BackgroundThere has been increasing interest in the use of deep neural networks for de novo design of molecules with desired properties. A common approach is to train a generative model on SMILES strings and then use this to generate SMILES strings for molecules with a desired property. Unfortunately, these SMILES strings are often not syntactically valid due to elements of SMILES syntax that must occur in pairs.ResultsWe describe a SMILES-like syntax called DeepSMILES that addresses two of the main reasons for invalid syntax when using a probabilistic model to generate SMILES strings. The DeepSMILES syntax avoids the problem of unbalanced parentheses by only using close parentheses, where the number of parentheses indicates the branch leng...
This is the 1.0.1 release of SMILESClickChem (Version 1.0.1) SMILESClickChem is a cheminformatic, P...
The discovery of novel materials and functional molecules can help to solve some of society's most u...
Bioinformatics and Cheminformatics use computer as disciplines providing tools for acquisition, stor...
A Recurrent Neural Network (RNN) trained with a set of molecules represented as SMILES strings can g...
Recurrent Neural Networks (RNNs) trained with a set of molecules represented as unique (canonical) S...
The advances in Artificial Intelligence (AI) in the past two decades have enabled algorithms to perf...
A key component of automated molecular design is the generation of compound ideas for subsequent fil...
Molecular generative models trained with small sets of molecules represented as SMILES strings can g...
Recognizing substructures and their relations embedded in a molecular structure representation is a ...
SMILES is the most dominant molecular representation used in AI-based chemical applications, but it ...
Artificial intelligence (AI) and machine learning (ML) are expanding in popularity for broad applica...
Variational autoencoders have emerged as one of the most common approaches for automating molecular ...
Recurrent neural networks have been widely used to generate millions of de novo molecules in a known...
Abstract Computer descriptions of chemical molecular connectivity are necessary for searching chemic...
De novo design of molecules has recently enjoyed the power of generative deep neural networks. Curre...
This is the 1.0.1 release of SMILESClickChem (Version 1.0.1) SMILESClickChem is a cheminformatic, P...
The discovery of novel materials and functional molecules can help to solve some of society's most u...
Bioinformatics and Cheminformatics use computer as disciplines providing tools for acquisition, stor...
A Recurrent Neural Network (RNN) trained with a set of molecules represented as SMILES strings can g...
Recurrent Neural Networks (RNNs) trained with a set of molecules represented as unique (canonical) S...
The advances in Artificial Intelligence (AI) in the past two decades have enabled algorithms to perf...
A key component of automated molecular design is the generation of compound ideas for subsequent fil...
Molecular generative models trained with small sets of molecules represented as SMILES strings can g...
Recognizing substructures and their relations embedded in a molecular structure representation is a ...
SMILES is the most dominant molecular representation used in AI-based chemical applications, but it ...
Artificial intelligence (AI) and machine learning (ML) are expanding in popularity for broad applica...
Variational autoencoders have emerged as one of the most common approaches for automating molecular ...
Recurrent neural networks have been widely used to generate millions of de novo molecules in a known...
Abstract Computer descriptions of chemical molecular connectivity are necessary for searching chemic...
De novo design of molecules has recently enjoyed the power of generative deep neural networks. Curre...
This is the 1.0.1 release of SMILESClickChem (Version 1.0.1) SMILESClickChem is a cheminformatic, P...
The discovery of novel materials and functional molecules can help to solve some of society's most u...
Bioinformatics and Cheminformatics use computer as disciplines providing tools for acquisition, stor...