Reaksi hidrolisis suatu senyawa organik menghasilkan alkohol dan asam karboksilat, maka dapat dipastikan senyawa organik tersebut merupakan ester.
Opsi A mengandung gugus fungsi
, maka termasuk senyawa alkohol dan memiliki nama 3-pentanol.
![begin mathsize 14px style C H subscript 3 C H subscript 2 C H open parentheses O H close parentheses C H subscript 2 C H subscript 3 end style](data:image/png;base64,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)
Opsi B mengandung gugus fungsi
, maka termasuk senyawa asam karboksilat dan memiliki nama asam pentanoat.
![begin mathsize 14px style C H subscript 3 C H subscript 2 C H subscript 2 C H subscript 2 C O O H end style](data:image/png;base64,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)
Opsi C mengandung gugus fungsi
, maka termasuk senyawa keton dan memiliki nama 3-pentanon.
Opsi D mengandung gugus fungsi
, maka termasuk senyawa ester dan memiliki nama propil etanoat.
Opsi E mengandung gugus fungsi
, maka termasuk senyawa ester dan memiliki nama etil propanoat.
![begin mathsize 14px style C H subscript 3 C H subscript 2 C O O C H subscript 2 C H subscript 3 end style](data:image/png;base64,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)
Opsi A, B, dan C SALAH karena bukan senyawa ester. Pada soal, "Alkohol yang dihasilkan bereaksi dengan
panas membentuk propena", maka dapat dipastikan senyawa alkohol tersebut adalah 1-propanol. Reaksinya dapat dilihat di bawah ini.
![begin mathsize 14px style C H subscript 3 bond C H subscript 2 bond C H subscript 2 bond O H yields with H subscript 2 S O subscript 4 left parenthesis 180 space degree C right parenthesis on top C H subscript 3 bond C H double bond C H subscript 2 and H subscript 2 O space space space space space space space left parenthesis 1 minus sign propanol right parenthesis space space space space space space space space space space space space space space space space space space space space space space space space space space space space space open parentheses propena close parentheses space space space end style](data:image/png;base64,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)
"sedangkan asam karboksilatnya bereaksi dengan NaOH menghasilkan natrium etanoat", maka dapat dipastikan senyawa asam karboksilat tersebut adalah asam etanoat. Reaksinya dapat dilihat di bawah ini.
![begin mathsize 14px style C H subscript 3 C O O H and Na O H yields C H subscript 3 C O O Na and H subscript 2 O left parenthesis asam space etanoat right parenthesis space space space space space space space space space space space left parenthesis natrium space etanoat right parenthesis end style](data:image/png;base64,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)
Reaksi hidrolisis suatu senyawa organik tersebut menghasilkan alkohol (1-propanol) dan asam karboksilat (asam etanoat), maka senyawa organik yang dimaksud adalah senyawa ester dengan 5 atom karbon karena 1-propanol memiliki 3 atom C dan asam etanoat memiliki 2 atom C. Reaksinya dapat dilihat di bawah ini.
![begin mathsize 14px style C H subscript 3 C O O C H subscript 2 C H subscript 2 C H subscript 3 and H subscript 2 O yields C H subscript 3 C O O H and C H subscript 3 C H subscript 2 C H subscript 2 O H space space space left parenthesis propil space etanoat right parenthesis space space space space space space space space space space space space space space space space left parenthesis asam space etanoat right parenthesis space space left parenthesis 1 minus sign propanol right parenthesis end style](data:image/png;base64,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)
Dengan demikian, senyawa organik yang dimaksud adalah propil etanoat karena gugus
pada ester (warna biru) akan berikatan dengan atom H dari
membentuk asam karboksilat (asam etanoat) dan alkil pada ester (warna merah) akan berikatan dengan
dari
membentuk alkohol (1-propanol).
Jadi, jawaban yang benar adalah D.