FIRST-GENERATION MOLECULAR MOTOR FROM ISOLONCHOCARPIN VIA MCMURRY REACTION
Molecular motors are molecular systems that able to rotate 360o by utilizing the energy of light or heat. The development of molecular motors has been projected to be a pioneer in the field of nano-machinery. Generally, the synthesis of molecular motors requires a long synthesis step, a lot of chemi...
Saved in:
Main Author: | |
---|---|
Format: | Final Project |
Language: | Indonesia |
Subjects: | |
Online Access: | https://digilib.itb.ac.id/gdl/view/64954 |
Tags: |
Add Tag
No Tags, Be the first to tag this record!
|
Institution: | Institut Teknologi Bandung |
Language: | Indonesia |
id |
id-itb.:64954 |
---|---|
spelling |
id-itb.:649542022-06-17T10:02:43ZFIRST-GENERATION MOLECULAR MOTOR FROM ISOLONCHOCARPIN VIA MCMURRY REACTION Bongso, Anthony Kimia Indonesia Final Project Isolonchocarpin, McMurry reaction, first-generation molecular motor INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/64954 Molecular motors are molecular systems that able to rotate 360o by utilizing the energy of light or heat. The development of molecular motors has been projected to be a pioneer in the field of nano-machinery. Generally, the synthesis of molecular motors requires a long synthesis step, a lot of chemicals, and a long reaction time considering the relatively large size of the molecular motor. In this research, the first-generation molecular motor (2) based on Indonesian's natural compound, namely (-)-isolonchocarpin from Tephrosia vogelii will be synthesized through the McMurry reaction. Isolonchocarpin was chosen due to its relatively planar structure and the presence of a stereogenic center that facilitates the characterization of the rotational movement of the molecular motor. Before the synthesis of the first generation molecular motor, a model compound 1,1'-dimethylstilbene (1) has been synthesized from acetophenone through the McMurry reaction. The selection of acetophenone was based on the similarity of the structure with isolonchocarpin. Brominated isolonchocarpin (3) has also been synthesized as a precursor for first-generation molecular motor variations. The model compound (1) has been successfully synthesized with a yield of 39.22% (E: Z = 4: 1), the first generation molecular motor (2) has been successfully synthesized with a yield of 44.41%, and brominated flavanone (3) has been successfully synthesized with a yield of 31.32%. text |
institution |
Institut Teknologi Bandung |
building |
Institut Teknologi Bandung Library |
continent |
Asia |
country |
Indonesia Indonesia |
content_provider |
Institut Teknologi Bandung |
collection |
Digital ITB |
language |
Indonesia |
topic |
Kimia |
spellingShingle |
Kimia Bongso, Anthony FIRST-GENERATION MOLECULAR MOTOR FROM ISOLONCHOCARPIN VIA MCMURRY REACTION |
description |
Molecular motors are molecular systems that able to rotate 360o by utilizing the energy of light or heat. The development of molecular motors has been projected to be a pioneer in the field of nano-machinery. Generally, the synthesis of molecular motors requires a long synthesis step, a lot of chemicals, and a long reaction time considering the relatively large size of the molecular motor. In this research, the first-generation molecular motor (2) based on Indonesian's natural compound, namely (-)-isolonchocarpin from Tephrosia vogelii will be synthesized through the McMurry reaction. Isolonchocarpin was chosen due to its relatively planar structure and the presence of a stereogenic center that facilitates the characterization of the rotational movement of the molecular motor. Before the synthesis of the first generation molecular motor, a model compound 1,1'-dimethylstilbene (1) has been synthesized from acetophenone through the McMurry reaction. The selection of acetophenone was based on the similarity of the structure with isolonchocarpin. Brominated isolonchocarpin (3) has also been synthesized as a precursor for first-generation molecular motor variations. The model compound (1) has been successfully synthesized with a yield of 39.22% (E: Z = 4: 1), the first generation molecular motor (2) has been successfully synthesized with a yield of 44.41%, and brominated flavanone (3) has been successfully synthesized with a yield of 31.32%. |
format |
Final Project |
author |
Bongso, Anthony |
author_facet |
Bongso, Anthony |
author_sort |
Bongso, Anthony |
title |
FIRST-GENERATION MOLECULAR MOTOR FROM ISOLONCHOCARPIN VIA MCMURRY REACTION |
title_short |
FIRST-GENERATION MOLECULAR MOTOR FROM ISOLONCHOCARPIN VIA MCMURRY REACTION |
title_full |
FIRST-GENERATION MOLECULAR MOTOR FROM ISOLONCHOCARPIN VIA MCMURRY REACTION |
title_fullStr |
FIRST-GENERATION MOLECULAR MOTOR FROM ISOLONCHOCARPIN VIA MCMURRY REACTION |
title_full_unstemmed |
FIRST-GENERATION MOLECULAR MOTOR FROM ISOLONCHOCARPIN VIA MCMURRY REACTION |
title_sort |
first-generation molecular motor from isolonchocarpin via mcmurry reaction |
url |
https://digilib.itb.ac.id/gdl/view/64954 |
_version_ |
1822277168105783296 |