) [18-09-2019(online)].pdf 2019-09-18
14 Marked up Claims_Granted 323839_29-10-2019.pdf 2019-10-29
15 4132-CHE-2013-ABSTRACT [20-09-2019(online)].pdf 2019-09-20
15 4132-CHE-2013-FORM 3 [18-09-2019(online)].pdf 2019-09-18
16 4132-CHE-2013-CLAIMS [20-09-2019(online)].pdf 2019-09-20
16 4132-CHE-2013-RELEVANT DOCUMENTS [20-09-2019(online)].pdf 2019-09-20
17 4132-CHE-2013-PETITION UNDER RULE 137 [20-09-2019(online)].pdf 2019-09-20
17 4132-CHE-2013-COMPLETE SPECIFICATION [20-09-2019(online)].pdf 2019-09-20
18 4132-CHE-2013-FER_SER_REPLY [20-09-2019(online)].pdf 2019-09-20
18 4132-CHE-2013-OTHERS [20-09-2019(online)].pdf 2019-09-20
19 4132-CHE-2013-FER_SER_REPLY [20-09-2019(online)].pdf 2019-09-20
19 4132-CHE-2013-OTHERS [20-09-2019(online)].pdf 2019-09-20
20 4132-CHE-2013-COMPLETE SPECIFICATION [20-09-2019(online)].pdf 2019-09-20
20 4132-CHE-2013-PETITION UNDER RULE 137 [20-09-2019(online)].pdf 2019-09-20
21 4132-CHE-2013-CLAIMS [20-09-2019(online)].pdf 2019-09-20
21 4132-CHE-2013-RELEVANT DOCUMENTS [20-09-2019(online)].pdf 2019-09-20
22 4132-CHE-2013-ABSTRACT [20-09-2019(online)].pdf 2019-09-20
22 4132-CHE-2013-FORM 3 [18-09-2019(online)].pdf 2019-09-18
23 Marked up Claims_Granted 323839_29-10-2019.pdf 2019-10-29
23 4132-CHE-2013-Information under section 8(2) (MANDATORY) [18-09-2019(online)].pdf 2019-09-18
24 4132-CHE-2013-FER.pdf 2019-03-30
24 Description_Granted 323839_29-10-2019.pdf 2019-10-29
25 4132-CHE-2013-FORM 18 [14-08-2017(online)].pdf 2017-08-14
25 Claims_Granted 323839_29-10-2019.pdf 2019-10-29
26 abstract 4132-CHE-2013 .jpg 2014-09-16
26 Abstract_Granted 323839_29-10-2019.pdf 2019-10-29
27 4132-CHE-2013 FORM-3 01-09-2014.pdf 2014-09-01
27 4132-CHE-2013-PatentCertificate29-10-2019.pdf 2019-10-29
28 4132-CHE-2013 CORRESPONDENCE OTHERS 01-09-2014.pdf 2014-09-01
28 4132-CHE-2013-IntimationOfGrant29-10-2019.pdf 2019-10-29
29 4132-CHE-2013 CORRESPONDENCE OTHERS 1-11-2013.pdf 2013-12-04
29 4132-CHE-2013-RELEVANT DOCUMENTS [20-03-2020(online)].pdf 2020-03-20
30 4132-CHE-2013-POWER OF AUTHORITY [07-01-2021(online)].pdf 2021-01-07
30 4132-CHE-2013 FORM-1 1-11-2013.pdf 2013-12-04
31 4132-CHE-2013-FORM-16 [07-01-2021(online)].pdf 2021-01-07
31 4132-CHE-2013 CORRESPONDENCE OTHERS 17-10-2013.pdf 2013-10-17
32 4132-CHE-2013-ASSIGNMENT WITH VERIFIED COPY [07-01-2021(online)].pdf 2021-01-07
32 4132-CHE-2013 POWER OF ATTORNEY 17-10-2013.pdf 2013-10-17
33 Abstract.pdf 2013-09-17
33 323839-Correspondence_Assignment, Power of Attorney_27-01-2021.pdf 2021-01-27
34 Complete Specification.pdf 2013-09-17
34 4132-CHE-2013-RELEVANT DOCUMENTS [19-08-2021(online)].pdf 2021-08-19
35 Form 3.pdf 2013-09-17
35 4132-CHE-2013-RELEVANT DOCUMENTS [15-09-2022(online)].pdf 2022-09-15
36 4132-CHE-2013-RELEVANT DOCUMENTS [14-08-2023(online)].pdf 2023-08-14
36 Form 5.pdf 2013-09-17

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